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Published on: January 29, 2018
The effect of growth hormone deficiency on size-corrected bone mineral measures in pre-pubertal children
M Gahlot1, R Khadgawat, R Ramot
1Department of Dietetics and Nutrition, All India Institute of Medical Sciences, New Delhi, India.
Insights
Children with growth hormone deficiency (GHD) show comparable whole-body bone mineral content to healthy peers. However, lumbar spine bone size and mass are reduced, suggesting GHD impacts bone geometry more than overall bone mass.
Area of Science:
- Pediatric Endocrinology
- Bone Metabolism
- Growth Disorders
Background:
- Growth hormone deficiency (GHD) is often linked to reduced bone mass accrual in children.
- Previous studies faced confounding factors due to poor growth, complicating bone health assessments in GHD.
- This study addresses the impact of GHD on size-corrected bone mineral measures, accounting for growth variations.
Purpose of the Study:
- To evaluate the effects of GHD on size-corrected bone mineral measures.
- To assess bone health at the lumbar spine (LS) and whole body (WB) in pre-pubertal children with GHD.
- To investigate the relationship between lean body mass and bone mineral content in GHD.
Main Methods:
- Dual-energy X-ray absorptiometry (DXA) was used to measure bone area (BA), bone mineral content (BMC), and lean body mass (LBM).
- Measurements were taken in 30 pre-pubertal GHD children and 75 healthy controls.
- Size-corrected (Sc) measures were calculated using multiple linear regressions, and relationships between muscle and bone were analyzed.
Main Results:
- Size-corrected whole-body bone mineral content (WB BMC(Sc)) was comparable between GHD children and controls.
- Significantly reduced size-corrected lumbar spine bone area (LS BA(Sc)) and bone mineral content (LS BMC(Sc)) were observed in GHD children.
- Lean body mass for height (LBM(Ht)) was reduced, while whole-body bone mineral content for lean body mass (WB BMC(Lbm)) was higher in GHD children compared to controls.
Conclusions:
- Size-corrected whole-body bone mineral content in GHD children is comparable to controls.
- Bones in GHD children appear normally adapted for their muscle mass.
- GHD may primarily affect bone strength determinants like muscle mass, bone size, and geometry, rather than bone mass itself.
Unlabelled:
Growth hormone deficiency (GHD) in children has been frequently perceived to be a cause of low bone mass accrual. The confounding effects of poor growth limit the interpretation of prior studies of bone health in GHD. We studied size-corrected bone mineral measures in 30 pre-pubertal GHD children and 75 healthy controls. Our study shows that size-corrected whole-body bone mineral content of GHD children were comparable with controls.
Introduction:
The purpose of this study is to evaluate the effects of GHD on size-corrected bone measures at the lumbar spine (LS) and the whole body (WB).
Methods:
LS bone area (BA), LS bone mineral content (BMC), WB BA, WB BMC, and lean body mass (LBM) were measured in 30 pre-pubertal GHD children and 75 controls by dual-energy X-ray absorptiometry. Multiple linear regressions were used to calculate size-corrected (Sc) LS BA(Sc), LS BMC(Sc), WB BA(Sc), and WB BMC(Sc) from control subjects using height and age as independent variables. Furthermore, the relationship between muscle and bone was studied by first assessing LBM for height (LBM(Ht)) and then determining WB BMC for LBM (WB BMC(LBM)). All values were converted to Z-scores and compared with the control.
Results:
At diagnosis, WB BMC(Sc) Z-score of GHD children was not significantly different from controls. However, mean Z-scores of LS BA(Sc) (-0.89 ± 0.84, p < 0.0001), LS BMC(Sc) (-0.70 ± 1.1, p < 0.001), WB BA(Sc) (-0.65 ± 1.0, p < 0.006), and LBM(Ht) (-0.66 ± 1.7, p < 0.01) were significantly reduced, and WB BMC(Lbm) (0.78 ± 1.5, p < 0.003) was significantly higher in GHD children than controls.
Conclusion:
Size-corrected WB BMC of GHD children were comparable with controls, and bones were normally adapted for muscle mass. Determinants of bone strength which may primarily be affected by GHD are muscle mass, bone size, and geometry rather than bone mass.
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