2023Medicine & Science in Sports & ExerciseRequires access

Relationship Between Body Composition And IGF-I During Us Army Basic Combat Training

Brandon M. Roberts, Jeffery S. Staab, Aaron R. Caldwell, Cara E. Sczuroski, Janet E. Staab, Laura J. Lutz, Marinaliz Reynoso, Alyssa V. Geddis, Kathryn M. Taylor, Leila A. Walker, Julie M. Hughes, Stephen A. Foulis

Open publisher page 0 citations

Abstract

Body composition is a central component of health and insulin-like growth factor-1, a hepatic-derived hormone that mediates cellular anabolism and considered a biomarker of health status, is associated with differential changes in lean mass in response to disparate military training in male and female Soldiers. However, the directionality of the IGF-I and body composition relationship is not well described, and nor has it been thoroughly explored in both sexes in response to the same military training, while controlling for interrelated factors. PURPOSE: To examine the relationship between body composition and IGF-I in young men and women attending US Army Basic Combat Training (BCT). METHODS: Body composition and total serum IGF-I were measured during week 1 and week 9 of BCT (n = 1,206, M = 809, F = 397). Paired samples t-test were used to determine the change in body weight, body composition (lean mass, fat mass) and IGF-I during BCT (pre to post BCT). Pearson product-moment correlations and estimated partial correlations were used to estimate the correlation while controlling for pre-BCT lean mass, pre-BCT fat mass, pre-BCT IGF-I, and change in IGF-I. RESULTS: Pre-BCT lean mass (r = 0.05, p = 0.08) and fat mass (r = 0.05, p = 0.08) were not associated with pre-BCT IGF-I. During BCT, there was a decrease in body weight (PRE: 74 ± 14, POST: 72 ± 11 kg, p < 0.001), fat mass (PRE: 18 ± 7, POST: 15 ± 5 kg, p < 0.001) and an increase in lean mass (PRE: 52 ± 10.5, POST: 54 ± 10 kg, p < 0.001) and IGF-I (PRE: 176 ± 50, POST: 200 ± 50 ng/mL, p < 0.001). Change in lean mass was correlated with change in IGF-I (r = 0.1712, p < 0.001). Change in fat mass was correlated with changes in IGF-I (r = 0.0964, p = .002). Partial correlations indicated increases in IGF-I during BCT were associated with both increased lean mass (r = 0.08) and fat mass (r = 0.11), but those were not influenced by sex. CONCLUSION: We found changes in IGF-I and body composition are weakly associated and not driven by sex. We also found pre-BCT IGF-I had a weak positive correlation with pre-BCT lean mass, but not pre-BCT fat mass. This data indicates IGF-I may not be an adequate biomarker of health during military training.

About this research paper

What this paper is about

Body composition is a central component of health and insulin-like growth factor-1, a hepatic-derived hormone that mediates cellular anabolism and considered a biomarker of health status, is associated with differential changes in lean mass in response to disparate military training in male and female Soldiers. However, the directionality of the IGF-I and body composition relationship is not well described, and nor has it been thoroughly explored in both sexes in response to the same military training, while controlling for interrelated factors. PURPOSE: To examine the relationship between body composition and IGF-I in young men and women attending US Army Basic Combat Training (BCT). METHODS: Body composition and total serum IGF-I were measured during week 1 and week 9 of BCT (n = 1,206, M = 809, F = 397). Paired samples t-test were used to determine the change in body weight, body composition (lean mass, fat mass) and IGF-I during BCT (pre to post BCT). Pearson product-moment correlations and estimated partial correlations were used to estimate the correlation while controlling for pre-BCT lean mass, pre-BCT fat mass, pre-BCT IGF-I, and change in IGF-I. RESULTS: Pre-BCT lean mass (r = 0.05, p = 0.08) and fat mass (r = 0.05, p = 0.08) were not associated with pre-BCT IGF-I. During BCT, there was a decrease in body weight (PRE: 74 ± 14, POST: 72 ± 11 kg, p < 0.001), fat mass (PRE: 18 ± 7, POST: 15 ± 5 kg, p < 0.001) and an increase in lean mass (PRE: 52 ± 10.5, POST: 54 ± 10 kg, p < 0.001) and IGF-I (PRE: 176 ± 50, POST: 200 ± 50 ng/mL, p < 0.001). Change in lean mass was correlated with change in IGF-I (r = 0.1712, p < 0.001). Change in fat mass was correlated with changes in IGF-I (r = 0.0964, p = .002). Partial correlations indicated increases in IGF-I during BCT were associated with both increased lean mass (r = 0.08) and fat mass (r = 0.11), but those were not influenced by sex. CONCLUSION: We found changes in IGF-I and body composition are weakly associated and not driven by sex. We also found pre-BCT IGF-I had a weak positive correlation with pre-BCT lean mass, but not pre-BCT fat mass. This data indicates IGF-I may not be an adequate biomarker of health during military training.

Why it matters

A significance statement is not available in the OpenAlex record.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Body composition is a central component of health and insulin-like growth factor-1, a hepatic-derived hormone that mediates cellular anabolism and considered a biomarker of health status, is associated with differential changes in lean mass in response to disparate military training in male and female Soldiers. However, the directionality of the IGF-I and body composition relationship is not well described, and nor has it been thoroughly explored in both sexes in response to the same military training, while controlling for interrelated factors. PURPOSE: To examine the relationship between body composition and IGF-I in young men and women attending US Army Basic Combat Training (BCT). METHODS: Body composition and total serum IGF-I were measured during week 1 and week 9 of BCT (n = 1,206, M = 809, F = 397). Paired samples t-test were used to determine the change in body weight, body composition (lean mass, fat mass) and IGF-I during BCT (pre to post BCT). Pearson product-moment correlations and estimated partial correlations were used to estimate the correlation while controlling for pre-BCT lean mass, pre-BCT fat mass, pre-BCT IGF-I, and change in IGF-I. RESULTS: Pre-BCT lean mass (r = 0.05, p = 0.08) and fat mass (r = 0.05, p = 0.08) were not associated with pre-BCT IGF-I. During BCT, there was a decrease in body weight (PRE: 74 ± 14, POST: 72 ± 11 kg, p < 0.001), fat mass (PRE: 18 ± 7, POST: 15 ± 5 kg, p < 0.001) and an increase in lean mass (PRE: 52 ± 10.5, POST: 54 ± 10 kg, p < 0.001) and IGF-I (PRE: 176 ± 50, POST: 200 ± 50 ng/mL, p < 0.001). Change in lean mass was correlated with change in IGF-I (r = 0.1712, p < 0.001). Change in fat mass was correlated with changes in IGF-I (r = 0.0964, p = .002). Partial correlations indicated increases in IGF-I during BCT were associated with both increased lean mass (r = 0.08) and fat mass (r = 0.11), but those were not influenced by sex. CONCLUSION: We found changes in IGF-I and body composition are weakly associated and not driven by sex. We also found pre-BCT IGF-I had a weak positive correlation with pre-BCT lean mass, but not pre-BCT fat mass. This data indicates IGF-I may not be an adequate biomarker of health during military training.

Key concepts: Lean body mass, Fat mass, Composition (language), Anabolism, Insulin-like growth factor, Body weight, Endocrinology, Medicine

Related papers

Back to paper searchBrowse research topicsOriginal source
Relationship Between Body Composition And IGF-I During Us Army Basic Combat Training — Research Paper | ScholarLens