Skip to main content
Top
Published in: Journal of Bone and Mineral Metabolism 3/2011

01-05-2011 | Original Article

Determinants of bone mineral content and bone area in Indian preschool children

Authors: Veena H. Ekbote, Anuradha V. Khadilkar, Shashi A. Chiplonkar, Vaman V. Khadilkar

Published in: Journal of Bone and Mineral Metabolism | Issue 3/2011

Login to get access

Abstract

The objective of this study was to examine the lifestyle factors that influence total body bone mineral content (TB BMC) and total body bone area (TB BA) in Indian preschool children. TB BMC and TB BA were measured by dual-energy X-ray absorptiometry (Lunar DPX PRO) in 71 apparently healthy children aged 2–3 years. A fasting blood sample was analyzed for serum concentrations of ionized calcium (iCa), intact parathyroid hormone (iPTH), phosphorus (iP) and 25-hydroxyvitamin D3 (25 OHD). Dietary intake of energy, protein, calcium and phosphorus was estimated from a 3-day diet recall. The daily physical activity and sunlight exposure were recorded by a questionnaire. The study children were shorter than their age-gender matched WHO counterparts with a mean height for age Z score of –1.3 ± 1.5. The mean dietary intake of calcium was 46% of the Indian recommended dietary intakes (RDI). Seventy-three percent of children had low iCa concentrations, and 57% were deficient in vitamin D. Generalized linear model analysis revealed that height, lean body mass, weight, activity, sunlight exposure in minutes and dietary intakes of calcium, zinc and iron were the significantly influencing factors (p < 0.05) of TB BMC and TB BA. In conclusion, attaining optimal height for age, achieving the goals of overall nutrition with adequate calcium, iron and zinc intakes as well as adequate physical activity and sunlight exposure play an important role in achieving better TB BMC and TB BA in preschool children.
Literature
1.
go back to reference Glastre C, Braillon P, David L, Cochat P, Meunier PJ, Delmas PD (1990) Measurement of bone mineral content of the lumbar spine by dual energy X-ray absorptiometry in normal children: correlations with growth parameters. J Clin Endocrinol Metab 70:1330–1333PubMedCrossRef Glastre C, Braillon P, David L, Cochat P, Meunier PJ, Delmas PD (1990) Measurement of bone mineral content of the lumbar spine by dual energy X-ray absorptiometry in normal children: correlations with growth parameters. J Clin Endocrinol Metab 70:1330–1333PubMedCrossRef
2.
go back to reference Ruiz JC, Mandel C, Garabedian M (1995) Influence of spontaneous calcium intake and physical exercise on the vertebral and femoral bone mineral density of children and adolescents. J Bone Miner Res 10:675–682PubMedCrossRef Ruiz JC, Mandel C, Garabedian M (1995) Influence of spontaneous calcium intake and physical exercise on the vertebral and femoral bone mineral density of children and adolescents. J Bone Miner Res 10:675–682PubMedCrossRef
3.
go back to reference VandenBergh MF, DeMan SA, Witteman JC, Hofman A, Trouerbach WT, Grobbee DE (1995) Physical activity, calcium intake, and bone mineral content in children in The Netherlands. J Epidemiol Community Health 49:299–304PubMedCrossRef VandenBergh MF, DeMan SA, Witteman JC, Hofman A, Trouerbach WT, Grobbee DE (1995) Physical activity, calcium intake, and bone mineral content in children in The Netherlands. J Epidemiol Community Health 49:299–304PubMedCrossRef
4.
go back to reference Lee WT, Leung SS, Lui SS, Lau J (1993) Relationship between long-term calcium intake and bone mineral content of children from birth to 5 years. Br J Nutr 70:235–248PubMedCrossRef Lee WT, Leung SS, Lui SS, Lau J (1993) Relationship between long-term calcium intake and bone mineral content of children from birth to 5 years. Br J Nutr 70:235–248PubMedCrossRef
5.
go back to reference Thomas KA, Cook SD, Bennett JT, Whitecloud TS 3rd, Rice JC (1991) Femoral neck and lumbar spine bone mineral densities in a normal population 3–20 years of age. J Pediatr Orthop 11:48–58PubMedCrossRef Thomas KA, Cook SD, Bennett JT, Whitecloud TS 3rd, Rice JC (1991) Femoral neck and lumbar spine bone mineral densities in a normal population 3–20 years of age. J Pediatr Orthop 11:48–58PubMedCrossRef
6.
go back to reference Cheng JCY, Mahmood A, Hui PW (1993) Bone mineral content in Chinese children. J Hong Kong Med Assoc 45:209–214 Cheng JCY, Mahmood A, Hui PW (1993) Bone mineral content in Chinese children. J Hong Kong Med Assoc 45:209–214
7.
go back to reference Zanchetta JR, Plotkin H, Alvarez Filgueira ML (1995) Bone mass in children: normative values for the 2–20-year-old population. Bone 16:393S–399SPubMed Zanchetta JR, Plotkin H, Alvarez Filgueira ML (1995) Bone mass in children: normative values for the 2–20-year-old population. Bone 16:393S–399SPubMed
8.
go back to reference Patel DN, Pettifor JM, Becker PJ, Grieve C, Leschner K (1992) The effect of ethnic group on appendicular bone mass in children. J Bone Miner Res 7:263–272PubMedCrossRef Patel DN, Pettifor JM, Becker PJ, Grieve C, Leschner K (1992) The effect of ethnic group on appendicular bone mass in children. J Bone Miner Res 7:263–272PubMedCrossRef
9.
go back to reference Chaturvedi A, Garg OP, Choudhary B, Garg P (1993) Bone mineral content in normal and malnourished children. Indian Pediatr 30:489–494PubMed Chaturvedi A, Garg OP, Choudhary B, Garg P (1993) Bone mineral content in normal and malnourished children. Indian Pediatr 30:489–494PubMed
10.
go back to reference Horlick M, Thornton J, Wang J, Levine LS, Fedun B, Pierson RN Jr (2000) Bone mineral in prepubertal children: gender and ethnicity. J Bone Miner Res 15:1393–1397PubMedCrossRef Horlick M, Thornton J, Wang J, Levine LS, Fedun B, Pierson RN Jr (2000) Bone mineral in prepubertal children: gender and ethnicity. J Bone Miner Res 15:1393–1397PubMedCrossRef
11.
go back to reference Lee WTK, Leung SSF, Ng MY, Wang SF, Xu YC, Zeng WP, Lau J (1993) Bone mineral content of two populations of Chinese children with different calcium intakes. Bone Miner 23:195–206PubMedCrossRef Lee WTK, Leung SSF, Ng MY, Wang SF, Xu YC, Zeng WP, Lau J (1993) Bone mineral content of two populations of Chinese children with different calcium intakes. Bone Miner 23:195–206PubMedCrossRef
12.
go back to reference Janz KF, Letuchy EM, Eichenberger Gilmore JM, Burns TL, Torner JC, Willing MC, Levy SM (2009) Early physical activity provides sustained bone health benefits later in childhood. Med Sci Sports Exerc (Epub ahead of print) Janz KF, Letuchy EM, Eichenberger Gilmore JM, Burns TL, Torner JC, Willing MC, Levy SM (2009) Early physical activity provides sustained bone health benefits later in childhood. Med Sci Sports Exerc (Epub ahead of print)
13.
go back to reference Specker B, Binkley T (2003) Randomized trial of physical activity and calcium supplementation on bone mineral content in 3 to 5 year old children. J Bone Miner Res 18:885–892PubMedCrossRef Specker B, Binkley T (2003) Randomized trial of physical activity and calcium supplementation on bone mineral content in 3 to 5 year old children. J Bone Miner Res 18:885–892PubMedCrossRef
14.
go back to reference Johnston CC Jr, Miller JZ, Slemenda CW, Reister TK, Hui S, Christian JC, Peacock M (1992) Calcium supplementation and increases in bone mineral density in children. N Engl J Med 327:82–87PubMedCrossRef Johnston CC Jr, Miller JZ, Slemenda CW, Reister TK, Hui S, Christian JC, Peacock M (1992) Calcium supplementation and increases in bone mineral density in children. N Engl J Med 327:82–87PubMedCrossRef
15.
go back to reference Bonjour JP (2005) Dietary protein: an essential nutrient for bone health. J Am Coll Nutr 24:526S–536SPubMed Bonjour JP (2005) Dietary protein: an essential nutrient for bone health. J Am Coll Nutr 24:526S–536SPubMed
16.
go back to reference Budek AZ, Hoppe C, Ingstrup H, Michaelsen KF, Bügel S, Mølgaard C (2007) Dietary protein intake and bone mineral content in adolescents—The Copenhagen Cohort Study. Osteoporos Int 18:1661–1667PubMedCrossRef Budek AZ, Hoppe C, Ingstrup H, Michaelsen KF, Bügel S, Mølgaard C (2007) Dietary protein intake and bone mineral content in adolescents—The Copenhagen Cohort Study. Osteoporos Int 18:1661–1667PubMedCrossRef
17.
go back to reference Bhatia V (2008) Dietary calcium intake—a critical reappraisal. Indian J Med Res 127:269–273PubMed Bhatia V (2008) Dietary calcium intake—a critical reappraisal. Indian J Med Res 127:269–273PubMed
18.
go back to reference Mishra RN, Mishra CP, Sen P, Singh TB (2001) Nutritional status and dietary intake of pre-school children in urban slums of Varanasi. Indian J Community Med 26:90–93 Mishra RN, Mishra CP, Sen P, Singh TB (2001) Nutritional status and dietary intake of pre-school children in urban slums of Varanasi. Indian J Community Med 26:90–93
19.
go back to reference Sidhu BK, Kaur B, Bagga V (1993) A study of dietary practices of pre-school Children attending anganwadies in urban slum of Patiala (Punjab). Indian J Maternal Child Health 4:31–37 Sidhu BK, Kaur B, Bagga V (1993) A study of dietary practices of pre-school Children attending anganwadies in urban slum of Patiala (Punjab). Indian J Maternal Child Health 4:31–37
20.
go back to reference Ekbote VH, Khadilkar AV, Mughal MZ, Hanumante N, Sanwalka N, Khadilkar VV, Chiplonkar SA, Kant S, Ganacharya R (2010) Sunlight exposure and development of rickets in Indian toddlers. Indian J Pediatr 77:61–65PubMedCrossRef Ekbote VH, Khadilkar AV, Mughal MZ, Hanumante N, Sanwalka N, Khadilkar VV, Chiplonkar SA, Kant S, Ganacharya R (2010) Sunlight exposure and development of rickets in Indian toddlers. Indian J Pediatr 77:61–65PubMedCrossRef
21.
go back to reference Harinarayan CV, Ramalakshmi T, Prasad UV, Sudhakar D (2008) Vitamin D status in Andhra Pradesh: a population based study. Indian J Med Res 127:211–218PubMed Harinarayan CV, Ramalakshmi T, Prasad UV, Sudhakar D (2008) Vitamin D status in Andhra Pradesh: a population based study. Indian J Med Res 127:211–218PubMed
22.
go back to reference Wagner CL, Greer FR and the Section on Breastfeeding and Committee on Nutrition (2008) Prevention of rickets and vitamin D deficiency in infants, children, and adolescents. Pediatrics 122:1142–1152 Wagner CL, Greer FR and the Section on Breastfeeding and Committee on Nutrition (2008) Prevention of rickets and vitamin D deficiency in infants, children, and adolescents. Pediatrics 122:1142–1152
23.
go back to reference Garza C, De Onis M (2004) WHO Multicentre Growth Reference Study Group Rationale for developing a new international growth reference. Food Nutr Bull 25:S5–S14PubMed Garza C, De Onis M (2004) WHO Multicentre Growth Reference Study Group Rationale for developing a new international growth reference. Food Nutr Bull 25:S5–S14PubMed
24.
go back to reference Gopalan C, Ramasastri BB, Balasubramanyam SC (1998) Nutritive value of Indian Food. Indian Council of Medical Research, National Institute of Nutrition, Hyderabad Gopalan C, Ramasastri BB, Balasubramanyam SC (1998) Nutritive value of Indian Food. Indian Council of Medical Research, National Institute of Nutrition, Hyderabad
25.
go back to reference Chiplonkar SA, Agte VV (2007) Extent of error in estimating nutrient intakes from food tables versus laboratory estimates of cooked foods. Asia Pac J Clin Nutr 16:227–239PubMed Chiplonkar SA, Agte VV (2007) Extent of error in estimating nutrient intakes from food tables versus laboratory estimates of cooked foods. Asia Pac J Clin Nutr 16:227–239PubMed
26.
go back to reference Barbosa N, Sanchez CE, Vera JA, Perez W, Thalabard JC, Rieu M (2007) A physical activity questionnaire: reproducibility and validity. J Sports Sci Med 6:505–518 Barbosa N, Sanchez CE, Vera JA, Perez W, Thalabard JC, Rieu M (2007) A physical activity questionnaire: reproducibility and validity. J Sports Sci Med 6:505–518
28.
go back to reference Pesce MA (2008) Reference ranges for laboratory tests and procedures. In: Kliegman RM, Behram RE, Jenson HB, Stanton BF (eds) Nelson textbook of pediatrics, vol 18. Elsevier, New Delhi, pp 2944–2949 Pesce MA (2008) Reference ranges for laboratory tests and procedures. In: Kliegman RM, Behram RE, Jenson HB, Stanton BF (eds) Nelson textbook of pediatrics, vol 18. Elsevier, New Delhi, pp 2944–2949
29.
go back to reference Khadilkar A, Mughal MZ, Hanumante N, Sayyad M, Sanwalka N, Naik S, Fraser WD, Joshi A, Khadilkar V (2009) Oral calcium supplementation reverses the biochemical pattern of parathyroid hormone resistance in underprivileged Indian toddlers. Arch Dis Child 94:932–937PubMedCrossRef Khadilkar A, Mughal MZ, Hanumante N, Sayyad M, Sanwalka N, Naik S, Fraser WD, Joshi A, Khadilkar V (2009) Oral calcium supplementation reverses the biochemical pattern of parathyroid hormone resistance in underprivileged Indian toddlers. Arch Dis Child 94:932–937PubMedCrossRef
30.
go back to reference McCullagh P, Nelder J (1989) Generalized linear models. Chapman and Hall/CRC, Boca Raton McCullagh P, Nelder J (1989) Generalized linear models. Chapman and Hall/CRC, Boca Raton
31.
go back to reference Onis MD, Blössner M (1997) WHO Global Database on Child Growth and Malnutrition. World Health Organization/Department of Nutrition for Health and Development, CH-1211 Geneva 27, pp 46–50 Onis MD, Blössner M (1997) WHO Global Database on Child Growth and Malnutrition. World Health Organization/Department of Nutrition for Health and Development, CH-1211 Geneva 27, pp 46–50
32.
go back to reference Sivakumar B, Narasinga Rao BS (2009) Nutrient requirements and RDI. In: Bamji MS (ed) Textbook of human nutrition, vol 3. Oxford & IBH, New Delhi, pp 154–178 Sivakumar B, Narasinga Rao BS (2009) Nutrient requirements and RDI. In: Bamji MS (ed) Textbook of human nutrition, vol 3. Oxford & IBH, New Delhi, pp 154–178
33.
go back to reference Sachdev HPS (1995) Assessing child malnutrition: some basic issues. NFI Bull 16:1–5 Sachdev HPS (1995) Assessing child malnutrition: some basic issues. NFI Bull 16:1–5
34.
go back to reference Bruce C (2003) Comparison of anthropometric data to reference standards. In: Anthropometric indicators measurement guide. Food and Nutrition Technical Assistance Project, Academy for Educational Development, Washington, DC, pp 39–42 Bruce C (2003) Comparison of anthropometric data to reference standards. In: Anthropometric indicators measurement guide. Food and Nutrition Technical Assistance Project, Academy for Educational Development, Washington, DC, pp 39–42
35.
go back to reference Specker BL, Johannsen N, Binkley T, Finn K (2001) Total body bone mineral content and tibial cortical bone measures in preschool children. J Bone Miner Res 16:2298–2305PubMedCrossRef Specker BL, Johannsen N, Binkley T, Finn K (2001) Total body bone mineral content and tibial cortical bone measures in preschool children. J Bone Miner Res 16:2298–2305PubMedCrossRef
36.
go back to reference Mølgaard C, Thomsen BL, Michaelsen KF (2001) The influence of calcium intake and physical activity on bone mineral content and bone size in healthy children and adolescents. Osteoporos Int 2:887–894 Mølgaard C, Thomsen BL, Michaelsen KF (2001) The influence of calcium intake and physical activity on bone mineral content and bone size in healthy children and adolescents. Osteoporos Int 2:887–894
37.
go back to reference Boot AM, De Ridder MAJ, Pols HAP, Krenning EP, De Muinck Keizer-Schrama SMPF (1997) Mineral density in children and adolescents: relation to puberty, calcium intake, and physical activity. J Clin Endocrinol Metab 82:57–62PubMedCrossRef Boot AM, De Ridder MAJ, Pols HAP, Krenning EP, De Muinck Keizer-Schrama SMPF (1997) Mineral density in children and adolescents: relation to puberty, calcium intake, and physical activity. J Clin Endocrinol Metab 82:57–62PubMedCrossRef
38.
go back to reference Mølgaard C, Thomsen BL, Michaelsen KF (1998) Influence of weight, age and puberty on bone size and bone mineral content in healthy children and adolescents. Acta Paediatr 87:494–499PubMedCrossRef Mølgaard C, Thomsen BL, Michaelsen KF (1998) Influence of weight, age and puberty on bone size and bone mineral content in healthy children and adolescents. Acta Paediatr 87:494–499PubMedCrossRef
39.
go back to reference Chan GM (1991) Dietary calcium and bone mineral status of children and adolescents. Am J Dis Child 145:631–634PubMed Chan GM (1991) Dietary calcium and bone mineral status of children and adolescents. Am J Dis Child 145:631–634PubMed
40.
go back to reference Heaney RP, Abrams S, Dawson-Hughes B, Looker A, Marcus R, Matkovic V, Weaver C (2000) Peak bone mass. Osteoporos Int 11:985–1009PubMedCrossRef Heaney RP, Abrams S, Dawson-Hughes B, Looker A, Marcus R, Matkovic V, Weaver C (2000) Peak bone mass. Osteoporos Int 11:985–1009PubMedCrossRef
41.
go back to reference Bouglé DL, Sabatier JP, Guaydier-Souquières G, Guillon-Metz F, Laroche D, P Jauzac, Bureau F (2004) Zinc status and bone mineralisation in adolescent girls. J Trace Elem Med Biol 18:17–21PubMedCrossRef Bouglé DL, Sabatier JP, Guaydier-Souquières G, Guillon-Metz F, Laroche D, P Jauzac, Bureau F (2004) Zinc status and bone mineralisation in adolescent girls. J Trace Elem Med Biol 18:17–21PubMedCrossRef
42.
go back to reference Bounds W, Skinner J, Carruth BR, Ziegler P (2005) The relationship of dietary and lifestyle factors to bone mineral indexes in children. J Am Diet Assoc 105:735–741PubMedCrossRef Bounds W, Skinner J, Carruth BR, Ziegler P (2005) The relationship of dietary and lifestyle factors to bone mineral indexes in children. J Am Diet Assoc 105:735–741PubMedCrossRef
43.
go back to reference Jones G, Dwyer T (1998) Bone mass in prepubertal children: gender differences and the role of physical activity and sunlight exposure. J Clin Endocrinol Metab 83:4274–4279PubMedCrossRef Jones G, Dwyer T (1998) Bone mass in prepubertal children: gender differences and the role of physical activity and sunlight exposure. J Clin Endocrinol Metab 83:4274–4279PubMedCrossRef
Metadata
Title
Determinants of bone mineral content and bone area in Indian preschool children
Authors
Veena H. Ekbote
Anuradha V. Khadilkar
Shashi A. Chiplonkar
Vaman V. Khadilkar
Publication date
01-05-2011
Publisher
Springer Japan
Published in
Journal of Bone and Mineral Metabolism / Issue 3/2011
Print ISSN: 0914-8779
Electronic ISSN: 1435-5604
DOI
https://doi.org/10.1007/s00774-010-0224-x

Other articles of this Issue 3/2011

Journal of Bone and Mineral Metabolism 3/2011 Go to the issue
Obesity Clinical Trial Summary

At a glance: The STEP trials

A round-up of the STEP phase 3 clinical trials evaluating semaglutide for weight loss in people with overweight or obesity.

Developed by: Springer Medicine

Highlights from the ACC 2024 Congress

Year in Review: Pediatric cardiology

Watch Dr. Anne Marie Valente present the last year's highlights in pediatric and congenital heart disease in the official ACC.24 Year in Review session.

Year in Review: Pulmonary vascular disease

The last year's highlights in pulmonary vascular disease are presented by Dr. Jane Leopold in this official video from ACC.24.

Year in Review: Valvular heart disease

Watch Prof. William Zoghbi present the last year's highlights in valvular heart disease from the official ACC.24 Year in Review session.

Year in Review: Heart failure and cardiomyopathies

Watch this official video from ACC.24. Dr. Biykem Bozkurt discuss last year's major advances in heart failure and cardiomyopathies.