Skip to main content
Top
Published in: Journal of Bone and Mineral Metabolism 1/2009

01-01-2009 | Original Article

Association between bone mineral density, lean mass, and fat mass among healthy middle-aged premenopausal women: a cross-sectional study in southern Sri Lanka

Authors: Sarath Lekamwasam, Thilak Weerarathna, Mahinda Rodrigo, Wasantha Kodikara Arachchi, Duminda Munidasa

Published in: Journal of Bone and Mineral Metabolism | Issue 1/2009

Login to get access

Abstract

Associations between lean mass, fat mass, and bone mass have been reported earlier; however, most of those studies have been done in Caucasian populations, and data from Asian countries, especially those in South Asia, are limited. We examined the associations between lean mass, fat mass, bone mineral density (BMD), and bone mineral content (BMC), determined by dual-energy X-ray absorptiometry technology, in a group of healthy, middle-aged, premenopausal female volunteers. The mean (SD) age of the women (= 106) was 42.1 (6.1) years and the mean (SD) body mass index was 24.3 (3.6) kg/m2. Total body BMD, total body BMC, and BMD in total spine, total hip, and femoral neck showed statistically significant partial correlations (adjusted for age) with total fat mass (r = 0.19–0.43, < 0.05) and lean body mass (r = 0.28–0.54, < 0.05). Truncal fat mass correlated positively with total body BMC and BMD at total hip and femoral neck (r = 0.33–0.40, < 0.001). When a stepwise regression model was fitted, lean mass remained the strongest predictor of total body BMD, total body BMC, and total spine BMD (regression coefficients = 0.004–0.008 g/cm2 per 1-kg change in lean mass, < 0.001). Similarly, crude BMD and BMC increased across the tertiles of lean mass (P trend < 0.05). We show that lean mass is the strongest predictor of total body BMC and BMD at different sites, although positive correlations with fat mass also exist.
Literature
1.
go back to reference Mitchell AD, Scholz AM, Pursel VG, Evock-Clover CM (1998) Composition analysis of pork carcasses by dual-energy X-ray absorptiometry. J Anim Sci 76:2104–2114PubMed Mitchell AD, Scholz AM, Pursel VG, Evock-Clover CM (1998) Composition analysis of pork carcasses by dual-energy X-ray absorptiometry. J Anim Sci 76:2104–2114PubMed
2.
go back to reference Nagy TR, Clair AL (2000) Precision and accuracy of dual-energy X-ray absorptiometry for determining in vivo body composition of mice. Obes Res 8:392–398PubMedCrossRef Nagy TR, Clair AL (2000) Precision and accuracy of dual-energy X-ray absorptiometry for determining in vivo body composition of mice. Obes Res 8:392–398PubMedCrossRef
3.
go back to reference Kanis JA, Gluer CC (2000) An update on the diagnosis and assessment of osteoporosis with densitometry. Committee of Scientific Advisors, International Osteoporosis Foundation. Osteoporos Int 11:192–202PubMedCrossRef Kanis JA, Gluer CC (2000) An update on the diagnosis and assessment of osteoporosis with densitometry. Committee of Scientific Advisors, International Osteoporosis Foundation. Osteoporos Int 11:192–202PubMedCrossRef
4.
go back to reference Liu JM, Zhao HY, Ning G, Zhao YJ, Zhang LZ, Sun LH, Xu MY, Chen JL (2004) Relationship between body composition and bone mineral density in healthy young and premenopausal Chinese women. Osteoporos Int 15:238–242PubMedCrossRef Liu JM, Zhao HY, Ning G, Zhao YJ, Zhang LZ, Sun LH, Xu MY, Chen JL (2004) Relationship between body composition and bone mineral density in healthy young and premenopausal Chinese women. Osteoporos Int 15:238–242PubMedCrossRef
5.
go back to reference Li S, Wagner R, Holm K, Lehotsky J, Zinaman MJ (2004) Relationship between soft tissue body composition and bone mass in perimenopausal women. Maturitas 47:99–105PubMedCrossRef Li S, Wagner R, Holm K, Lehotsky J, Zinaman MJ (2004) Relationship between soft tissue body composition and bone mass in perimenopausal women. Maturitas 47:99–105PubMedCrossRef
6.
go back to reference Ijuin M, Douchi T, Matsuo T, Yamamoto S, Uto H, Nagata Y (2002) Difference in the effects of body composition on bone mineral density between pre and postmenopausal women. Maturitas 43:239–244PubMedCrossRef Ijuin M, Douchi T, Matsuo T, Yamamoto S, Uto H, Nagata Y (2002) Difference in the effects of body composition on bone mineral density between pre and postmenopausal women. Maturitas 43:239–244PubMedCrossRef
7.
go back to reference Douchi T, Oki T, Nakamura S, Ijuin H, Yamamoto S, Nagata Y (1997) The effect of body composition on bone density in pre and postmenopausal women. Maturitas 27:55–60PubMedCrossRef Douchi T, Oki T, Nakamura S, Ijuin H, Yamamoto S, Nagata Y (1997) The effect of body composition on bone density in pre and postmenopausal women. Maturitas 27:55–60PubMedCrossRef
8.
go back to reference Lekamwasam S, Rodrigo M, Arachchi WK, Munidasa D (2007) Measurement of spinal bone mineral density on a Hologic Discovery DXA scanner with and without leg elevation. J Clin Densitom 10:170–173PubMedCrossRef Lekamwasam S, Rodrigo M, Arachchi WK, Munidasa D (2007) Measurement of spinal bone mineral density on a Hologic Discovery DXA scanner with and without leg elevation. J Clin Densitom 10:170–173PubMedCrossRef
9.
go back to reference Sahin G, Guler H, Incel N, Sezgin M, As I (2006) Soft tissue composition, axial bone mineral density, and grip strength in postmenopausal Turkish women with early rheumatoid arthritis: is lean body mass a predictor of bone mineral density in rheumatoid arthritis? Int J Fertil Womens Med 51:70–74PubMed Sahin G, Guler H, Incel N, Sezgin M, As I (2006) Soft tissue composition, axial bone mineral density, and grip strength in postmenopausal Turkish women with early rheumatoid arthritis: is lean body mass a predictor of bone mineral density in rheumatoid arthritis? Int J Fertil Womens Med 51:70–74PubMed
10.
go back to reference Reid IR, Evans MC, Cooper GJ, Ames RW, Stapleton J (1993) Circulating insulin levels are related to bone density in normal postmenopausal women. Am J Physiol 265:E655–E659PubMed Reid IR, Evans MC, Cooper GJ, Ames RW, Stapleton J (1993) Circulating insulin levels are related to bone density in normal postmenopausal women. Am J Physiol 265:E655–E659PubMed
11.
go back to reference Jurimae J, Rembel K, Jurimae T, Rehand M (2005) Adiponectin is associated with bone mineral density in perimenopausal women. Horm Metab Res 37:297–302PubMedCrossRef Jurimae J, Rembel K, Jurimae T, Rehand M (2005) Adiponectin is associated with bone mineral density in perimenopausal women. Horm Metab Res 37:297–302PubMedCrossRef
12.
go back to reference Bemben DA, Fetters NL, Bemben MG, Nabavi N, Koh ET (2000) Musculoskeletal responses to high- and low-intensity resistance training in early postmenopausal women. Med Sci Sports Exerc 32:1949–1957PubMedCrossRef Bemben DA, Fetters NL, Bemben MG, Nabavi N, Koh ET (2000) Musculoskeletal responses to high- and low-intensity resistance training in early postmenopausal women. Med Sci Sports Exerc 32:1949–1957PubMedCrossRef
13.
go back to reference Andreoli A, Monteleone M, Van Loan M, Promenzio L, Tarantino U, De Lorenzo A (2001) Effects of different sports on bone density and muscle mass in highly trained athletes. Med Sci Sports Exerc 33:507–511PubMed Andreoli A, Monteleone M, Van Loan M, Promenzio L, Tarantino U, De Lorenzo A (2001) Effects of different sports on bone density and muscle mass in highly trained athletes. Med Sci Sports Exerc 33:507–511PubMed
14.
go back to reference Douchi T, Matsuo T, Uto H, Kuwahata T, Oki T, Nagata Y (2003) Lean body mass and bone mineral density in physically exercising postmenopausal women. Maturitas 45:185–190PubMedCrossRef Douchi T, Matsuo T, Uto H, Kuwahata T, Oki T, Nagata Y (2003) Lean body mass and bone mineral density in physically exercising postmenopausal women. Maturitas 45:185–190PubMedCrossRef
15.
go back to reference Reid IR, Plank LD, Evans MC (1992) Fat mass is an important determinant of whole body bone density in premenopausal women but not in men. J Clin Endocrinol Metab 75:779–782PubMedCrossRef Reid IR, Plank LD, Evans MC (1992) Fat mass is an important determinant of whole body bone density in premenopausal women but not in men. J Clin Endocrinol Metab 75:779–782PubMedCrossRef
16.
go back to reference Bulun SE, Zeitoun K, Sasana H, Simpson ER (1999) Aromatase in aging women. Semin Reprod Endocrinol 4:349–358 Bulun SE, Zeitoun K, Sasana H, Simpson ER (1999) Aromatase in aging women. Semin Reprod Endocrinol 4:349–358
17.
go back to reference Zarrabeitia MT, Hernandez JL, Valero C, Zarrabeitia AL, Garcia-Unzueta M, Amado JA, Gonzalez-Macias J, Riancho JA (2004) A common polymorphism in the 5′-untranslated region of the aromatase gene influences bone mass and fracture risk. Eur J Endocrinol 150:699–704PubMedCrossRef Zarrabeitia MT, Hernandez JL, Valero C, Zarrabeitia AL, Garcia-Unzueta M, Amado JA, Gonzalez-Macias J, Riancho JA (2004) A common polymorphism in the 5′-untranslated region of the aromatase gene influences bone mass and fracture risk. Eur J Endocrinol 150:699–704PubMedCrossRef
18.
go back to reference Viapiana O, Gatti D, Rossini M, Idolazzi L, Fracassi E, Adami S (2007) Vitamin D and fractures: a systematic review. Reumatismo 59:15–19PubMed Viapiana O, Gatti D, Rossini M, Idolazzi L, Fracassi E, Adami S (2007) Vitamin D and fractures: a systematic review. Reumatismo 59:15–19PubMed
19.
go back to reference Grundberg E, Brandstrom H, Ribom EL, Ljunggren O, Mallmin H, Kindmark A (2004) Genetic variation in the human vitamin D receptor is associated with muscle strength, fat mass and body weight in Swedish women. Eur J Endocrinol 150:323–328PubMedCrossRef Grundberg E, Brandstrom H, Ribom EL, Ljunggren O, Mallmin H, Kindmark A (2004) Genetic variation in the human vitamin D receptor is associated with muscle strength, fat mass and body weight in Swedish women. Eur J Endocrinol 150:323–328PubMedCrossRef
20.
go back to reference De Laet C, Kanis JA, Oden A, Johanson H, Johnell O, Delmas P, Eisman JA, Kroger H, Fujiwara S, Garnero P, McCloskey EV, Mellstrom D, Melton LJIII, Meunier PJ, Pols HA, Reeve J, Silman A, Tenenhouse A (2005) Body mass index as a predictor of fracture risk: a meta-analysis. Osteoporos Int 16:1330–1338PubMedCrossRef De Laet C, Kanis JA, Oden A, Johanson H, Johnell O, Delmas P, Eisman JA, Kroger H, Fujiwara S, Garnero P, McCloskey EV, Mellstrom D, Melton LJIII, Meunier PJ, Pols HA, Reeve J, Silman A, Tenenhouse A (2005) Body mass index as a predictor of fracture risk: a meta-analysis. Osteoporos Int 16:1330–1338PubMedCrossRef
21.
go back to reference Kanis J, Johnell O, Gullberg B, Allander E, Elffors L, Ranstam J, Dequeker J, Dilsen G, Gennari C, Vaz AL, Lyritis G, Mazzuoli G, Miravet L, Passeri M, Perez Cano R, Rapado A, Ribot C (1999) Risk factors for hip fracture in men from southern Europe: the MEDOS study. Mediterranean Osteoporosis Study. Osteoporos Int 9:45–54PubMedCrossRef Kanis J, Johnell O, Gullberg B, Allander E, Elffors L, Ranstam J, Dequeker J, Dilsen G, Gennari C, Vaz AL, Lyritis G, Mazzuoli G, Miravet L, Passeri M, Perez Cano R, Rapado A, Ribot C (1999) Risk factors for hip fracture in men from southern Europe: the MEDOS study. Mediterranean Osteoporosis Study. Osteoporos Int 9:45–54PubMedCrossRef
22.
go back to reference Bradney M, Pearce G, Naughton G, Sullivan C, Bass S, Beck T, Carlson J, Seeman E (1998) Moderate exercise during growth in prepubertal boys: changes in bone mass, size, volumetric density, and bone strength: a controlled prospective study. J Bone Miner Res 13:1814–1821PubMedCrossRef Bradney M, Pearce G, Naughton G, Sullivan C, Bass S, Beck T, Carlson J, Seeman E (1998) Moderate exercise during growth in prepubertal boys: changes in bone mass, size, volumetric density, and bone strength: a controlled prospective study. J Bone Miner Res 13:1814–1821PubMedCrossRef
23.
go back to reference Klotzbuecher CM, Ross PD, Landsman PB, Abbott TAIII, Berger M (2000) Patients with prior fractures have an increased risk of future fractures: a summary of the literature and statistical synthesis. J Bone Miner Res 15:721–739PubMedCrossRef Klotzbuecher CM, Ross PD, Landsman PB, Abbott TAIII, Berger M (2000) Patients with prior fractures have an increased risk of future fractures: a summary of the literature and statistical synthesis. J Bone Miner Res 15:721–739PubMedCrossRef
Metadata
Title
Association between bone mineral density, lean mass, and fat mass among healthy middle-aged premenopausal women: a cross-sectional study in southern Sri Lanka
Authors
Sarath Lekamwasam
Thilak Weerarathna
Mahinda Rodrigo
Wasantha Kodikara Arachchi
Duminda Munidasa
Publication date
01-01-2009
Publisher
Springer Japan
Published in
Journal of Bone and Mineral Metabolism / Issue 1/2009
Print ISSN: 0914-8779
Electronic ISSN: 1435-5604
DOI
https://doi.org/10.1007/s00774-008-0006-x

Other articles of this Issue 1/2009

Journal of Bone and Mineral Metabolism 1/2009 Go to the issue