4.6 Article

Insulin Resistance and the IGF-I-Cortical Bone Relationship in Children Ages 9 to 13 Years

Journal

JOURNAL OF BONE AND MINERAL RESEARCH
Volume 32, Issue 7, Pages 1537-1545

Publisher

WILEY
DOI: 10.1002/jbmr.3132

Keywords

GH/IGF-I; SKELETAL MUSCLE; BONE QCT/mCT; pQCT

Funding

  1. Eunice Kennedy Shriver National Institute of Child Health and Human Development [RO1HD057126]
  2. Allen Foundation [2.008.319]
  3. University of Georgia Agricultural Experiment Station, HATCH project [GEO00797, GEO00700]

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IGF-I is a pivotal hormone in pediatric musculoskeletal development. Although recent data suggest that the role of IGF-I in total body lean mass and total body bone mass accrual may be compromised in children with insulin resistance, cortical bone geometric outcomes have not been studied in this context. Therefore, we explored the influence of insulin resistance on the relationship between IGF-I and cortical bone in children. A secondary aim was to examine the influence of insulin resistance on the lean mass-dependent relationship between IGF-I and cortical bone. Children were otherwise healthy, early adolescent black and white boys and girls (ages 9 to 13 years) and were classified as having high (n = 147) or normal (n = 168) insulin resistance based on the homeostasis model assessment of insulin resistance (HOMA-IR). Cortical bone at the tibia diaphysis (66% site) and total body fat-free soft tissue mass (FFST) were measured by peripheral quantitative computed tomography (pQCT) and dual-energy X-ray absorptiometry (DXA), respectively. IGF-I, insulin, and glucose were measured in fasting sera and HOMA-IR was calculated. Children with high HOMA-IR had greater unadjusted IGF-I (p< 0.001). HOMA-IR was a negative predictor of cortical bone mineral content, cortical bone area (Ct. Ar), and polar strength strain index (pSSI; all p <= 0.01) after adjusting for race, sex, age, maturation, fat mass, and FFST. IGF-I was a positive predictor of most musculoskeletal endpoints (all p< 0.05) after adjusting for race, sex, age, and maturation. However, these relationships were moderated by HOMA-IR (pInteraction< 0.05). FFST positively correlated with most cortical bone outcomes (all p< 0.05). Path analyses demonstrated a positive relationship between IGF-I and Ct. Ar via FFST in the total cohort (beta(Indirect Effect) = 0.321, p< 0.001).However, this relationship was moderated in the children with high (beta(Indirect Effect) = 0.200, p< 0.001) versus normal (beta(Indirect Effect) = 0.408, p< 0.001) HOMA-IR. These data implicate insulin resistance as a potential suppressor of IGF-I-dependent cortical bone development, though prospective studies are needed. (C) 2017 American Society for Bone and Mineral Research.

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