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Published in: Clinical Reviews in Bone and Mineral Metabolism 3/2014

01-09-2014 | Original Paper

The Role of PTHrP in Regulating Mineral Metabolism During Pregnancy, Lactation, and Fetal/Neonatal Development

Author: Christopher S. Kovacs

Published in: Clinical & Translational Metabolism | Issue 3/2014

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Abstract

Parathyroid hormone-related protein (PTHrP) was originally identified as the cause of humoral hypercalcemia of malignancy (HHM), a condition that resembles primary hyperparathyroidism and the effects of excess parathyroid hormone (PTH). But HHM is an unusual situation because PTHrP is normally undetectable in the circulation of the child or adult. Instead, most of PTHrP’s actions are now understood to be paracrine or autocrine, and not humoral. However, PTHrP is present in the circulation at measurable levels during fetal development, pregnancy, and lactation. During these time periods, PTHrP has humoral actions that regulate mineral and bone homeostasis independently of PTH. In fact, the existence of PTHrP was also predicted by the characteristic pattern of serum chemistries and PTH in cord blood of normal newborns, and by the normalization of calcium metabolism that temporarily occurs in hypoparathyroid women who breast-feed. This article reviews our present understanding about PTHrP’s role to control mineral and bone metabolism during pregnancy, lactation, and fetal development. Excess PTHrP can also be produced by the placenta or the breasts during pregnancy, or by the breasts during lactation, and in both situations it can lead to hypercalcemia and other clinical features that are indistinguishable from HHM. The highest concentrations of PTHrP are found in milk, and recent evidence indicates that milk-based PTHrP may reduce mineral accretion by the newborn skeleton, but whether it does this through local actions in the neonatal gut or after absorption into the neonatal circulation is unknown.
Literature
1.
go back to reference Riggs BL, Arnaud CD, Reynolds JC, Smith LH. Immunologic differentiation of primary hyperparathyroidism from hyperparathyroidism due to nonparathyroid cancer. J Clin Invest. 1971;50(10):2079–83.PubMedCentralPubMed Riggs BL, Arnaud CD, Reynolds JC, Smith LH. Immunologic differentiation of primary hyperparathyroidism from hyperparathyroidism due to nonparathyroid cancer. J Clin Invest. 1971;50(10):2079–83.PubMedCentralPubMed
2.
go back to reference Powell D, Singer FR, Murray TM, Minkin C, Potts JT Jr. Nonparathyroid humoral hypercalcemia in patients with neoplastic diseases. N Engl J Med. 1973;289(4):176–81.PubMed Powell D, Singer FR, Murray TM, Minkin C, Potts JT Jr. Nonparathyroid humoral hypercalcemia in patients with neoplastic diseases. N Engl J Med. 1973;289(4):176–81.PubMed
3.
go back to reference Ponthier RL Jr, Rice BF. Hypercalcaemia of neoplasia, parathyroid hormone and vitamin D: studies in parabiosis. Acta Endocrinol (Copenh). 1974;77(3):527–39. Ponthier RL Jr, Rice BF. Hypercalcaemia of neoplasia, parathyroid hormone and vitamin D: studies in parabiosis. Acta Endocrinol (Copenh). 1974;77(3):527–39.
4.
go back to reference Mangin M, Webb AC, Dreyer BE, Posillico JT, Ikeda K, Weir EC, Stewart AF, Bander NH, Milstone L, Barton DE, Francke U, Broadus AE. Identification of a cDNA encoding a parathyroid hormone-like peptide from a human tumor associated with humoral hypercalcemia of malignancy. Proc Natl Acad Sci USA. 1988;85:597–601.PubMedCentralPubMed Mangin M, Webb AC, Dreyer BE, Posillico JT, Ikeda K, Weir EC, Stewart AF, Bander NH, Milstone L, Barton DE, Francke U, Broadus AE. Identification of a cDNA encoding a parathyroid hormone-like peptide from a human tumor associated with humoral hypercalcemia of malignancy. Proc Natl Acad Sci USA. 1988;85:597–601.PubMedCentralPubMed
5.
go back to reference Suva LJ, Winslow GA, Wettenhall RE, Hammonds RG, Moseley JM, Diefenbach-Jagger H, Rodda CP, Kemp BE, Rodriguez H, Chen EY, Hudson PJ, Martin TJ, Wood WI. A parathyroid hormone-related protein implicated in malignant hypercalcemia: cloning and expression. Science. 1987;237:893–6.PubMed Suva LJ, Winslow GA, Wettenhall RE, Hammonds RG, Moseley JM, Diefenbach-Jagger H, Rodda CP, Kemp BE, Rodriguez H, Chen EY, Hudson PJ, Martin TJ, Wood WI. A parathyroid hormone-related protein implicated in malignant hypercalcemia: cloning and expression. Science. 1987;237:893–6.PubMed
6.
go back to reference Strewler GJ, Stern PH, Jacobs JW, Eveloff J, Klein RF, Leung SC, Rosenblatt M, Nissenson RA. Parathyroid hormonelike protein from human renal carcinoma cells. Structural and functional homology with parathyroid hormone. J Clin Invest. 1987;80(6):1803–7.PubMedCentralPubMed Strewler GJ, Stern PH, Jacobs JW, Eveloff J, Klein RF, Leung SC, Rosenblatt M, Nissenson RA. Parathyroid hormonelike protein from human renal carcinoma cells. Structural and functional homology with parathyroid hormone. J Clin Invest. 1987;80(6):1803–7.PubMedCentralPubMed
7.
go back to reference Grill V, Ho P, Body JJ, Johanson N, Lee SC, Kukreja SC, Moseley JM, Martin TJ. Parathyroid hormone-related protein: elevated levels in both humoral hypercalcemia of malignancy and hypercalcemia complicating metastatic breast cancer. J Clin Endocrinol Metab. 1991;73:1309–15.PubMed Grill V, Ho P, Body JJ, Johanson N, Lee SC, Kukreja SC, Moseley JM, Martin TJ. Parathyroid hormone-related protein: elevated levels in both humoral hypercalcemia of malignancy and hypercalcemia complicating metastatic breast cancer. J Clin Endocrinol Metab. 1991;73:1309–15.PubMed
8.
go back to reference Kovacs CS, Kronenberg HM. Maternal-fetal calcium and bone metabolism during pregnancy, puerperium and lactation. Endocr Rev. 1997;18:832–72.PubMed Kovacs CS, Kronenberg HM. Maternal-fetal calcium and bone metabolism during pregnancy, puerperium and lactation. Endocr Rev. 1997;18:832–72.PubMed
9.
go back to reference Kovacs CS. Control of skeletal homeostasis during pregnancy and lactation—lessons from physiological models. In: Thakker RV, Whyte MP, Eisman JA, Igarashi T, editors. Genetics of bone biology and skeletal disease. San Diego: Academic Press/Elsevier; 2012. p. 221–40. Kovacs CS. Control of skeletal homeostasis during pregnancy and lactation—lessons from physiological models. In: Thakker RV, Whyte MP, Eisman JA, Igarashi T, editors. Genetics of bone biology and skeletal disease. San Diego: Academic Press/Elsevier; 2012. p. 221–40.
10.
go back to reference Kovacs CS. Fetal control of calcium and phosphate homeostasis—lessons from mouse models. In: Thakker RV, Whyte MP, Eisman JA, Igarashi T, editors. Genetics of bone biology and skeletal disease. San Diego: Academic Press/Elsevier; 2012. p. 205–20. Kovacs CS. Fetal control of calcium and phosphate homeostasis—lessons from mouse models. In: Thakker RV, Whyte MP, Eisman JA, Igarashi T, editors. Genetics of bone biology and skeletal disease. San Diego: Academic Press/Elsevier; 2012. p. 205–20.
11.
go back to reference Kovacs CS. The role of vitamin D in pregnancy and lactation: insights from animal models and clinical studies. Ann Rev Nutr. 2012;32:9.1–27. Kovacs CS. The role of vitamin D in pregnancy and lactation: insights from animal models and clinical studies. Ann Rev Nutr. 2012;32:9.1–27.
12.
go back to reference Simmonds CS, Karsenty G, Karaplis AC, Kovacs CS. Parathyroid hormone regulates fetal-placental mineral homeostasis. J Bone Miner Res. 2010;25(3):594–605.PubMed Simmonds CS, Karsenty G, Karaplis AC, Kovacs CS. Parathyroid hormone regulates fetal-placental mineral homeostasis. J Bone Miner Res. 2010;25(3):594–605.PubMed
13.
go back to reference Kovacs CS. Fetal mineral homeostasis. In: Glorieux FH, Pettifor JM, Jüppner H, editors. Pediatric bone: biology and diseases. 2nd ed. San Diego: Elsevier/Academic Press; 2011. p. 247–75. Kovacs CS. Fetal mineral homeostasis. In: Glorieux FH, Pettifor JM, Jüppner H, editors. Pediatric bone: biology and diseases. 2nd ed. San Diego: Elsevier/Academic Press; 2011. p. 247–75.
14.
go back to reference Kovacs CS, Chafe LL, Fudge NJ, Friel JK, Manley NR. PTH regulates fetal blood calcium and skeletal mineralization independently of PTHrP. Endocrinology. 2001;142(11):4983–93.PubMed Kovacs CS, Chafe LL, Fudge NJ, Friel JK, Manley NR. PTH regulates fetal blood calcium and skeletal mineralization independently of PTHrP. Endocrinology. 2001;142(11):4983–93.PubMed
15.
go back to reference Kovacs CS, Manley NR, Moseley JM, Martin TJ, Kronenberg HM. Fetal parathyroids are not required to maintain placental calcium transport. J Clin Invest. 2001;107(8):1007–15.PubMedCentralPubMed Kovacs CS, Manley NR, Moseley JM, Martin TJ, Kronenberg HM. Fetal parathyroids are not required to maintain placental calcium transport. J Clin Invest. 2001;107(8):1007–15.PubMedCentralPubMed
16.
go back to reference Suzuki Y, Kovacs CS, Takanaga H, Peng JB, Landowski CP, Hediger MA. Calcium TRPV6 is involved in murine maternal-fetal calcium transport. J Bone Miner Res. 2008;23(8):1249–56.PubMedCentralPubMed Suzuki Y, Kovacs CS, Takanaga H, Peng JB, Landowski CP, Hediger MA. Calcium TRPV6 is involved in murine maternal-fetal calcium transport. J Bone Miner Res. 2008;23(8):1249–56.PubMedCentralPubMed
17.
go back to reference Loughead JL, Mimouni F, Tsang RC. Serum ionized calcium concentrations in normal neonates. Am J Dis Child. 1988;142:516–8.PubMed Loughead JL, Mimouni F, Tsang RC. Serum ionized calcium concentrations in normal neonates. Am J Dis Child. 1988;142:516–8.PubMed
18.
go back to reference David L, Anast CS. Calcium metabolism in newborn infants. The interrelationship of parathyroid function and calcium, magnesium, and phosphorus metabolism in normal, sick, and hypocalcemic newborns. J Clin Invest. 1974;54:287–96.PubMedCentralPubMed David L, Anast CS. Calcium metabolism in newborn infants. The interrelationship of parathyroid function and calcium, magnesium, and phosphorus metabolism in normal, sick, and hypocalcemic newborns. J Clin Invest. 1974;54:287–96.PubMedCentralPubMed
19.
go back to reference Schauberger CW, Pitkin RM. Maternal-perinatal calcium relationships. Obstet Gynecol. 1979;53:74–6.PubMed Schauberger CW, Pitkin RM. Maternal-perinatal calcium relationships. Obstet Gynecol. 1979;53:74–6.PubMed
20.
go back to reference Garel JM, Barlet JP. Calcium metabolism in newborn animals: the interrelationship of calcium, magnesium, and inorganic phosphorus in newborn rats, foals, lambs, and calves. Pediatr Res. 1976;10:749–54.PubMed Garel JM, Barlet JP. Calcium metabolism in newborn animals: the interrelationship of calcium, magnesium, and inorganic phosphorus in newborn rats, foals, lambs, and calves. Pediatr Res. 1976;10:749–54.PubMed
21.
go back to reference Krukowski M, Smith JJ. pH and the level of calcium in the blood of fetal and neonatal albino rats. Biol Neonate. 1976;29:148–61.PubMed Krukowski M, Smith JJ. pH and the level of calcium in the blood of fetal and neonatal albino rats. Biol Neonate. 1976;29:148–61.PubMed
22.
go back to reference Miao D, He B, Karaplis AC, Goltzman D. Parathyroid hormone is essential for normal fetal bone formation. J Clin Invest. 2002;109(9):1173–82.PubMedCentralPubMed Miao D, He B, Karaplis AC, Goltzman D. Parathyroid hormone is essential for normal fetal bone formation. J Clin Invest. 2002;109(9):1173–82.PubMedCentralPubMed
23.
go back to reference Haddad JG Jr, Boisseau V, Avioli LV. Placental transfer of vitamin D3 and 25-hydroxycholecalciferol in the rat. J Lab Clin Med. 1971;77:908–15.PubMed Haddad JG Jr, Boisseau V, Avioli LV. Placental transfer of vitamin D3 and 25-hydroxycholecalciferol in the rat. J Lab Clin Med. 1971;77:908–15.PubMed
24.
go back to reference Noff D, Edelstein S. Vitamin D and its hydroxylated metabolites in the rat. Placental and lacteal transport, subsequent metabolic pathways and tissue distribution. Horm Res. 1978;9:292–300. Noff D, Edelstein S. Vitamin D and its hydroxylated metabolites in the rat. Placental and lacteal transport, subsequent metabolic pathways and tissue distribution. Horm Res. 1978;9:292–300.
25.
go back to reference Hillman LS, Haddad JG. Human perinatal vitamin D metabolism. I. 25-Hydroxyvitamin D in maternal and cord blood. J Pediatr. 1974;84:742–9.PubMed Hillman LS, Haddad JG. Human perinatal vitamin D metabolism. I. 25-Hydroxyvitamin D in maternal and cord blood. J Pediatr. 1974;84:742–9.PubMed
26.
go back to reference Wieland P, Fischer JA, Trechsel U, Roth HR, Vetter K, Schneider H, Huch A. Perinatal parathyroid hormone, vitamin D metabolites, and calcitonin in man. Am J Physiol. 1980;239:E385–90.PubMed Wieland P, Fischer JA, Trechsel U, Roth HR, Vetter K, Schneider H, Huch A. Perinatal parathyroid hormone, vitamin D metabolites, and calcitonin in man. Am J Physiol. 1980;239:E385–90.PubMed
27.
go back to reference Fleischman AR, Rosen JF, Cole J, Smith CM, DeLuca HF. Maternal and fetal serum 1,25-dihydroxyvitamin D levels at term. J Pediatr. 1980;97:640–2.PubMed Fleischman AR, Rosen JF, Cole J, Smith CM, DeLuca HF. Maternal and fetal serum 1,25-dihydroxyvitamin D levels at term. J Pediatr. 1980;97:640–2.PubMed
28.
go back to reference Seki K, Furuya K, Makimura N, Mitsui C, Hirata J, Nagata I. Cord blood levels of calcium-regulating hormones and osteocalcin in premature infants. J Perinat Med. 1994;22:189–94.PubMed Seki K, Furuya K, Makimura N, Mitsui C, Hirata J, Nagata I. Cord blood levels of calcium-regulating hormones and osteocalcin in premature infants. J Perinat Med. 1994;22:189–94.PubMed
29.
go back to reference Hollis BW, Pittard WB. Evaluation of the total fetomaternal vitamin D relationships at term: evidence for racial differences. J Clin Endocrinol Metab. 1984;59:652–7.PubMed Hollis BW, Pittard WB. Evaluation of the total fetomaternal vitamin D relationships at term: evidence for racial differences. J Clin Endocrinol Metab. 1984;59:652–7.PubMed
30.
go back to reference Viljakainen HT, Saarnio E, Hytinantti T, Miettinen M, Surcel H, Makitie O, Andersson S, Laitinen K, Lamberg-Allardt C. Maternal vitamin D status determines bone variables in the newborn. J Clin Endocrinol Metab. 2010;95(4):1749–57.PubMed Viljakainen HT, Saarnio E, Hytinantti T, Miettinen M, Surcel H, Makitie O, Andersson S, Laitinen K, Lamberg-Allardt C. Maternal vitamin D status determines bone variables in the newborn. J Clin Endocrinol Metab. 2010;95(4):1749–57.PubMed
31.
go back to reference Kovacs CS. Fetus, Neonate and Infant. In: Feldman D, Pike WJ, Adams JS, editors. Vitamin D. 3rd ed. New York: Academic Press; 2011. p. 625–46. Kovacs CS. Fetus, Neonate and Infant. In: Feldman D, Pike WJ, Adams JS, editors. Vitamin D. 3rd ed. New York: Academic Press; 2011. p. 625–46.
32.
go back to reference McDonald KR, Fudge NJ, Woodrow JP, Friel JK, Hoff AO, Gagel RF, Kovacs CS. Ablation of calcitonin/calcitonin gene related peptide-a impairs fetal magnesium but not calcium homeostasis. Am J Physiol Endocrinol Metab. 2004;287(2):E218–26.PubMed McDonald KR, Fudge NJ, Woodrow JP, Friel JK, Hoff AO, Gagel RF, Kovacs CS. Ablation of calcitonin/calcitonin gene related peptide-a impairs fetal magnesium but not calcium homeostasis. Am J Physiol Endocrinol Metab. 2004;287(2):E218–26.PubMed
33.
go back to reference Ma Y, Samaraweera M, Cooke-Hubley S, Kirby BJ, Karaplis AC, Lanske B, Kovacs CS. Neither absence nor excess of FGF23 disturbs murine fetal-placental phosphorus homeostasis or prenatal skeletal development and mineralization. Endocrinology. 2014 (submitted). Ma Y, Samaraweera M, Cooke-Hubley S, Kirby BJ, Karaplis AC, Lanske B, Kovacs CS. Neither absence nor excess of FGF23 disturbs murine fetal-placental phosphorus homeostasis or prenatal skeletal development and mineralization. Endocrinology. 2014 (submitted).
34.
go back to reference Kirby BJ, Ma Y, Martin HM, Buckle Favaro KL, Karaplis AC, Kovacs CS. Upregulation of calcitriol during pregnancy and skeletal recovery after lactation do not require parathyroid hormone. J Bone Miner Res. 2013;28(9):1987–2000.PubMed Kirby BJ, Ma Y, Martin HM, Buckle Favaro KL, Karaplis AC, Kovacs CS. Upregulation of calcitriol during pregnancy and skeletal recovery after lactation do not require parathyroid hormone. J Bone Miner Res. 2013;28(9):1987–2000.PubMed
35.
go back to reference Takaiwa M, Aya K, Miyai T, Hasegawa K, Yokoyama M, Kondo Y, Kodani N, Seino Y, Tanaka H, Morishima T. Fibroblast growth factor 23 concentrations in healthy term infants during the early postpartum period. Bone. 2010;47(2):256–62. Takaiwa M, Aya K, Miyai T, Hasegawa K, Yokoyama M, Kondo Y, Kodani N, Seino Y, Tanaka H, Morishima T. Fibroblast growth factor 23 concentrations in healthy term infants during the early postpartum period. Bone. 2010;47(2):256–62.
36.
go back to reference Ohata Y, Arahori H, Namba N, Kitaoka T, Hirai H, Wada K, Nakayama M, Michigami T, Imura A, Nabeshima Y, Yamazaki Y, Ozono K. Circulating levels of soluble alpha-Klotho are markedly elevated in human umbilical cord blood. J Clin Endocrinol Metab. 2011;96(6):E943–7.PubMed Ohata Y, Arahori H, Namba N, Kitaoka T, Hirai H, Wada K, Nakayama M, Michigami T, Imura A, Nabeshima Y, Yamazaki Y, Ozono K. Circulating levels of soluble alpha-Klotho are markedly elevated in human umbilical cord blood. J Clin Endocrinol Metab. 2011;96(6):E943–7.PubMed
37.
go back to reference Simmonds CS, Kovacs CS. Role of parathyroid hormone (PTH) and PTH-related protein (PTHrP) in regulating mineral homeostasis during fetal development. Crit Rev Eukaryot Gene Expr. 2010;20(3):235–73.PubMed Simmonds CS, Kovacs CS. Role of parathyroid hormone (PTH) and PTH-related protein (PTHrP) in regulating mineral homeostasis during fetal development. Crit Rev Eukaryot Gene Expr. 2010;20(3):235–73.PubMed
38.
go back to reference Abbas SK, Pickard DW, Rodda CP, Heath JA, Hammonds RG, Wood WI, Caple IW, Martin TJ, Care AD. Stimulation of ovine placental calcium transport by purified natural and recombinant parathyroid hormone-related protein (PTHrP) preparations. Q J Exp Physiol. 1989;74:549–52.PubMed Abbas SK, Pickard DW, Rodda CP, Heath JA, Hammonds RG, Wood WI, Caple IW, Martin TJ, Care AD. Stimulation of ovine placental calcium transport by purified natural and recombinant parathyroid hormone-related protein (PTHrP) preparations. Q J Exp Physiol. 1989;74:549–52.PubMed
39.
go back to reference Care AD, Abbas SK, Pickard DW, Barri M, Drinkhill M, Findlay JB, White IR, Caple IW. Stimulation of ovine placental transport of calcium and magnesium by mid-molecule fragments of human parathyroid hormone-related protein. Exp Physiol. 1990;75:605–8.PubMed Care AD, Abbas SK, Pickard DW, Barri M, Drinkhill M, Findlay JB, White IR, Caple IW. Stimulation of ovine placental transport of calcium and magnesium by mid-molecule fragments of human parathyroid hormone-related protein. Exp Physiol. 1990;75:605–8.PubMed
40.
go back to reference Care AD, Caple IW, Abbas SK, Pickard DW. The effect of fetal thyroparathyroidectomy on the transport of calcium across the ovine placenta to the fetus. Placenta. 1986;7:417–24.PubMed Care AD, Caple IW, Abbas SK, Pickard DW. The effect of fetal thyroparathyroidectomy on the transport of calcium across the ovine placenta to the fetus. Placenta. 1986;7:417–24.PubMed
41.
go back to reference MacIsaac RJ, Heath JA, Rodda CP, Moseley JM, Care AD, Martin TJ, Caple IW. Role of the fetal parathyroid glands and parathyroid hormone-related protein in the regulation of placental transport of calcium, magnesium and inorganic phosphate. Reprod Fertil Dev. 1991;3:447–57.PubMed MacIsaac RJ, Heath JA, Rodda CP, Moseley JM, Care AD, Martin TJ, Caple IW. Role of the fetal parathyroid glands and parathyroid hormone-related protein in the regulation of placental transport of calcium, magnesium and inorganic phosphate. Reprod Fertil Dev. 1991;3:447–57.PubMed
42.
go back to reference Barri M, Abbas SK, Pickard DW, Hammonds RG, Wood WI, Caple IW, Martin TJ, Care AD. Fetal magnesium homeostasis in the sheep. Exp Physiol. 1990;75:681–8.PubMed Barri M, Abbas SK, Pickard DW, Hammonds RG, Wood WI, Caple IW, Martin TJ, Care AD. Fetal magnesium homeostasis in the sheep. Exp Physiol. 1990;75:681–8.PubMed
43.
go back to reference Barlet JP, Davicco MJ, Rouffet J, Coxam V, Lefaivre J. Short communication: parathyroid hormone-related peptide does not stimulate phosphate placental transport. Placenta. 1994;15:441–4.PubMed Barlet JP, Davicco MJ, Rouffet J, Coxam V, Lefaivre J. Short communication: parathyroid hormone-related peptide does not stimulate phosphate placental transport. Placenta. 1994;15:441–4.PubMed
44.
go back to reference Stulc J, Stulcova B. Placental transfer of phosphate in anaesthetized rats. Placenta. 1996;17:487–93.PubMed Stulc J, Stulcova B. Placental transfer of phosphate in anaesthetized rats. Placenta. 1996;17:487–93.PubMed
45.
go back to reference Kovacs CS, Ho-Pao CL, Hunzelman JL, Lanske B, Fox J, Seidman JG, Seidman CE, Kronenberg HM. Regulation of murine fetal-placental calcium metabolism by the calcium-sensing receptor. J Clin Invest. 1998;101:2812–20.PubMedCentralPubMed Kovacs CS, Ho-Pao CL, Hunzelman JL, Lanske B, Fox J, Seidman JG, Seidman CE, Kronenberg HM. Regulation of murine fetal-placental calcium metabolism by the calcium-sensing receptor. J Clin Invest. 1998;101:2812–20.PubMedCentralPubMed
46.
go back to reference Chattopadhyay N, Baum N, Bai M, Riccardi D, Hebert SC, Harris EW, Brown EM. Ontogeny of the extracellular calcium-sensing receptor in rat kidney. Am J Physiol. 1996;271:F736–43.PubMed Chattopadhyay N, Baum N, Bai M, Riccardi D, Hebert SC, Harris EW, Brown EM. Ontogeny of the extracellular calcium-sensing receptor in rat kidney. Am J Physiol. 1996;271:F736–43.PubMed
47.
go back to reference Lee K, Deeds JD, Segre GV. Expression of parathyroid hormone-related peptide and its receptor messenger ribonucleic acids during fetal development of rats. Endocrinology. 1995;136:453–63.PubMed Lee K, Deeds JD, Segre GV. Expression of parathyroid hormone-related peptide and its receptor messenger ribonucleic acids during fetal development of rats. Endocrinology. 1995;136:453–63.PubMed
48.
go back to reference Karmali R, Schiffmann SN, Vanderwinden JM, Hendy GN, Nys-DeWolf N, Corvilain J, Bergmann P, Vanderhaeghen JJ. Expression of mRNA of parathyroid hormone-related peptide in fetal bones of the rat. Cell Tissue Res. 1992;270:597–600.PubMed Karmali R, Schiffmann SN, Vanderwinden JM, Hendy GN, Nys-DeWolf N, Corvilain J, Bergmann P, Vanderhaeghen JJ. Expression of mRNA of parathyroid hormone-related peptide in fetal bones of the rat. Cell Tissue Res. 1992;270:597–600.PubMed
49.
go back to reference Burton DW, Brandt DW, Deftos LJ. Parathyroid hormone-related protein in the cardiovascular system. Endocrinology. 1994;135(1):253–61.PubMed Burton DW, Brandt DW, Deftos LJ. Parathyroid hormone-related protein in the cardiovascular system. Endocrinology. 1994;135(1):253–61.PubMed
50.
go back to reference Abbas SK, Pickard DW, Illingworth D, Storer J, Purdie DW, Moniz C, Dixit M, Caple IW, Ebeling PR, Rodda CP. Measurement of parathyroid hormone-related protein in extracts of fetal parathyroid glands and placental membranes. J Endocrinol. 1990;124:319–25.PubMed Abbas SK, Pickard DW, Illingworth D, Storer J, Purdie DW, Moniz C, Dixit M, Caple IW, Ebeling PR, Rodda CP. Measurement of parathyroid hormone-related protein in extracts of fetal parathyroid glands and placental membranes. J Endocrinol. 1990;124:319–25.PubMed
51.
go back to reference Senior PV, Heath DA, Beck F. Expression of parathyroid hormone-related protein mRNA in the rat before birth: demonstration by hybridization histochemistry. J Mol Endocrinol. 1991;6:281–90.PubMed Senior PV, Heath DA, Beck F. Expression of parathyroid hormone-related protein mRNA in the rat before birth: demonstration by hybridization histochemistry. J Mol Endocrinol. 1991;6:281–90.PubMed
52.
go back to reference Bowden SJ, Emly JF, Hughes SV, Powell G, Ahmed A, Whittle MJ, Ratcliffe JG, Ratcliffe WA. Parathyroid hormone-related protein in human term placenta and membranes. J Endocrinol. 1994;142:217–24.PubMed Bowden SJ, Emly JF, Hughes SV, Powell G, Ahmed A, Whittle MJ, Ratcliffe JG, Ratcliffe WA. Parathyroid hormone-related protein in human term placenta and membranes. J Endocrinol. 1994;142:217–24.PubMed
53.
go back to reference Bruns ME, Ferguson JE II, Bruns DE, Burton DW, Brandt DW, Juppner H, Segre GV, Deftos LJ. Expression of parathyroid hormone-related peptide and its receptor messenger ribonucleic acid in human amnion and chorion-decidua: implications for secretion and function. Am J Obstet Gynecol. 1995;173(3 Pt 1):739–46.PubMed Bruns ME, Ferguson JE II, Bruns DE, Burton DW, Brandt DW, Juppner H, Segre GV, Deftos LJ. Expression of parathyroid hormone-related peptide and its receptor messenger ribonucleic acid in human amnion and chorion-decidua: implications for secretion and function. Am J Obstet Gynecol. 1995;173(3 Pt 1):739–46.PubMed
54.
go back to reference Ferguson JE, Gorman JV, Bruns DE, Weir EC, Burtis WJ, Martin TJ, Bruns ME. Abundant expression of parathyroid hormone-related protein in human amnion and its association with labor. Proc Natl Acad Sci USA. 1992;89:8384–8.PubMedCentralPubMed Ferguson JE, Gorman JV, Bruns DE, Weir EC, Burtis WJ, Martin TJ, Bruns ME. Abundant expression of parathyroid hormone-related protein in human amnion and its association with labor. Proc Natl Acad Sci USA. 1992;89:8384–8.PubMedCentralPubMed
55.
go back to reference Ferguson JE, Seaner R, Bruns DE, Redick JA, Mills SE, Jüppner H, Segre GV, Bruns ME. Expression of parathyroid hormone-related protein and its receptor in human umbilical cord: evidence for a paracrine system involving umbilical vessels. Am J Obstet Gynecol. 1994;170:1018–24.PubMed Ferguson JE, Seaner R, Bruns DE, Redick JA, Mills SE, Jüppner H, Segre GV, Bruns ME. Expression of parathyroid hormone-related protein and its receptor in human umbilical cord: evidence for a paracrine system involving umbilical vessels. Am J Obstet Gynecol. 1994;170:1018–24.PubMed
56.
go back to reference Broadus AE, Macica C, Chen X. The PTHrP functional domain is at the gates of endochondral bones. Ann N Y Acad Sci. 2007;1116:65–81.PubMed Broadus AE, Macica C, Chen X. The PTHrP functional domain is at the gates of endochondral bones. Ann N Y Acad Sci. 2007;1116:65–81.PubMed
57.
go back to reference Chen X, Macica CM, Dreyer BE, Hammond VE, Hens JR, Philbrick WM, Broadus AE. Initial characterization of PTH-related protein gene-driven lacZ expression in the mouse. J Bone Miner Res. 2006;21(1):113–23.PubMed Chen X, Macica CM, Dreyer BE, Hammond VE, Hens JR, Philbrick WM, Broadus AE. Initial characterization of PTH-related protein gene-driven lacZ expression in the mouse. J Bone Miner Res. 2006;21(1):113–23.PubMed
58.
go back to reference Karaplis AC, Luz A, Glowacki J, Bronson RT, Tybulewicz VL, Kronenberg HM, Mulligan RC. Lethal skeletal dysplasia from targeted disruption of the parathyroid hormone-related peptide gene. Genes Dev. 1994;8:277–89.PubMed Karaplis AC, Luz A, Glowacki J, Bronson RT, Tybulewicz VL, Kronenberg HM, Mulligan RC. Lethal skeletal dysplasia from targeted disruption of the parathyroid hormone-related peptide gene. Genes Dev. 1994;8:277–89.PubMed
59.
go back to reference Wysolmerski JJ, Philbrick WM, Dunbar ME, Lanske B, Kronenberg H, Broadus AE. Rescue of the parathyroid hormone-related protein knockout mouse demonstrates that parathyroid hormone-related protein is essential for mammary gland development. Development. 1998;125(7):1285–94.PubMed Wysolmerski JJ, Philbrick WM, Dunbar ME, Lanske B, Kronenberg H, Broadus AE. Rescue of the parathyroid hormone-related protein knockout mouse demonstrates that parathyroid hormone-related protein is essential for mammary gland development. Development. 1998;125(7):1285–94.PubMed
60.
go back to reference Rubin LP, Kovacs CS, De Paepe ME, Tsai SW, Torday JS, Kronenberg HM. Arrested pulmonary alveolar cytodifferentiation and defective surfactant synthesis in mice missing the gene for parathyroid hormone-related protein. Dev Dyn. 2004;230(2):278–89.PubMed Rubin LP, Kovacs CS, De Paepe ME, Tsai SW, Torday JS, Kronenberg HM. Arrested pulmonary alveolar cytodifferentiation and defective surfactant synthesis in mice missing the gene for parathyroid hormone-related protein. Dev Dyn. 2004;230(2):278–89.PubMed
61.
go back to reference MacIsaac RJ, Caple IW, Danks JA, Diefenbach-Jagger H, Grill V, Moseley JM, Southby J, Martin TJ. Ontogeny of parathyroid hormone-related protein in the ovine parathyroid gland. Endocrinology. 1991;129:757–64.PubMed MacIsaac RJ, Caple IW, Danks JA, Diefenbach-Jagger H, Grill V, Moseley JM, Southby J, Martin TJ. Ontogeny of parathyroid hormone-related protein in the ovine parathyroid gland. Endocrinology. 1991;129:757–64.PubMed
62.
go back to reference Tucci J, Russell A, Senior PV, Fernley R, Ferraro T, Beck F. The expression of parathyroid hormone and parathyroid hormone-related protein in developing rat parathyroid glands. J Mol Endocrinol. 1996;17:149–57.PubMed Tucci J, Russell A, Senior PV, Fernley R, Ferraro T, Beck F. The expression of parathyroid hormone and parathyroid hormone-related protein in developing rat parathyroid glands. J Mol Endocrinol. 1996;17:149–57.PubMed
63.
go back to reference Docherty HM, Ratcliffe WA, Heath DA, Docherty K. Expression of parathyroid hormone-related protein in abnormal human parathyroids. J Endocrinol. 1991;129(3):431–8.PubMed Docherty HM, Ratcliffe WA, Heath DA, Docherty K. Expression of parathyroid hormone-related protein in abnormal human parathyroids. J Endocrinol. 1991;129(3):431–8.PubMed
64.
go back to reference Asa SL, Henderson J, Goltzman D, Drucker DJ. Parathyroid hormone-like peptide in normal and neoplastic human endocrine tissues. J Clin Endocrinol Metab. 1990;71(5):1112–8.PubMed Asa SL, Henderson J, Goltzman D, Drucker DJ. Parathyroid hormone-like peptide in normal and neoplastic human endocrine tissues. J Clin Endocrinol Metab. 1990;71(5):1112–8.PubMed
65.
go back to reference Danks JA, Ebeling PR, Hayman JA, Diefenbach-Jagger H, Collier FM, Grill V, Southby J, Moseley JM, Chou ST, Martin TJ. Immunohistochemical localization of parathyroid hormone-related protein in parathyroid adenoma and hyperplasia. J Pathol. 1990;161(1):27–33.PubMed Danks JA, Ebeling PR, Hayman JA, Diefenbach-Jagger H, Collier FM, Grill V, Southby J, Moseley JM, Chou ST, Martin TJ. Immunohistochemical localization of parathyroid hormone-related protein in parathyroid adenoma and hyperplasia. J Pathol. 1990;161(1):27–33.PubMed
66.
go back to reference Ikeda K, Weir EC, Mangin M, Dannies PS, Kinder B, Deftos LJ, Brown EM, Broadus AE. Expression of messenger ribonucleic acids encoding a parathyroid hormone-like peptide in normal human and animal tissues with abnormal expression in human parathyroid adenomas. Mol Endocrinol. 1988;2:1230–6.PubMed Ikeda K, Weir EC, Mangin M, Dannies PS, Kinder B, Deftos LJ, Brown EM, Broadus AE. Expression of messenger ribonucleic acids encoding a parathyroid hormone-like peptide in normal human and animal tissues with abnormal expression in human parathyroid adenomas. Mol Endocrinol. 1988;2:1230–6.PubMed
67.
go back to reference Matsushita H, Hara M, Honda K, Kuroda M, Usui M, Nakazawa H, Hara S, Shishiba Y. Inhibition of parathyroid hormone-related protein release by extracellular calcium in dispersed cells from human parathyroid hyperplasia secondary to chronic renal failure and adenoma. Am J Pathol. 1995;146(6):1521–8.PubMedCentralPubMed Matsushita H, Hara M, Honda K, Kuroda M, Usui M, Nakazawa H, Hara S, Shishiba Y. Inhibition of parathyroid hormone-related protein release by extracellular calcium in dispersed cells from human parathyroid hyperplasia secondary to chronic renal failure and adenoma. Am J Pathol. 1995;146(6):1521–8.PubMedCentralPubMed
68.
go back to reference Allgrove J, Manning RM, Adami S, Chayen J, O’Riordan JL. Biologically active parathyroid hormone in foetal and maternal plasma [abstract]. Clin Sci. 1981;60:11P. Allgrove J, Manning RM, Adami S, Chayen J, O’Riordan JL. Biologically active parathyroid hormone in foetal and maternal plasma [abstract]. Clin Sci. 1981;60:11P.
69.
go back to reference Allgrove J, Adami S, Manning RM, O’Riordan JL. Cytochemical bioassay of parathyroid hormone in maternal and cord blood. Arch Dis Child. 1985;60:110–5.PubMedCentralPubMed Allgrove J, Adami S, Manning RM, O’Riordan JL. Cytochemical bioassay of parathyroid hormone in maternal and cord blood. Arch Dis Child. 1985;60:110–5.PubMedCentralPubMed
70.
go back to reference Rubin LP, Posillico JT, Anast CS, Brown EM. Circulating levels of biologically active and immunoreactive intact parathyroid hormone in human newborns. Pediatr Res. 1991;29:201–7.PubMed Rubin LP, Posillico JT, Anast CS, Brown EM. Circulating levels of biologically active and immunoreactive intact parathyroid hormone in human newborns. Pediatr Res. 1991;29:201–7.PubMed
71.
go back to reference Abbas SK, Ratcliffe WA, Moniz C, Dixit M, Caple IW, Silver M, Fowden A, Care AD. The role of parathyroid hormone-related protein in calcium homeostasis in the fetal pig. Exp Physiol. 1994;79:527–36.PubMed Abbas SK, Ratcliffe WA, Moniz C, Dixit M, Caple IW, Silver M, Fowden A, Care AD. The role of parathyroid hormone-related protein in calcium homeostasis in the fetal pig. Exp Physiol. 1994;79:527–36.PubMed
72.
go back to reference Care AD. Development of endocrine pathways in the regulation of calcium homeostasis. Baillieres Clin Endocrinol Metab. 1989;3:671–88.PubMed Care AD. Development of endocrine pathways in the regulation of calcium homeostasis. Baillieres Clin Endocrinol Metab. 1989;3:671–88.PubMed
73.
go back to reference Kovacs CS, Lanske B, Hunzelman JL, Guo J, Karaplis AC, Kronenberg HM. Parathyroid hormone-related peptide (PTHrP) regulates fetal-placental calcium transport through a receptor distinct from the PTH/PTHrP receptor. Proc Natl Acad Sci USA. 1996;93:15233–8.PubMedCentralPubMed Kovacs CS, Lanske B, Hunzelman JL, Guo J, Karaplis AC, Kronenberg HM. Parathyroid hormone-related peptide (PTHrP) regulates fetal-placental calcium transport through a receptor distinct from the PTH/PTHrP receptor. Proc Natl Acad Sci USA. 1996;93:15233–8.PubMedCentralPubMed
74.
go back to reference Kovacs CS. Bone development in the fetus and neonate: role of the calciotropic hormones. Curr Osteoporos Rep. 2011;9(4):274–83.PubMed Kovacs CS. Bone development in the fetus and neonate: role of the calciotropic hormones. Curr Osteoporos Rep. 2011;9(4):274–83.PubMed
75.
go back to reference Weatherley AJ, Ross R, Pickard DW, Care AD. The transfer of calcium during perfusion of the placenta and intact and thyroparathyroidectomized sheep. Placenta. 1983;4:271–7.PubMed Weatherley AJ, Ross R, Pickard DW, Care AD. The transfer of calcium during perfusion of the placenta and intact and thyroparathyroidectomized sheep. Placenta. 1983;4:271–7.PubMed
76.
go back to reference Rodda CP, Kubota M, Heath JA, Ebeling PR, Moseley JM, Care AD, Caple IW, Martin TJ. Evidence for a novel parathyroid hormone-related protein in fetal lamb parathyroid glands and sheep placenta: comparisons with a similar protein implicated in humoral hypercalcaemia of malignancy. J Endocrinol. 1988;117:261–71.PubMed Rodda CP, Kubota M, Heath JA, Ebeling PR, Moseley JM, Care AD, Caple IW, Martin TJ. Evidence for a novel parathyroid hormone-related protein in fetal lamb parathyroid glands and sheep placenta: comparisons with a similar protein implicated in humoral hypercalcaemia of malignancy. J Endocrinol. 1988;117:261–71.PubMed
77.
go back to reference Wu TL, Vasavada RC, Yang K, Massfelder T, Ganz M, Abbas SK, Care AD, Stewart AF. Structural and physiologic characterization of the mid-region secretory species of parathyroid hormone-related protein. J Biol Chem. 1996;271:24371–81.PubMed Wu TL, Vasavada RC, Yang K, Massfelder T, Ganz M, Abbas SK, Care AD, Stewart AF. Structural and physiologic characterization of the mid-region secretory species of parathyroid hormone-related protein. J Biol Chem. 1996;271:24371–81.PubMed
78.
go back to reference Kovacs CS, Chafe LL, Woodland ML, McDonald KR, Fudge NJ, Wookey PJ. Calcitropic gene expression suggests a role for intraplacental yolk sac in maternal-fetal calcium exchange. Am J Physiol Endocrinol Metab. 2002;282(3):E721–32.PubMed Kovacs CS, Chafe LL, Woodland ML, McDonald KR, Fudge NJ, Wookey PJ. Calcitropic gene expression suggests a role for intraplacental yolk sac in maternal-fetal calcium exchange. Am J Physiol Endocrinol Metab. 2002;282(3):E721–32.PubMed
79.
go back to reference Bond H, Baker B, Boyd RD, Cowley E, Glazier JD, Jones CJ, Sibley CP, Ward BS, Husain SM. Artificial perfusion of the fetal circulation of the in situ mouse placenta: methodology and validation. Placenta. 2006;27(Suppl A):S69–75. Bond H, Baker B, Boyd RD, Cowley E, Glazier JD, Jones CJ, Sibley CP, Ward BS, Husain SM. Artificial perfusion of the fetal circulation of the in situ mouse placenta: methodology and validation. Placenta. 2006;27(Suppl A):S69–75.
80.
go back to reference Bond H, Dilworth MR, Baker B, Cowley E, Requena Jimenez A, Boyd RD, Husain SM, Ward BS, Sibley CP, Glazier JD. Increased maternofetal calcium flux in parathyroid hormone-related protein-null mice. J Physiol. 2008;586(7):2015–25.PubMedCentralPubMed Bond H, Dilworth MR, Baker B, Cowley E, Requena Jimenez A, Boyd RD, Husain SM, Ward BS, Sibley CP, Glazier JD. Increased maternofetal calcium flux in parathyroid hormone-related protein-null mice. J Physiol. 2008;586(7):2015–25.PubMedCentralPubMed
81.
go back to reference Philbrick WM, Wysolmerski JJ, Galbraith S, Holt E, Orloff JJ, Yang KH, Vasavada RC, Weir EC, Broadus AE, Stewart AF. Defining the roles of parathyroid hormone-related protein in normal physiology. Physiol Rev. 1996;76:127–73.PubMed Philbrick WM, Wysolmerski JJ, Galbraith S, Holt E, Orloff JJ, Yang KH, Vasavada RC, Weir EC, Broadus AE, Stewart AF. Defining the roles of parathyroid hormone-related protein in normal physiology. Physiol Rev. 1996;76:127–73.PubMed
82.
go back to reference Riddle RC, Macica CM, Clemens TL. Vascular, cardiovascular, and neurologic actions of parathyroid-related protein. In: Bilezikian JP, Raisz LG, Martin TJ, editors. Principles of bone biology. 3rd ed. New York, NY: Academic Press; 2008. p. 733–48. Riddle RC, Macica CM, Clemens TL. Vascular, cardiovascular, and neurologic actions of parathyroid-related protein. In: Bilezikian JP, Raisz LG, Martin TJ, editors. Principles of bone biology. 3rd ed. New York, NY: Academic Press; 2008. p. 733–48.
83.
go back to reference Lanske B, Karaplis AC, Lee K, Luz A, Vortkamp A, Pirro A, Karperien M, Defize L, Ho C, Abou-Samra AB, Jüppner H, Segre GV, Kronenberg HM. PTH/PTHrP receptor in early development and Indian hedgehog-regulated bone growth. Science. 1996;273:663–6.PubMed Lanske B, Karaplis AC, Lee K, Luz A, Vortkamp A, Pirro A, Karperien M, Defize L, Ho C, Abou-Samra AB, Jüppner H, Segre GV, Kronenberg HM. PTH/PTHrP receptor in early development and Indian hedgehog-regulated bone growth. Science. 1996;273:663–6.PubMed
84.
go back to reference Givens MH, Macy IC. The chemical composition of the human fetus. J Biol Chem. 1933;102:7–17. Givens MH, Macy IC. The chemical composition of the human fetus. J Biol Chem. 1933;102:7–17.
85.
go back to reference Trotter M, Hixon BB. Sequential changes in weight, density, and percentage ash weight of human skeletons from an early fetal period through old age. Anat Rec. 1974;179:1–18.PubMed Trotter M, Hixon BB. Sequential changes in weight, density, and percentage ash weight of human skeletons from an early fetal period through old age. Anat Rec. 1974;179:1–18.PubMed
86.
go back to reference Widdowson EM, Dickerson JW. Chemical composition of the body. In: Comar CL, Bronner F, editors. Mineral metabolism: an advanced treatise, volume II, the elements, part A. New York: Academic Press; 1964. p. 1–247. Widdowson EM, Dickerson JW. Chemical composition of the body. In: Comar CL, Bronner F, editors. Mineral metabolism: an advanced treatise, volume II, the elements, part A. New York: Academic Press; 1964. p. 1–247.
87.
go back to reference Dahlman T, Sjoberg HE, Bucht E. Calcium homeostasis in normal pregnancy and puerperium. A longitudinal study. Acta Obstet Gynecol Scand. 1994;73:393–8.PubMed Dahlman T, Sjoberg HE, Bucht E. Calcium homeostasis in normal pregnancy and puerperium. A longitudinal study. Acta Obstet Gynecol Scand. 1994;73:393–8.PubMed
88.
go back to reference Gallacher SJ, Fraser WD, Owens OJ, Dryburgh FJ, Logue FC, Jenkins A, Kennedy J, Boyle IT. Changes in calciotropic hormones and biochemical markers of bone turnover in normal human pregnancy. Eur J Endocrinol. 1994;131:369–74.PubMed Gallacher SJ, Fraser WD, Owens OJ, Dryburgh FJ, Logue FC, Jenkins A, Kennedy J, Boyle IT. Changes in calciotropic hormones and biochemical markers of bone turnover in normal human pregnancy. Eur J Endocrinol. 1994;131:369–74.PubMed
89.
go back to reference Cross NA, Hillman LS, Allen SH, Krause GF, Vieira NE. Calcium homeostasis and bone metabolism during pregnancy, lactation, and postweaning: a longitudinal study. Am J Clin Nutr. 1995;61:514–23.PubMed Cross NA, Hillman LS, Allen SH, Krause GF, Vieira NE. Calcium homeostasis and bone metabolism during pregnancy, lactation, and postweaning: a longitudinal study. Am J Clin Nutr. 1995;61:514–23.PubMed
90.
go back to reference Rasmussen N, Frolich A, Hornnes PJ, Hegedus L. Serum ionized calcium and intact parathyroid hormone levels during pregnancy and postpartum. Br J Obstet Gynaecol. 1990;97:857–9.PubMed Rasmussen N, Frolich A, Hornnes PJ, Hegedus L. Serum ionized calcium and intact parathyroid hormone levels during pregnancy and postpartum. Br J Obstet Gynaecol. 1990;97:857–9.PubMed
91.
go back to reference Seki K, Makimura N, Mitsui C, Hirata J, Nagata I. Calcium-regulating hormones and osteocalcin levels during pregnancy: a longitudinal study. Am J Obstet Gynecol. 1991;164:1248–52.PubMed Seki K, Makimura N, Mitsui C, Hirata J, Nagata I. Calcium-regulating hormones and osteocalcin levels during pregnancy: a longitudinal study. Am J Obstet Gynecol. 1991;164:1248–52.PubMed
92.
go back to reference Ardawi MS, Nasrat HA. HS BAA. Calcium-regulating hormones and parathyroid hormone-related peptide in normal human pregnancy and postpartum: a longitudinal study. Eur J Endocrinol. 1997;137(4):402–9.PubMed Ardawi MS, Nasrat HA. HS BAA. Calcium-regulating hormones and parathyroid hormone-related peptide in normal human pregnancy and postpartum: a longitudinal study. Eur J Endocrinol. 1997;137(4):402–9.PubMed
93.
go back to reference Singh HJ, Mohammad NH, Nila A. Serum calcium and parathormone during normal pregnancy in Malay women. J Matern Fetal Med. 1999;8(3):95–100.PubMed Singh HJ, Mohammad NH, Nila A. Serum calcium and parathormone during normal pregnancy in Malay women. J Matern Fetal Med. 1999;8(3):95–100.PubMed
94.
go back to reference Bikle DD, Gee E, Halloran B, Haddad JG. Free 1,25-dihydroxyvitamin D levels in serum from normal subjects, pregnant subjects, and subjects with liver disease. J Clin Invest. 1984;74:1966–71.PubMedCentralPubMed Bikle DD, Gee E, Halloran B, Haddad JG. Free 1,25-dihydroxyvitamin D levels in serum from normal subjects, pregnant subjects, and subjects with liver disease. J Clin Invest. 1984;74:1966–71.PubMedCentralPubMed
95.
go back to reference Tamma R, Colaianni G, Zhu LL, DiBenedetto A, Greco G, Montemurro G, Patano N, Strippoli M, Vergari R, Mancini L, Colucci S, Grano M, Faccio R, Liu X, Li J, Usmani S, Bachar M, Bab I, Nishimori K, Young LJ, Buettner C, Iqbal J, Sun L, Zaidi M, Zallone A. Oxytocin is an anabolic bone hormone. Proc Natl Acad Sci USA. 2009;106(17):7149–54.PubMedCentralPubMed Tamma R, Colaianni G, Zhu LL, DiBenedetto A, Greco G, Montemurro G, Patano N, Strippoli M, Vergari R, Mancini L, Colucci S, Grano M, Faccio R, Liu X, Li J, Usmani S, Bachar M, Bab I, Nishimori K, Young LJ, Buettner C, Iqbal J, Sun L, Zaidi M, Zallone A. Oxytocin is an anabolic bone hormone. Proc Natl Acad Sci USA. 2009;106(17):7149–54.PubMedCentralPubMed
96.
go back to reference Holt E. Calcium physiology during pregnancy. In: Lockwood CJ, Drezner MK, Basow DS, editors. UpToDate 214. Waltham, MA: UpToDate; 2013. Holt E. Calcium physiology during pregnancy. In: Lockwood CJ, Drezner MK, Basow DS, editors. UpToDate 214. Waltham, MA: UpToDate; 2013.
97.
go back to reference Turner M, Barre PE, Benjamin A, Goltzman D, Gascon-Barre M. Does the maternal kidney contribute to the increased circulating 1,25-dihydroxyvitamin D concentrations during pregnancy? Miner Electrolyte Metab. 1988;14:246–52.PubMed Turner M, Barre PE, Benjamin A, Goltzman D, Gascon-Barre M. Does the maternal kidney contribute to the increased circulating 1,25-dihydroxyvitamin D concentrations during pregnancy? Miner Electrolyte Metab. 1988;14:246–52.PubMed
98.
go back to reference Heaney RP, Skillman TG. Calcium metabolism in normal human pregnancy. J Clin Endocrinol Metab. 1971;33:661–70.PubMed Heaney RP, Skillman TG. Calcium metabolism in normal human pregnancy. J Clin Endocrinol Metab. 1971;33:661–70.PubMed
99.
go back to reference Halloran BP, DeLuca HF. Calcium transport in small intestine during pregnancy and lactation. Am J Physiol. 1980;239:E64–8.PubMed Halloran BP, DeLuca HF. Calcium transport in small intestine during pregnancy and lactation. Am J Physiol. 1980;239:E64–8.PubMed
100.
go back to reference Brommage R, Baxter DC, Gierke LW. Vitamin D-independent intestinal calcium and phosphorus absorption during reproduction. Am J Physiol. 1990;259:G631–8.PubMed Brommage R, Baxter DC, Gierke LW. Vitamin D-independent intestinal calcium and phosphorus absorption during reproduction. Am J Physiol. 1990;259:G631–8.PubMed
101.
go back to reference Fudge NJ, Kovacs CS. Pregnancy up-regulates intestinal calcium absorption and skeletal mineralization independently of the vitamin D receptor. Endocrinology. 2010;151(3):886–95.PubMed Fudge NJ, Kovacs CS. Pregnancy up-regulates intestinal calcium absorption and skeletal mineralization independently of the vitamin D receptor. Endocrinology. 2010;151(3):886–95.PubMed
102.
go back to reference Pahuja DN, DeLuca HF. Stimulation of intestinal calcium transport and bone calcium mobilization by prolactin in vitamin D-deficient rats. Science. 1981;214:1038–9.PubMed Pahuja DN, DeLuca HF. Stimulation of intestinal calcium transport and bone calcium mobilization by prolactin in vitamin D-deficient rats. Science. 1981;214:1038–9.PubMed
103.
go back to reference Mainoya JR. Effects of bovine growth hormone, human placental lactogen and ovine prolactin on intestinal fluid and ion transport in the rat. Endocrinology. 1975;96:1165–70.PubMed Mainoya JR. Effects of bovine growth hormone, human placental lactogen and ovine prolactin on intestinal fluid and ion transport in the rat. Endocrinology. 1975;96:1165–70.PubMed
104.
go back to reference Takeuchi K, Morikawa H, Ueda Y, Mochizuki M. Studies on the effects of placental lactogen on calcium metabolism during pregnancy. Nippon Naibunpi Gakkai Zasshi. 1988;64:1175–86.PubMed Takeuchi K, Morikawa H, Ueda Y, Mochizuki M. Studies on the effects of placental lactogen on calcium metabolism during pregnancy. Nippon Naibunpi Gakkai Zasshi. 1988;64:1175–86.PubMed
105.
go back to reference Wasserman RH, Comar CL, Nold MM, Lengemann FW. Placental transfer of calcium and strontium in the rat and rabbit. Am J Physiol. 1957;189:91–7.PubMed Wasserman RH, Comar CL, Nold MM, Lengemann FW. Placental transfer of calcium and strontium in the rat and rabbit. Am J Physiol. 1957;189:91–7.PubMed
106.
go back to reference Purdie DW, Aaron JE, Selby PL. Bone histology and mineral homeostasis in human pregnancy. Br J Obstet Gynaecol. 1988;95(9):849–54.PubMed Purdie DW, Aaron JE, Selby PL. Bone histology and mineral homeostasis in human pregnancy. Br J Obstet Gynaecol. 1988;95(9):849–54.PubMed
107.
go back to reference Kovacs CS. Calcium and bone metabolism in pregnancy and lactation. J Clin Endocrinol Metab. 2001;86(6):2344–8.PubMed Kovacs CS. Calcium and bone metabolism in pregnancy and lactation. J Clin Endocrinol Metab. 2001;86(6):2344–8.PubMed
108.
go back to reference Naylor KE, Iqbal P, Fledelius C, Fraser RB, Eastell R. The effect of pregnancy on bone density and bone turnover. J Bone Miner Res. 2000;15(1):129–37.PubMed Naylor KE, Iqbal P, Fledelius C, Fraser RB, Eastell R. The effect of pregnancy on bone density and bone turnover. J Bone Miner Res. 2000;15(1):129–37.PubMed
109.
go back to reference Black AJ, Topping J, Durham B, Farquharson RG, Fraser WD. A detailed assessment of alterations in bone turnover, calcium homeostasis, and bone density in normal pregnancy. J Bone Miner Res. 2000;15(3):557–63.PubMed Black AJ, Topping J, Durham B, Farquharson RG, Fraser WD. A detailed assessment of alterations in bone turnover, calcium homeostasis, and bone density in normal pregnancy. J Bone Miner Res. 2000;15(3):557–63.PubMed
110.
go back to reference Ritchie LD, Fung EB, Halloran BP, Turnlund JR, Van Loan MD, Cann CE, King JC. A longitudinal study of calcium homeostasis during human pregnancy and lactation and after resumption of menses. Am J Clin Nutr. 1998;67(4):693–701.PubMed Ritchie LD, Fung EB, Halloran BP, Turnlund JR, Van Loan MD, Cann CE, King JC. A longitudinal study of calcium homeostasis during human pregnancy and lactation and after resumption of menses. Am J Clin Nutr. 1998;67(4):693–701.PubMed
111.
go back to reference Ulrich U, Miller PB, Eyre DR, Chesnut CHR, Schlebusch H, Soules MR. Bone remodeling and bone mineral density during pregnancy. Arch Gynecol Obstet. 2003;268(4):309–16.PubMed Ulrich U, Miller PB, Eyre DR, Chesnut CHR, Schlebusch H, Soules MR. Bone remodeling and bone mineral density during pregnancy. Arch Gynecol Obstet. 2003;268(4):309–16.PubMed
112.
go back to reference Kaur M, Pearson D, Godber I, Lawson N, Baker P, Hosking D. Longitudinal changes in bone mineral density during normal pregnancy. Bone. 2003;32(4):449–54.PubMed Kaur M, Pearson D, Godber I, Lawson N, Baker P, Hosking D. Longitudinal changes in bone mineral density during normal pregnancy. Bone. 2003;32(4):449–54.PubMed
113.
go back to reference Gambacciani M, Spinetti A, Gallo R, Cappagli B, Teti GC, Facchini V. Ultrasonographic bone characteristics during normal pregnancy: longitudinal and cross-sectional evaluation. Am J Obstet Gynecol. 1995;173:890–3.PubMed Gambacciani M, Spinetti A, Gallo R, Cappagli B, Teti GC, Facchini V. Ultrasonographic bone characteristics during normal pregnancy: longitudinal and cross-sectional evaluation. Am J Obstet Gynecol. 1995;173:890–3.PubMed
114.
go back to reference Pearson D, Kaur M, San P, Lawson N, Baker P, Hosking D. Recovery of pregnancy mediated bone loss during lactation. Bone. 2004;34(3):570–8.PubMed Pearson D, Kaur M, San P, Lawson N, Baker P, Hosking D. Recovery of pregnancy mediated bone loss during lactation. Bone. 2004;34(3):570–8.PubMed
115.
go back to reference To WW, Wong MW, Leung TW. Relationship between bone mineral density changes in pregnancy and maternal and pregnancy characteristics: a longitudinal study. Acta Obstet Gynecol Scand. 2003;82(9):820–7.PubMed To WW, Wong MW, Leung TW. Relationship between bone mineral density changes in pregnancy and maternal and pregnancy characteristics: a longitudinal study. Acta Obstet Gynecol Scand. 2003;82(9):820–7.PubMed
116.
go back to reference Woodrow JP, Sharpe CJ, Fudge NJ, Hoff AO, Gagel RF, Kovacs CS. Calcitonin plays a critical role in regulating skeletal mineral metabolism during lactation. Endocrinology. 2006;147:4010–21.PubMed Woodrow JP, Sharpe CJ, Fudge NJ, Hoff AO, Gagel RF, Kovacs CS. Calcitonin plays a critical role in regulating skeletal mineral metabolism during lactation. Endocrinology. 2006;147:4010–21.PubMed
117.
go back to reference Kirby BJ, Ardeshirpour L, Woodrow JP, Wysolmerski JJ, Sims NA, Karaplis AC, Kovacs CS. Skeletal recovery after weaning does not require PTHrP. J Bone Miner Res. 2011;26(6):1242–51.PubMedCentralPubMed Kirby BJ, Ardeshirpour L, Woodrow JP, Wysolmerski JJ, Sims NA, Karaplis AC, Kovacs CS. Skeletal recovery after weaning does not require PTHrP. J Bone Miner Res. 2011;26(6):1242–51.PubMedCentralPubMed
118.
go back to reference Sowers M. Pregnancy and lactation as risk factors for subsequent bone loss and osteoporosis. J Bone Miner Res. 1996;11:1052–60.PubMed Sowers M. Pregnancy and lactation as risk factors for subsequent bone loss and osteoporosis. J Bone Miner Res. 1996;11:1052–60.PubMed
119.
go back to reference Paton LM, Alexander JL, Nowson CA, Margerison C, Frame MG, Kaymakci B, Wark JD. Pregnancy and lactation have no long-term deleterious effect on measures of bone mineral in healthy women: a twin study. Am J Clin Nutr. 2003;77(3):707–14.PubMed Paton LM, Alexander JL, Nowson CA, Margerison C, Frame MG, Kaymakci B, Wark JD. Pregnancy and lactation have no long-term deleterious effect on measures of bone mineral in healthy women: a twin study. Am J Clin Nutr. 2003;77(3):707–14.PubMed
120.
go back to reference Orloff JJ, Reddy D, de Papp AE, Yang KH, Soifer NE, Stewart AF. Parathyroid hormone-related protein as a prohormone: posttranslational processing and receptor interactions. Endocr Rev. 1994;15:40–60.PubMed Orloff JJ, Reddy D, de Papp AE, Yang KH, Soifer NE, Stewart AF. Parathyroid hormone-related protein as a prohormone: posttranslational processing and receptor interactions. Endocr Rev. 1994;15:40–60.PubMed
121.
go back to reference Khosla S, van Heerden JA, Gharib H, Jackson IT, Danks J, Hayman JA, Martin TJ. Parathyroid hormone-related protein and hypercalcemia secondary to massive mammary hyperplasia [letter]. N Engl J Med. 1990;322:1157.PubMed Khosla S, van Heerden JA, Gharib H, Jackson IT, Danks J, Hayman JA, Martin TJ. Parathyroid hormone-related protein and hypercalcemia secondary to massive mammary hyperplasia [letter]. N Engl J Med. 1990;322:1157.PubMed
122.
go back to reference Jackson IT, Saleh J, van Heerden JA. Gigantic mammary hyperplasia in pregnancy associated with pseudohyperparathyroidism. Plast Reconstr Surg. 1989;84(5):806–10.PubMed Jackson IT, Saleh J, van Heerden JA. Gigantic mammary hyperplasia in pregnancy associated with pseudohyperparathyroidism. Plast Reconstr Surg. 1989;84(5):806–10.PubMed
123.
go back to reference Eller-Vainicher C, Ossola MW, Beck-Peccoz P, Chiodini I. PTHrP-associated hypercalcemia of pregnancy resolved after delivery: a case report. Eur J Endocrinol. 2012;166(4):753–6.PubMed Eller-Vainicher C, Ossola MW, Beck-Peccoz P, Chiodini I. PTHrP-associated hypercalcemia of pregnancy resolved after delivery: a case report. Eur J Endocrinol. 2012;166(4):753–6.PubMed
124.
go back to reference Sweeney LL, Malabanan AO, Rosen H. Decreased calcitriol requirement during pregnancy and lactation with a window of increased requirement immediately post partum. Endocr Pract. 2010;16(3):459–62.PubMed Sweeney LL, Malabanan AO, Rosen H. Decreased calcitriol requirement during pregnancy and lactation with a window of increased requirement immediately post partum. Endocr Pract. 2010;16(3):459–62.PubMed
125.
go back to reference Farrugia W, Ho PW, Rice GE, Moseley JM, Permezel M, Wlodek ME. Parathyroid hormone-related protein(1–34) in gestational fluids and release from human gestational tissues. J Endocrinol. 2000;165(3):657–62.PubMed Farrugia W, Ho PW, Rice GE, Moseley JM, Permezel M, Wlodek ME. Parathyroid hormone-related protein(1–34) in gestational fluids and release from human gestational tissues. J Endocrinol. 2000;165(3):657–62.PubMed
126.
go back to reference Curtis NE, Ho PW, King RG, Farrugia W, Moses EK, Gillespie MT, Moseley JM, Rice GE, Wlodek ME. The expression of parathyroid hormone-related protein mRNA and immunoreactive protein in human amnion and choriodecidua is increased at term compared with preterm gestation. J Endocrinol. 1997;154(1):103–12.PubMed Curtis NE, Ho PW, King RG, Farrugia W, Moses EK, Gillespie MT, Moseley JM, Rice GE, Wlodek ME. The expression of parathyroid hormone-related protein mRNA and immunoreactive protein in human amnion and choriodecidua is increased at term compared with preterm gestation. J Endocrinol. 1997;154(1):103–12.PubMed
127.
go back to reference Callies F, Arlt W, Scholz HJ, Reincke M, Allolio B. Management of hypoparathyroidism during pregnancy–report of twelve cases. Eur J Endocrinol. 1998;139(3):284–9.PubMed Callies F, Arlt W, Scholz HJ, Reincke M, Allolio B. Management of hypoparathyroidism during pregnancy–report of twelve cases. Eur J Endocrinol. 1998;139(3):284–9.PubMed
128.
go back to reference Grant DK. Papilloedema and fits in hypoparathyroidism. Q J Med. 1953;22:243–59.PubMed Grant DK. Papilloedema and fits in hypoparathyroidism. Q J Med. 1953;22:243–59.PubMed
129.
go back to reference Krysiak R, Kobielusz-Gembala I, Okopien B. Hypoparathyroidism in pregnancy. Gynecol Endocrinol. 2011;27(8):529–32.PubMed Krysiak R, Kobielusz-Gembala I, Okopien B. Hypoparathyroidism in pregnancy. Gynecol Endocrinol. 2011;27(8):529–32.PubMed
130.
go back to reference Horwitz MJ, Tedesco MB, Sereika SM, Hollis BW, Garcia-Ocana A, Stewart AF. Direct comparison of sustained infusion of human parathyroid hormone-related protein-(1–36). J Clin Endocrinol Metab. 2003;88(4):1603–9.PubMed Horwitz MJ, Tedesco MB, Sereika SM, Hollis BW, Garcia-Ocana A, Stewart AF. Direct comparison of sustained infusion of human parathyroid hormone-related protein-(1–36). J Clin Endocrinol Metab. 2003;88(4):1603–9.PubMed
131.
go back to reference Horwitz MJ, Tedesco MB, Sereika SM, Syed MA, Garcia-Ocana A, Bisello A, Hollis BW, Rosen CJ, Wysolmerski JJ, Dann P, Gundberg C, Stewart AF. Continuous PTH and PTHrP infusion causes suppression of bone formation and discordant effects on 1,25(OH)2 vitamin D. J Bone Miner Res. 2005;20(10):1792–803.PubMed Horwitz MJ, Tedesco MB, Sereika SM, Syed MA, Garcia-Ocana A, Bisello A, Hollis BW, Rosen CJ, Wysolmerski JJ, Dann P, Gundberg C, Stewart AF. Continuous PTH and PTHrP infusion causes suppression of bone formation and discordant effects on 1,25(OH)2 vitamin D. J Bone Miner Res. 2005;20(10):1792–803.PubMed
132.
go back to reference Sato K. Hypercalcemia during pregnancy, puerperium, and lactation: review and a case report of hypercalcemic crisis after delivery due to excessive production of PTH-related protein (PTHrP) without malignancy (humoral hypercalcemia of pregnancy). Endocr J. 2008;55(6):959–66.PubMed Sato K. Hypercalcemia during pregnancy, puerperium, and lactation: review and a case report of hypercalcemic crisis after delivery due to excessive production of PTH-related protein (PTHrP) without malignancy (humoral hypercalcemia of pregnancy). Endocr J. 2008;55(6):959–66.PubMed
133.
go back to reference Marx SJ, Zusman RM, Umiker WO. Benign breast dysplasia causing hypercalcemia. J Clin Endocrinol Metab. 1977;45(5):1049–52.PubMed Marx SJ, Zusman RM, Umiker WO. Benign breast dysplasia causing hypercalcemia. J Clin Endocrinol Metab. 1977;45(5):1049–52.PubMed
134.
go back to reference Cornish J, Callon KE, Nicholson GC, Reid IR. Parathyroid hormone-related protein-(107–139) inhibits bone resorption in vivo. Endocrinology. 1997;138:1299–304.PubMed Cornish J, Callon KE, Nicholson GC, Reid IR. Parathyroid hormone-related protein-(107–139) inhibits bone resorption in vivo. Endocrinology. 1997;138:1299–304.PubMed
135.
go back to reference Fenton AJ, Kemp BE, Hammonds RG Jr, Mitchelhill K, Moseley JM, Martin TJ, Nicholson GC. A potent inhibitor of osteoclastic bone resorption within a highly conserved pentapeptide region of parathyroid hormone-related protein; PTHrP[107–111]. Endocrinology. 1991;129:3424–6.PubMed Fenton AJ, Kemp BE, Hammonds RG Jr, Mitchelhill K, Moseley JM, Martin TJ, Nicholson GC. A potent inhibitor of osteoclastic bone resorption within a highly conserved pentapeptide region of parathyroid hormone-related protein; PTHrP[107–111]. Endocrinology. 1991;129:3424–6.PubMed
136.
go back to reference Fenton AJ, Kemp BE, Kent GN, Moseley JM, Zheng MH, Rowe DJ, Britto JM, Martin TJ, Nicholson GC. A carboxyl-terminal peptide from the parathyroid hormone-related protein inhibits bone resorption by osteoclasts. Endocrinology. 1991;129:1762–8.PubMed Fenton AJ, Kemp BE, Kent GN, Moseley JM, Zheng MH, Rowe DJ, Britto JM, Martin TJ, Nicholson GC. A carboxyl-terminal peptide from the parathyroid hormone-related protein inhibits bone resorption by osteoclasts. Endocrinology. 1991;129:1762–8.PubMed
137.
go back to reference Mitchell JA, Ting TC, Wong S, Mitchell BF, Lye SJ. Parathyroid hormone-related protein treatment of pregnant rats delays the increase in connexin 43 and oxytocin receptor expression in the myometrium. Biol Reprod. 2003;69(2):556–62.PubMed Mitchell JA, Ting TC, Wong S, Mitchell BF, Lye SJ. Parathyroid hormone-related protein treatment of pregnant rats delays the increase in connexin 43 and oxytocin receptor expression in the myometrium. Biol Reprod. 2003;69(2):556–62.PubMed
138.
go back to reference Bucht E, Telenius-Berg M, Lundell G, Sjoberg HE. Immunoextracted calcitonin in milk and plasma from totally thyroidectomized women. Evidence of monomeric calcitonin in plasma during pregnancy and lactation. Acta Endocrinol (Copenh). 1986;113:529–35. Bucht E, Telenius-Berg M, Lundell G, Sjoberg HE. Immunoextracted calcitonin in milk and plasma from totally thyroidectomized women. Evidence of monomeric calcitonin in plasma during pregnancy and lactation. Acta Endocrinol (Copenh). 1986;113:529–35.
139.
go back to reference Balabanova S, Kruse B, Wolf AS. Calcitonin secretion by human placental tissue. Acta Obstet Gynecol Scand. 1987;66(4):323–6.PubMed Balabanova S, Kruse B, Wolf AS. Calcitonin secretion by human placental tissue. Acta Obstet Gynecol Scand. 1987;66(4):323–6.PubMed
140.
go back to reference Ren Y, Chien J, Sun YP, Shah GV. Calcitonin is expressed in gonadotropes of the anterior pituitary gland: its possible role in paracrine regulation of lactotrope function. J Endocrinol. 2001;171(2):217–28.PubMed Ren Y, Chien J, Sun YP, Shah GV. Calcitonin is expressed in gonadotropes of the anterior pituitary gland: its possible role in paracrine regulation of lactotrope function. J Endocrinol. 2001;171(2):217–28.PubMed
141.
go back to reference Hurley DL, Tiegs RD, Wahner HW, Heath H. Axial and appendicular bone mineral density in patients with long-term deficiency or excess of calcitonin. N Engl J Med. 1987;317(9):537–41.PubMed Hurley DL, Tiegs RD, Wahner HW, Heath H. Axial and appendicular bone mineral density in patients with long-term deficiency or excess of calcitonin. N Engl J Med. 1987;317(9):537–41.PubMed
142.
go back to reference Gonzalez DC, Mautalen CA, Correa PH, el Tamer E, el Tamer S. Bone mass in totally thyroidectomized patients. Role of calcitonin deficiency and exogenous thyroid treatment. Acta Endocrinol (Copenh). 1991;124(5):521–5. Gonzalez DC, Mautalen CA, Correa PH, el Tamer E, el Tamer S. Bone mass in totally thyroidectomized patients. Role of calcitonin deficiency and exogenous thyroid treatment. Acta Endocrinol (Copenh). 1991;124(5):521–5.
143.
go back to reference Giannini S, Nobile M, Sartori L, Binotto P, Ciuffreda M, Gemo G, Pelizzo MR, D’Angelo A, Crepaldi G. Bone density and mineral metabolism in thyroidectomized patients treated with long-term L-thyroxine. Clin Sci (Lond). 1994;87(5):593–7. Giannini S, Nobile M, Sartori L, Binotto P, Ciuffreda M, Gemo G, Pelizzo MR, D’Angelo A, Crepaldi G. Bone density and mineral metabolism in thyroidectomized patients treated with long-term L-thyroxine. Clin Sci (Lond). 1994;87(5):593–7.
144.
go back to reference Nguyen TT, Heath H III, Bryant SC, O’Fallon WM, Melton LJ 3rd. Fractures after thyroidectomy in men: a population-based cohort study. J Bone Miner Res. 1997;12(7):1092–9.PubMed Nguyen TT, Heath H III, Bryant SC, O’Fallon WM, Melton LJ 3rd. Fractures after thyroidectomy in men: a population-based cohort study. J Bone Miner Res. 1997;12(7):1092–9.PubMed
145.
go back to reference Mirzaei S, Krotla G, Knoll P, Koriska K, Kohn H. Possible effect of calcitonin deficiency on bone mass after subtotal thyroidectomy. Acta Med Austriaca. 1999;26(1):29–31.PubMed Mirzaei S, Krotla G, Knoll P, Koriska K, Kohn H. Possible effect of calcitonin deficiency on bone mass after subtotal thyroidectomy. Acta Med Austriaca. 1999;26(1):29–31.PubMed
146.
go back to reference Cross NA, Hillman LS, Allen SH, Krause GF. Changes in bone mineral density and markers of bone remodeling during lactation and postweaning in women consuming high amounts of calcium. J Bone Miner Res. 1995;10:1312–20.PubMed Cross NA, Hillman LS, Allen SH, Krause GF. Changes in bone mineral density and markers of bone remodeling during lactation and postweaning in women consuming high amounts of calcium. J Bone Miner Res. 1995;10:1312–20.PubMed
147.
go back to reference Kalkwarf HJ, Specker BL, Bianchi DC, Ranz J, Ho M. The effect of calcium supplementation on bone density during lactation and after weaning. N Engl J Med. 1997;337(8):523–8.PubMed Kalkwarf HJ, Specker BL, Bianchi DC, Ranz J, Ho M. The effect of calcium supplementation on bone density during lactation and after weaning. N Engl J Med. 1997;337(8):523–8.PubMed
148.
go back to reference Polatti F, Capuzzo E, Viazzo F, Colleoni R, Klersy C. Bone mineral changes during and after lactation. Obstet Gynecol. 1999;94(1):52–6.PubMed Polatti F, Capuzzo E, Viazzo F, Colleoni R, Klersy C. Bone mineral changes during and after lactation. Obstet Gynecol. 1999;94(1):52–6.PubMed
149.
go back to reference Kolthoff N, Eiken P, Kristensen B, Nielsen SP. Bone mineral changes during pregnancy and lactation: a longitudinal cohort study. Clin Sci (Colch). 1998;94(4):405–12. Kolthoff N, Eiken P, Kristensen B, Nielsen SP. Bone mineral changes during pregnancy and lactation: a longitudinal cohort study. Clin Sci (Colch). 1998;94(4):405–12.
150.
go back to reference Wagner CL, Hulsey TC, Fanning D, Ebeling M, Hollis BW. High-dose vitamin D3 supplementation in a cohort of breastfeeding mothers and their infants: a 6-month follow-up pilot study. Breastfeed Med. 2006;1(2):59–70.PubMed Wagner CL, Hulsey TC, Fanning D, Ebeling M, Hollis BW. High-dose vitamin D3 supplementation in a cohort of breastfeeding mothers and their infants: a 6-month follow-up pilot study. Breastfeed Med. 2006;1(2):59–70.PubMed
151.
go back to reference Hollis BW, Wagner CL. Vitamin D requirements during lactation: high-dose maternal supplementation as therapy to prevent hypovitaminosis D for both the mother and the nursing infant. Am J Clin Nutr. 2004;80(6 Suppl):1752S–8S.PubMed Hollis BW, Wagner CL. Vitamin D requirements during lactation: high-dose maternal supplementation as therapy to prevent hypovitaminosis D for both the mother and the nursing infant. Am J Clin Nutr. 2004;80(6 Suppl):1752S–8S.PubMed
152.
go back to reference Basile LA, Taylor SN, Wagner CL, Horst RL, Hollis BW. The effect of high-dose vitamin D supplementation on serum vitamin D levels and milk calcium concentration in lactating women and their infants. Breastfeed Med. 2006;1(1):27–35.PubMed Basile LA, Taylor SN, Wagner CL, Horst RL, Hollis BW. The effect of high-dose vitamin D supplementation on serum vitamin D levels and milk calcium concentration in lactating women and their infants. Breastfeed Med. 2006;1(1):27–35.PubMed
153.
go back to reference Laskey MA, Prentice A. Effect of pregnancy on recovery of lactational bone loss [letter]. Lancet. 1997;349:1518–9.PubMed Laskey MA, Prentice A. Effect of pregnancy on recovery of lactational bone loss [letter]. Lancet. 1997;349:1518–9.PubMed
154.
go back to reference Prentice A. Calcium in pregnancy and lactation. Annu Rev Nutr. 2000;20:249–72.PubMed Prentice A. Calcium in pregnancy and lactation. Annu Rev Nutr. 2000;20:249–72.PubMed
155.
go back to reference Prentice A, Jarjou LM, Cole TJ, Stirling DM, Dibba B, Fairweather-Tait S. Calcium requirements of lactating Gambian mothers: effects of a calcium supplement on breast-milk calcium concentration, maternal bone mineral content, and urinary calcium excretion. Am J Clin Nutr. 1995;62:58–67.PubMed Prentice A, Jarjou LM, Cole TJ, Stirling DM, Dibba B, Fairweather-Tait S. Calcium requirements of lactating Gambian mothers: effects of a calcium supplement on breast-milk calcium concentration, maternal bone mineral content, and urinary calcium excretion. Am J Clin Nutr. 1995;62:58–67.PubMed
156.
go back to reference Prentice A, Jarjou LM, Stirling DM, Buffenstein R, Fairweather-Tait S. Biochemical markers of calcium and bone metabolism during 18 months of lactation in Gambian women accustomed to a low calcium intake and in those consuming a calcium supplement. J Clin Endocrinol Metab. 1998;83(4):1059–66.PubMed Prentice A, Jarjou LM, Stirling DM, Buffenstein R, Fairweather-Tait S. Biochemical markers of calcium and bone metabolism during 18 months of lactation in Gambian women accustomed to a low calcium intake and in those consuming a calcium supplement. J Clin Endocrinol Metab. 1998;83(4):1059–66.PubMed
157.
go back to reference Prentice A, Yan L, Jarjou LM, Dibba B, Laskey MA, Stirling DM, Fairweather-Tait S. Vitamin D status does not influence the breast-milk calcium concentration of lactating mothers accustomed to a low calcium intake. Acta Paediatr. 1997;86(9):1006–8.PubMed Prentice A, Yan L, Jarjou LM, Dibba B, Laskey MA, Stirling DM, Fairweather-Tait S. Vitamin D status does not influence the breast-milk calcium concentration of lactating mothers accustomed to a low calcium intake. Acta Paediatr. 1997;86(9):1006–8.PubMed
158.
go back to reference Laskey MA, Prentice A, Hanratty LA, Jarjou LM, Dibba B, Beavan SR, Cole TJ. Bone changes after 3 mo of lactation: influence of calcium intake, breast-milk output, and vitamin D-receptor genotype. Am J Clin Nutr. 1998;67(4):685–92.PubMed Laskey MA, Prentice A, Hanratty LA, Jarjou LM, Dibba B, Beavan SR, Cole TJ. Bone changes after 3 mo of lactation: influence of calcium intake, breast-milk output, and vitamin D-receptor genotype. Am J Clin Nutr. 1998;67(4):685–92.PubMed
159.
go back to reference Giske LE, Hall G, Rud T, Landgren BM. The effect of 17beta-estradiol at doses of 0.5, 1 and 2 mg compared with placebo on early postmenopausal bone loss in hysterectomized women. Osteoporos Int. 2002;13(4):309–16.PubMed Giske LE, Hall G, Rud T, Landgren BM. The effect of 17beta-estradiol at doses of 0.5, 1 and 2 mg compared with placebo on early postmenopausal bone loss in hysterectomized women. Osteoporos Int. 2002;13(4):309–16.PubMed
160.
go back to reference Reid IR. Menopause. In: Favus MJ, editor. Primer on the metabolic bone diseases and disorders of mineral metabolism. 5th ed. Washington, DC: ASBMR Press; 2003. p. 86–9. Reid IR. Menopause. In: Favus MJ, editor. Primer on the metabolic bone diseases and disorders of mineral metabolism. 5th ed. Washington, DC: ASBMR Press; 2003. p. 86–9.
161.
go back to reference Gallagher JC. Effect of estrogen on bone. In: Favus MJ, editor. Primer on the Metabolic Bone Diseases and Disorders of Mineral Metabolism. 5th ed. Washington, DC: ASBMR Press; 2003. p. 327–30. Gallagher JC. Effect of estrogen on bone. In: Favus MJ, editor. Primer on the Metabolic Bone Diseases and Disorders of Mineral Metabolism. 5th ed. Washington, DC: ASBMR Press; 2003. p. 327–30.
162.
go back to reference Ardeshirpour L, Dann P, Adams DJ, Nelson T, VanHouten J, Horowitz MC, Wysolmerski JJ. Weaning triggers a decrease in receptor activator of nuclear factor-kappaB ligand expression, widespread osteoclast apoptosis, and rapid recovery of bone mass after lactation in mice. Endocrinology. 2007;148(8):3875–86.PubMed Ardeshirpour L, Dann P, Adams DJ, Nelson T, VanHouten J, Horowitz MC, Wysolmerski JJ. Weaning triggers a decrease in receptor activator of nuclear factor-kappaB ligand expression, widespread osteoclast apoptosis, and rapid recovery of bone mass after lactation in mice. Endocrinology. 2007;148(8):3875–86.PubMed
163.
go back to reference Miller SC, Bowman BM. Rapid inactivation and apoptosis of osteoclasts in the maternal skeleton during the bone remodeling reversal at the end of lactation. Anat Rec (Hoboken). 2007;290(1):65–73. Miller SC, Bowman BM. Rapid inactivation and apoptosis of osteoclasts in the maternal skeleton during the bone remodeling reversal at the end of lactation. Anat Rec (Hoboken). 2007;290(1):65–73.
164.
go back to reference Collins JN, Kirby BJ, Woodrow JP, Gagel RF, Rosen CJ, Sims NA, Kovacs CS. Lactating Ctcgrp nulls lose twice the normal bone mineral content due to fewer osteoblasts and more osteoclasts, whereas bone mass is fully restored after weaning in association with up-regulation of Wnt signaling and other novel genes. Endocrinology. 2013;154(4):1400–13.PubMedCentralPubMed Collins JN, Kirby BJ, Woodrow JP, Gagel RF, Rosen CJ, Sims NA, Kovacs CS. Lactating Ctcgrp nulls lose twice the normal bone mineral content due to fewer osteoblasts and more osteoclasts, whereas bone mass is fully restored after weaning in association with up-regulation of Wnt signaling and other novel genes. Endocrinology. 2013;154(4):1400–13.PubMedCentralPubMed
165.
go back to reference Teti A, Zallone A. Do osteocytes contribute to bone mineral homeostasis? Osteocytic osteolysis revisited. Bone. 2009;44(1):11–6.PubMed Teti A, Zallone A. Do osteocytes contribute to bone mineral homeostasis? Osteocytic osteolysis revisited. Bone. 2009;44(1):11–6.PubMed
166.
go back to reference Qing H, Ardeshirpour L, Pajevic PD, Dusevich V, Jahn K, Kato S, Wysolmerski J, Bonewald LF. Demonstration of osteocytic perilacunar/canalicular remodeling in mice during lactation. J Bone Miner Res. 2012;27(5):1018–29.PubMedCentralPubMed Qing H, Ardeshirpour L, Pajevic PD, Dusevich V, Jahn K, Kato S, Wysolmerski J, Bonewald LF. Demonstration of osteocytic perilacunar/canalicular remodeling in mice during lactation. J Bone Miner Res. 2012;27(5):1018–29.PubMedCentralPubMed
167.
go back to reference Liu XS, Ardeshirpour L, VanHouten JN, Shane E, Wysolmerski JJ. Site-specific changes in bone microarchitecture, mineralization, and stiffness during lactation and after weaning in mice. J Bone Miner Res. 2012;27(4):865–75.PubMed Liu XS, Ardeshirpour L, VanHouten JN, Shane E, Wysolmerski JJ. Site-specific changes in bone microarchitecture, mineralization, and stiffness during lactation and after weaning in mice. J Bone Miner Res. 2012;27(4):865–75.PubMed
169.
go back to reference Wiklund PK, Xu L, Wang Q, Mikkola T, Lyytikainen A, Volgyi E, Munukka E, Cheng SM, Alen M, Keinanen-Kiukaanniemi S, Cheng S. Lactation is associated with greater maternal bone size and bone strength later in life. Osteoporos Int. 2012;23(7):1939–45.PubMed Wiklund PK, Xu L, Wang Q, Mikkola T, Lyytikainen A, Volgyi E, Munukka E, Cheng SM, Alen M, Keinanen-Kiukaanniemi S, Cheng S. Lactation is associated with greater maternal bone size and bone strength later in life. Osteoporos Int. 2012;23(7):1939–45.PubMed
170.
go back to reference Bowman BM, Miller SC. Skeletal adaptations during mammalian reproduction. J Musculoskelet Neuronal Interact. 2001;1(4):347–55.PubMed Bowman BM, Miller SC. Skeletal adaptations during mammalian reproduction. J Musculoskelet Neuronal Interact. 2001;1(4):347–55.PubMed
171.
go back to reference Vajda EG, Bowman BM, Miller SC. Cancellous and cortical bone mechanical properties and tissue dynamics during pregnancy, lactation, and postlactation in the rat. Biol Reprod. 2001;65(3):689–95.PubMed Vajda EG, Bowman BM, Miller SC. Cancellous and cortical bone mechanical properties and tissue dynamics during pregnancy, lactation, and postlactation in the rat. Biol Reprod. 2001;65(3):689–95.PubMed
172.
go back to reference Sowers M, Randolph J, Shapiro B, Jannausch M. A prospective study of bone density and pregnancy after an extended period of lactation with bone loss. Obstet Gynecol. 1995;85:285–9.PubMed Sowers M, Randolph J, Shapiro B, Jannausch M. A prospective study of bone density and pregnancy after an extended period of lactation with bone loss. Obstet Gynecol. 1995;85:285–9.PubMed
173.
go back to reference Henderson PH III, Sowers M, Kutzko KE, Jannausch ML. Bone mineral density in grand multiparous women with extended lactation. Am J Obstet Gynecol. 2000;182(6):1371–7.PubMed Henderson PH III, Sowers M, Kutzko KE, Jannausch ML. Bone mineral density in grand multiparous women with extended lactation. Am J Obstet Gynecol. 2000;182(6):1371–7.PubMed
174.
go back to reference Sowers M, Corton G, Shapiro B, Jannausch ML, Crutchfield M, Smith ML, Randolph JF, Hollis B. Changes in bone density with lactation. J Am Med Assoc. 1993;269:3130–5. Sowers M, Corton G, Shapiro B, Jannausch ML, Crutchfield M, Smith ML, Randolph JF, Hollis B. Changes in bone density with lactation. J Am Med Assoc. 1993;269:3130–5.
175.
go back to reference Dobnig H, Kainer F, Stepan V, Winter R, Lipp R, Schaffer M, Kahr A, Nocnik S, Patterer G, Leb G. Elevated parathyroid hormone-related peptide levels after human gestation: relationship to changes in bone and mineral metabolism. J Clin Endocrinol Metab. 1995;80:3699–707.PubMed Dobnig H, Kainer F, Stepan V, Winter R, Lipp R, Schaffer M, Kahr A, Nocnik S, Patterer G, Leb G. Elevated parathyroid hormone-related peptide levels after human gestation: relationship to changes in bone and mineral metabolism. J Clin Endocrinol Metab. 1995;80:3699–707.PubMed
176.
go back to reference Yamamoto M, Duong LT, Fisher JE, Thiede MA, Caulfield MP, Rosenblatt M. Suckling-mediated increases in urinary phosphate and 3′,5′-cyclic adenosine monophosphate excretion in lactating rats: possible systemic effects of parathyroid hormone-related protein. Endocrinology. 1991;129:2614–22.PubMed Yamamoto M, Duong LT, Fisher JE, Thiede MA, Caulfield MP, Rosenblatt M. Suckling-mediated increases in urinary phosphate and 3′,5′-cyclic adenosine monophosphate excretion in lactating rats: possible systemic effects of parathyroid hormone-related protein. Endocrinology. 1991;129:2614–22.PubMed
177.
go back to reference van Heerden JA, Gharib H, Jackson IT. Pseudohyperparathyroidism secondary to gigantic mammary hypertrophy. Arch Surg. 1988;123:80–2.PubMed van Heerden JA, Gharib H, Jackson IT. Pseudohyperparathyroidism secondary to gigantic mammary hypertrophy. Arch Surg. 1988;123:80–2.PubMed
178.
go back to reference Ratcliffe WA, Thompson GE, Care AD, Peaker M. Production of parathyroid hormone-related protein by the mammary gland of the goat. J Endocrinol. 1992;133:87–93.PubMed Ratcliffe WA, Thompson GE, Care AD, Peaker M. Production of parathyroid hormone-related protein by the mammary gland of the goat. J Endocrinol. 1992;133:87–93.PubMed
179.
go back to reference VanHouten JN, Dann P, Stewart AF, Watson CJ, Pollak M, Karaplis AC, Wysolmerski JJ. Mammary-specific deletion of parathyroid hormone-related protein preserves bone mass during lactation. J Clin Invest. 2003;112(9):1429–36.PubMedCentralPubMed VanHouten JN, Dann P, Stewart AF, Watson CJ, Pollak M, Karaplis AC, Wysolmerski JJ. Mammary-specific deletion of parathyroid hormone-related protein preserves bone mass during lactation. J Clin Invest. 2003;112(9):1429–36.PubMedCentralPubMed
180.
go back to reference Ardeshirpour L, Dann P, Pollak M, Wysolmerski J, VanHouten J. The calcium-sensing receptor regulates PTHrP production and calcium transport in the lactating mammary gland. Bone. 2006;38(6):787–93.PubMed Ardeshirpour L, Dann P, Pollak M, Wysolmerski J, VanHouten J. The calcium-sensing receptor regulates PTHrP production and calcium transport in the lactating mammary gland. Bone. 2006;38(6):787–93.PubMed
181.
go back to reference VanHouten J, Dann P, McGeoch G, Brown EM, Krapcho K, Neville M, Wysolmerski JJ. The calcium-sensing receptor regulates mammary gland parathyroid hormone-related protein production and calcium transport. J Clin Invest. 2004;113(4):598–608.PubMedCentralPubMed VanHouten J, Dann P, McGeoch G, Brown EM, Krapcho K, Neville M, Wysolmerski JJ. The calcium-sensing receptor regulates mammary gland parathyroid hormone-related protein production and calcium transport. J Clin Invest. 2004;113(4):598–608.PubMedCentralPubMed
182.
go back to reference Yamamoto M, Fisher JE, Thiede MA, Caulfield MP, Rosenblatt M, Duong LT. Concentrations of parathyroid hormone-related protein in rat milk change with duration of lactation and interval from previous suckling, but not with milk calcium. Endocrinology. 1992;130:741–7.PubMed Yamamoto M, Fisher JE, Thiede MA, Caulfield MP, Rosenblatt M, Duong LT. Concentrations of parathyroid hormone-related protein in rat milk change with duration of lactation and interval from previous suckling, but not with milk calcium. Endocrinology. 1992;130:741–7.PubMed
183.
go back to reference Mamillapalli R, VanHouten J, Dann P, Bikle D, Chang W, Brown E, Wysolmerski J. Mammary-specific ablation of the calcium-sensing receptor during lactation alters maternal calcium metabolism, milk calcium transport, and neonatal calcium accrual. Endocrinology. 2013;154(9):3031–42.PubMed Mamillapalli R, VanHouten J, Dann P, Bikle D, Chang W, Brown E, Wysolmerski J. Mammary-specific ablation of the calcium-sensing receptor during lactation alters maternal calcium metabolism, milk calcium transport, and neonatal calcium accrual. Endocrinology. 2013;154(9):3031–42.PubMed
184.
go back to reference Thompson GE, Ratcliffe WA, Hughes S, Abbas SK, Care AD. Local control of parathyroid hormone-related protein secretion by the mammary gland of the goat. Comp Biochem Physiol A. 1994;108:485–90. Thompson GE, Ratcliffe WA, Hughes S, Abbas SK, Care AD. Local control of parathyroid hormone-related protein secretion by the mammary gland of the goat. Comp Biochem Physiol A. 1994;108:485–90.
185.
go back to reference Kovacs CS, Chik CL. Hyperprolactinemia caused by lactation and pituitary adenomas is associated with altered serum calcium, phosphate, parathyroid hormone (PTH), and PTH-related peptide levels. J Clin Endocrinol Metab. 1995;80:3036–42.PubMed Kovacs CS, Chik CL. Hyperprolactinemia caused by lactation and pituitary adenomas is associated with altered serum calcium, phosphate, parathyroid hormone (PTH), and PTH-related peptide levels. J Clin Endocrinol Metab. 1995;80:3036–42.PubMed
186.
go back to reference Stiegler C, Leb G, Kleinert R, Warnkross H, Ramschak-Schwarzer S, Lipp R, Clarici G, Krejs GJ, Dobnig H. Plasma levels of parathyroid hormone-related peptide are elevated in hyperprolactinemia and correlated to bone density status. J Bone Miner Res. 1995;10:751–9.PubMed Stiegler C, Leb G, Kleinert R, Warnkross H, Ramschak-Schwarzer S, Lipp R, Clarici G, Krejs GJ, Dobnig H. Plasma levels of parathyroid hormone-related peptide are elevated in hyperprolactinemia and correlated to bone density status. J Bone Miner Res. 1995;10:751–9.PubMed
187.
go back to reference Thiede MA. Parathyroid hormone-related protein: a regulated calcium-mobilizing product of the mammary gland. J Dairy Sci. 1994;77:1952–63.PubMed Thiede MA. Parathyroid hormone-related protein: a regulated calcium-mobilizing product of the mammary gland. J Dairy Sci. 1994;77:1952–63.PubMed
188.
go back to reference Dvir R, Golander A, Jaccard N, Yedwab G, Otremski I, Spirer Z, Weisman Y. Amniotic fluid and plasma levels of parathyroid hormone-related protein and hormonal modulation of its secretion by amniotic fluid cells. Eur J Endocrinol. 1995;133:277–82.PubMed Dvir R, Golander A, Jaccard N, Yedwab G, Otremski I, Spirer Z, Weisman Y. Amniotic fluid and plasma levels of parathyroid hormone-related protein and hormonal modulation of its secretion by amniotic fluid cells. Eur J Endocrinol. 1995;133:277–82.PubMed
189.
go back to reference Thiede MA. The mRNA encoding a parathyroid hormone-like peptide is produced in mammary tissue in response to elevations in serum prolactin. Mol Endocrinol. 1989;3:1443–7.PubMed Thiede MA. The mRNA encoding a parathyroid hormone-like peptide is produced in mammary tissue in response to elevations in serum prolactin. Mol Endocrinol. 1989;3:1443–7.PubMed
190.
go back to reference Seki K, Kato T, Sekiya S, Makimura N, Kudoh K, Furuya K, Nagata I. Parathyroid-hormone-related protein in human milk and its relation to milk calcium. Gynecol Obstet Invest. 1997;44(2):102–6.PubMed Seki K, Kato T, Sekiya S, Makimura N, Kudoh K, Furuya K, Nagata I. Parathyroid-hormone-related protein in human milk and its relation to milk calcium. Gynecol Obstet Invest. 1997;44(2):102–6.PubMed
191.
go back to reference Uemura H, Yasui T, Yoneda N, Irahara M, Aono T. Measurement of N- and C-terminal-region fragments of parathyroid hormone-related peptide in milk from lactating women and investigation of the relationship of their concentrations to calcium in milk. J Endocrinol. 1997;153:445–51.PubMed Uemura H, Yasui T, Yoneda N, Irahara M, Aono T. Measurement of N- and C-terminal-region fragments of parathyroid hormone-related peptide in milk from lactating women and investigation of the relationship of their concentrations to calcium in milk. J Endocrinol. 1997;153:445–51.PubMed
192.
go back to reference Kocabagli N, Riond JL, Spichiger UE, Wanner M. Parathyroid hormone-related protein and calcium homeostasis during the periparturient period of dairy cows. Am J Vet Res. 1995;56:380–5.PubMed Kocabagli N, Riond JL, Spichiger UE, Wanner M. Parathyroid hormone-related protein and calcium homeostasis during the periparturient period of dairy cows. Am J Vet Res. 1995;56:380–5.PubMed
193.
go back to reference Lean IJ, DeGaris PJ, McNeil DM, Block E. Hypocalcemia in dairy cows: meta-analysis and dietary cation anion difference theory revisited. J Dairy Sci. 2006;89(2):669–84.PubMed Lean IJ, DeGaris PJ, McNeil DM, Block E. Hypocalcemia in dairy cows: meta-analysis and dietary cation anion difference theory revisited. J Dairy Sci. 2006;89(2):669–84.PubMed
194.
go back to reference Horst RL, Goff JP, Reinhardt TA. Adapting to the transition between gestation and lactation: differences between rat, human and dairy cow. J Mammary Gland Biol Neoplasia. 2005;10(2):141–56.PubMed Horst RL, Goff JP, Reinhardt TA. Adapting to the transition between gestation and lactation: differences between rat, human and dairy cow. J Mammary Gland Biol Neoplasia. 2005;10(2):141–56.PubMed
195.
go back to reference Sowers MF, Hollis BW, Shapiro B, Randolph J, Janney CA, Zhang D, Schork A, Crutchfield M, Stanczyk F, Russell-Aulet M. Elevated parathyroid hormone-related peptide associated with lactation and bone density loss. J Am Med Assoc. 1996;276:549–54. Sowers MF, Hollis BW, Shapiro B, Randolph J, Janney CA, Zhang D, Schork A, Crutchfield M, Stanczyk F, Russell-Aulet M. Elevated parathyroid hormone-related peptide associated with lactation and bone density loss. J Am Med Assoc. 1996;276:549–54.
196.
go back to reference VanHouten JN, Wysolmerski JJ. Low estrogen and high parathyroid hormone-related peptide levels contribute to accelerated bone resorption and bone loss in lactating mice. Endocrinology. 2003;144(12):5521–9.PubMed VanHouten JN, Wysolmerski JJ. Low estrogen and high parathyroid hormone-related peptide levels contribute to accelerated bone resorption and bone loss in lactating mice. Endocrinology. 2003;144(12):5521–9.PubMed
197.
go back to reference Duque G, Huang DC, Dion N, Macoritto M, Rivas D, Li W, Yang XF, Li J, Lian J, Marino FT, Barralet J, Lascau V, Deschenes C, Ste-Marie LG, Kremer R. Interferon-gamma plays a role in bone formation in vivo and rescues osteoporosis in ovariectomized mice. J Bone Miner Res. 2011;26(7):1472–83.PubMed Duque G, Huang DC, Dion N, Macoritto M, Rivas D, Li W, Yang XF, Li J, Lian J, Marino FT, Barralet J, Lascau V, Deschenes C, Ste-Marie LG, Kremer R. Interferon-gamma plays a role in bone formation in vivo and rescues osteoporosis in ovariectomized mice. J Bone Miner Res. 2011;26(7):1472–83.PubMed
198.
go back to reference Alles N, Soysa NS, Hayashi J, Khan M, Shimoda A, Shimokawa H, Ritzeler O, Akiyoshi K, Aoki K, Ohya K. Suppression of NF-kappaB increases bone formation and ameliorates osteopenia in ovariectomized mice. Endocrinology. 2010;151(10):4626–34.PubMed Alles N, Soysa NS, Hayashi J, Khan M, Shimoda A, Shimokawa H, Ritzeler O, Akiyoshi K, Aoki K, Ohya K. Suppression of NF-kappaB increases bone formation and ameliorates osteopenia in ovariectomized mice. Endocrinology. 2010;151(10):4626–34.PubMed
199.
go back to reference Salle BL, Berthezene F, Glorieux FH, Delvin EE, Berland M, David L, Varenne JP, Putet G. Hypoparathyroidism during pregnancy: treatment with calcitriol. J Clin Endocrinol Metab. 1981;52:810–3.PubMed Salle BL, Berthezene F, Glorieux FH, Delvin EE, Berland M, David L, Varenne JP, Putet G. Hypoparathyroidism during pregnancy: treatment with calcitriol. J Clin Endocrinol Metab. 1981;52:810–3.PubMed
200.
go back to reference Sadeghi-Nejad A, Wolfsdorf JI, Senior B. Hypoparathyroidism and pregnancy. Treatment with calcitriol. J Am Med Assoc. 1980;243:254–5. Sadeghi-Nejad A, Wolfsdorf JI, Senior B. Hypoparathyroidism and pregnancy. Treatment with calcitriol. J Am Med Assoc. 1980;243:254–5.
201.
go back to reference Cathebras P, Cartry O, Sassolas G. Rousset H [Hypercalcemia induced by lactation in 2 patients with treated hypoparathyroidism]. Rev Med Interne. 1996;17:675–6.PubMed Cathebras P, Cartry O, Sassolas G. Rousset H [Hypercalcemia induced by lactation in 2 patients with treated hypoparathyroidism]. Rev Med Interne. 1996;17:675–6.PubMed
202.
go back to reference Shomali ME, Ross DS. Hypercalcemia in a woman with hypoparathyroidism associated with increased parathyroid hormone-related protein during lactation. Endocr Pract. 1999;5(4):198–200.PubMed Shomali ME, Ross DS. Hypercalcemia in a woman with hypoparathyroidism associated with increased parathyroid hormone-related protein during lactation. Endocr Pract. 1999;5(4):198–200.PubMed
203.
go back to reference Caplan RH, Beguin EA. Hypercalcemia in a calcitriol-treated hypoparathyroid woman during lactation. Obstet Gynecol. 1990;76:485–9.PubMed Caplan RH, Beguin EA. Hypercalcemia in a calcitriol-treated hypoparathyroid woman during lactation. Obstet Gynecol. 1990;76:485–9.PubMed
204.
go back to reference Mather KJ, Chik CL, Corenblum B. Maintenance of serum calcium by parathyroid hormone-related peptide during lactation in a hypoparathyroid patient. J Clin Endocrinol Metab. 1999;84(2):424–7.PubMed Mather KJ, Chik CL, Corenblum B. Maintenance of serum calcium by parathyroid hormone-related peptide during lactation in a hypoparathyroid patient. J Clin Endocrinol Metab. 1999;84(2):424–7.PubMed
205.
go back to reference Anai T, Tomiyasu T, Takai N, Miyakawa I. Remission of idiopathic hypoparathyroidism during lactation: a case report. J Obstet Gynaecol Res. 1999;25(4):271–3.PubMed Anai T, Tomiyasu T, Takai N, Miyakawa I. Remission of idiopathic hypoparathyroidism during lactation: a case report. J Obstet Gynaecol Res. 1999;25(4):271–3.PubMed
206.
go back to reference Segal E, Hochberg I, Weisman Y, Ish-Shalom S. Severe postpartum osteoporosis with increased PTHrP during lactation in a patient after total thyroidectomy and parathyroidectomy. Osteoporos Int. 2011;22:2907–11. Segal E, Hochberg I, Weisman Y, Ish-Shalom S. Severe postpartum osteoporosis with increased PTHrP during lactation in a patient after total thyroidectomy and parathyroidectomy. Osteoporos Int. 2011;22:2907–11.
207.
go back to reference Giles MM, Fenton MH, Shaw B, Elton RA, Clarke M, Lang M, Hume R. Sequential calcium and phosphorus balance studies in preterm infants. J Pediatr. 1987;110:591–8.PubMed Giles MM, Fenton MH, Shaw B, Elton RA, Clarke M, Lang M, Hume R. Sequential calcium and phosphorus balance studies in preterm infants. J Pediatr. 1987;110:591–8.PubMed
208.
go back to reference Barltrop D, Oppe TE. Calcium and fat absorption by low birthweight infants from a calcium-supplemented milk formula. Arch Dis Child. 1973;48:580–2.PubMedCentralPubMed Barltrop D, Oppe TE. Calcium and fat absorption by low birthweight infants from a calcium-supplemented milk formula. Arch Dis Child. 1973;48:580–2.PubMedCentralPubMed
209.
go back to reference Kobayashi A, Kawai S, Obe Y, Nagashima Y. Effects of dietary lactose and lactase preparation on the intestinal absorption of calcium and magnesium in normal infants. Am J Clin Nutr. 1975;28:681–3.PubMed Kobayashi A, Kawai S, Obe Y, Nagashima Y. Effects of dietary lactose and lactase preparation on the intestinal absorption of calcium and magnesium in normal infants. Am J Clin Nutr. 1975;28:681–3.PubMed
210.
go back to reference Kocian J, Skala I, Bakos K. Calcium absorption from milk and lactose-free milk in healthy subjects and patients with lactose intolerance. Digestion. 1973;9:317–24.PubMed Kocian J, Skala I, Bakos K. Calcium absorption from milk and lactose-free milk in healthy subjects and patients with lactose intolerance. Digestion. 1973;9:317–24.PubMed
211.
go back to reference Shaw JC. Evidence for defective skeletal mineralization in low-birthweight infants: the absorption of calcium and fat. Pediatrics. 1976;57:16–25.PubMed Shaw JC. Evidence for defective skeletal mineralization in low-birthweight infants: the absorption of calcium and fat. Pediatrics. 1976;57:16–25.PubMed
212.
go back to reference Senterre J, Salle B. Calcium and phosphorus economy of the preterm infant and its interaction with vitamin D and its metabolites. Acta Paediatr Scand Suppl. 1982;296:85–92.PubMed Senterre J, Salle B. Calcium and phosphorus economy of the preterm infant and its interaction with vitamin D and its metabolites. Acta Paediatr Scand Suppl. 1982;296:85–92.PubMed
213.
go back to reference Buchowski MS, Miller DD. Lactose, calcium source and age affect calcium bioavailability in rats. J Nutr. 1991;121:1746–54.PubMed Buchowski MS, Miller DD. Lactose, calcium source and age affect calcium bioavailability in rats. J Nutr. 1991;121:1746–54.PubMed
214.
go back to reference Cross NA, Hillman LS, Forte LR. The effects of calcium supplementation, duration of lactation, and time of day on concentrations of parathyroid hormone-related protein in human milk: a pilot study. J Hum Lact. 1998;14(2):111–7.PubMed Cross NA, Hillman LS, Forte LR. The effects of calcium supplementation, duration of lactation, and time of day on concentrations of parathyroid hormone-related protein in human milk: a pilot study. J Hum Lact. 1998;14(2):111–7.PubMed
215.
go back to reference Tov AB, Mandel D, Weissman Y, Dollberg S, Taxir T, Lubetzky R. Changes in serum parathyroid hormone-related protein in breastfed preterm infants. Breastfeed Med. 2012;7(1):50–3.PubMed Tov AB, Mandel D, Weissman Y, Dollberg S, Taxir T, Lubetzky R. Changes in serum parathyroid hormone-related protein in breastfed preterm infants. Breastfeed Med. 2012;7(1):50–3.PubMed
216.
go back to reference Rong H, Hydbring E, Olsson K, Burtis WJ, Rankin W, Grill V, Bucht E. Parathyroid hormone-related protein in neonatal and reproductive goats determined by a sensitive time-resolved immunofluorometric assay. Eur J Endocrinol. 1997;136:546–51.PubMed Rong H, Hydbring E, Olsson K, Burtis WJ, Rankin W, Grill V, Bucht E. Parathyroid hormone-related protein in neonatal and reproductive goats determined by a sensitive time-resolved immunofluorometric assay. Eur J Endocrinol. 1997;136:546–51.PubMed
217.
go back to reference Kukreja SC, D’Anza JJ, Melton ME, Wimbiscus SA, Grill V, Martin TJ. Lack of effects of neutralization of parathyroid hormone-related protein on calcium homeostasis in neonatal mice. J Bone Miner Res. 1991;6:1197–201.PubMed Kukreja SC, D’Anza JJ, Melton ME, Wimbiscus SA, Grill V, Martin TJ. Lack of effects of neutralization of parathyroid hormone-related protein on calcium homeostasis in neonatal mice. J Bone Miner Res. 1991;6:1197–201.PubMed
218.
go back to reference Davey RA, Turner AG, McManus JF, Chiu WS, Tjahyono F, Moore AJ, Atkins GJ, Anderson PH, Ma C, Glatt V, MacLean HE, Vincent C, Bouxsein M, Morris HA, Findlay DM, Zajac JD. Calcitonin receptor plays a physiological role to protect against hypercalcemia in mice. J Bone Miner Res. 2008;23(8):1182–93.PubMedCentralPubMed Davey RA, Turner AG, McManus JF, Chiu WS, Tjahyono F, Moore AJ, Atkins GJ, Anderson PH, Ma C, Glatt V, MacLean HE, Vincent C, Bouxsein M, Morris HA, Findlay DM, Zajac JD. Calcitonin receptor plays a physiological role to protect against hypercalcemia in mice. J Bone Miner Res. 2008;23(8):1182–93.PubMedCentralPubMed
219.
go back to reference Kovacs CS. Calcium and bone metabolism during pregnancy and lactation. J Mammary Gland Biol Neoplasia. 2005;10(2):105–18.PubMed Kovacs CS. Calcium and bone metabolism during pregnancy and lactation. J Mammary Gland Biol Neoplasia. 2005;10(2):105–18.PubMed
Metadata
Title
The Role of PTHrP in Regulating Mineral Metabolism During Pregnancy, Lactation, and Fetal/Neonatal Development
Author
Christopher S. Kovacs
Publication date
01-09-2014
Publisher
Springer US
Published in
Clinical & Translational Metabolism / Issue 3/2014
Print ISSN: 1534-8644
Electronic ISSN: 2948-2445
DOI
https://doi.org/10.1007/s12018-014-9157-6

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