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胰岛素样生长因子-I分子复合物对军事野外训练的不同反应。

Differential responses of IGF-I molecular complexes to military operational field training.

作者信息

Nindl Bradley C, Castellani John W, Young Andrew J, Patton John F, Khosravi M Javad, Diamandi Anastasia, Montain Scott J

机构信息

Military Performance Division, United States Army Research Institute of Environmental Medicine, Natick, MA 01760, USA.

出版信息

J Appl Physiol (1985). 2003 Sep;95(3):1083-9. doi: 10.1152/japplphysiol.01148.2002.

Abstract

Insulin-like growth factor (IGF) I and IGF binding proteins (IGFBPs) modulate metabolic activity and tissue repair and are influenced by nutritional status. IGF-I circulates in free, ternary [IGF-I + IGFBP-3 + acid labile subunit (ALS)], and binary (IGF-I + IGFBP) molecular complexes, and the relative proportions regulate IGF-I extravascular shifting and bioavailability. This study examined the hypothesis that sustained physical activity and sleep deprivation superimposed on a short-term energy deficit would alter the IGFBP concentrations and alter the proportions of IGF-I circulating in ternary vs. binary molecular complexes. Components of the IGF-I system (total and free IGF-I; IGFBP-1, -3, and ALS; nonternary IGF-I and IGFBP-3), biomarkers of metabolic and nutritional status (transferrin, ferritin, prealbumin, glucose, free fatty acids, glycerol, beta-hydroxybutyrate), and body composition were measured in 12 men (22 +/- 3 yr, 87 +/- 8 kg, 183 +/- 7 cm, 20 +/- 5% body fat) on days 1, 3, and 4 during a control and experimental (Exp) period. During Exp, subjects performed prolonged work (energy expenditure of approximately 4500 kcal/day) with caloric (1600 kcal/day) and sleep (6.2 h total) restriction. IGF-I and IGFBP-3 were measured by immunoassay before and after immunoaffinity depletion of ALS-based complexes (i.e., ternary complex removal). Exp produced losses in body mass (-3.0%), lowered total IGF-I (-24%), free IGF-I (-42%), IGFBP-3 (-6%), nonternary IGF-I (-27%), and IGFBP-3 (-16%), and increased IGFBP-1 (256%). No Exp effects were observed for ALS. No changes were observed in the proportion of IGF-I circulating in free ( approximately 1.2%), ternary ( approximately 87.4%), or nonternary ( approximately 11.4%) molecular complexes. During Exp, glucose concentrations were lower on day 3, but days 1 and 4 were statistically similar. In conclusion, during a short-term energy deficit in young, healthy men, 1). IGF-I system components differentially respond (both in direction and magnitude) to a given metabolic perturbation and 2). the relative proportion of IGF-I sequestered in ternary vs. nonternary molecular complexes appears to be well maintained.

摘要

胰岛素样生长因子(IGF)-I和IGF结合蛋白(IGFBPs)调节代谢活性和组织修复,并受营养状况影响。IGF-I以游离、三元[IGF-I + IGFBP-3 + 酸性不稳定亚基(ALS)]和二元(IGF-I + IGFBP)分子复合物的形式循环,其相对比例调节IGF-I的血管外转移和生物利用度。本研究检验了以下假设:持续的体力活动和睡眠剥夺叠加短期能量不足会改变IGFBP浓度,并改变三元与二元分子复合物中循环的IGF-I的比例。在12名男性(22±3岁,87±8千克,183±7厘米,体脂20±5%)的对照期和实验(Exp)期的第1、3和4天,测量了IGF-I系统的组成部分(总IGF-I和游离IGF-I;IGFBP-1、-3和ALS;非三元IGF-I和IGFBP-3)、代谢和营养状况的生物标志物(转铁蛋白、铁蛋白、前白蛋白、葡萄糖、游离脂肪酸、甘油、β-羟基丁酸)以及身体组成。在Exp期间,受试者进行长时间工作(能量消耗约4500千卡/天),同时限制热量摄入(1600千卡/天)和睡眠(总计6.2小时)。在基于ALS的复合物(即三元复合物去除)的免疫亲和耗尽前后,通过免疫测定法测量IGF-I和IGFBP-3。Exp导致体重减轻(-3.0%),总IGF-I降低(-24%),游离IGF-I降低(-42%),IGFBP-3降低(-6%),非三元IGF-I降低(-27%),IGFBP-3降低(-16%),而IGFBP-1增加(256%)。未观察到Exp对ALS有影响。在游离(约1.2%)、三元(约87.4%)或非三元(约11.4%)分子复合物中循环的IGF-I比例未观察到变化。在Exp期间,第3天血糖浓度较低,但第1天和第4天在统计学上相似。总之,在年轻健康男性的短期能量不足期间,1). IGF-I系统组成部分对给定的代谢扰动有不同的反应(在方向和程度上);2). 三元与非三元分子复合物中隔离的IGF-I的相对比例似乎得到了很好的维持。

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