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首页> 外文期刊>Journal of applied physiology >Exercise-dependent IGF-I, IGFBPs, and type I collagen changes in human peritendinous connective tissue determined by microdialysis
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Exercise-dependent IGF-I, IGFBPs, and type I collagen changes in human peritendinous connective tissue determined by microdialysis

机译:通过微透析确定运动依赖的IGF-I,IGFBPs和I型胶原在人腹膜结缔组织中的变化

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Microdialysis studies indicate that mechanical loading of human tendon during exercise elevates type I collagen production in tendon. However, the possibility that the insertion of microdialysis fibers per se may increase the local collagen production due to trauma has not been explored. Insulin-like growth factor I ( IGF-I) and its binding proteins ( IGFBPs), which are known to stimulate collagen production in animal tendons, may regulate the translation of mechanical loading to collagen synthesis. Systemic and tissue levels of IGF-I, IGFBP, and type I collagen metabolism markers [ procollagen I COOH-terminal propeptide ( PICP) and COOH-terminal telopeptide of type I collagen] were measured by microdialysis in peritendinous tissue of the human Achilles tendon in an exercise group ( performing a 36-km run, n = 6) and a control group ( no intervention, n = 6). An increase in local PICP concentration was seen in both groups after 72 h and stayed elevated in the exercise group at 96 h ( P < 0.05). IGFBP-1 in both serum and dialysate increased in the exercise group immediately after exercise ( P < 0.05), whereas IGFBP-3 decreased systemically ( P < 0.05). Elevation of local IGFBP-4 was observed in both the control and exercise groups after 48 h ( P < 0.05). Total IGF-I did not change in locally or systemically in either group. Our results indicate an increased local production of PICP in human peritendinous tissue in response to prolonged mechanical loading with part of the increase due to trauma from the sampling technique. Care must therefore be emphasized to minimize the numbers of insertions with microdialysis. We demonstrated an elevation of IGFBP-1 both systemically and peritendinously in response to prolonged acute exercise. The local increased collagen synthesis was preceded by an elevation of local concentration of IGFBP-4, suggesting that IGFBP-4 may have a key role in the IGF-axis effect on the human collagen synthesis in vivo.
机译:微透析研究表明,运动过程中人肌腱的机械负荷提高了肌腱中I型胶原的产生。然而,尚未探索微透析纤维本身的插入可能由于创伤而增加局部胶原蛋白产生的可能性。众所周知,胰岛素样生长因子I(IGF-I)及其结合蛋白(IGFBPs)可以刺激动物腱中胶原蛋白的产生,它们可能调节机械负荷向胶原蛋白合成的转化。通过微渗析法测定人体跟腱周围组织的IGF-I,IGFBP和I型胶原代谢指标[I型胶原的前胶原I COOH末端前肽(PICP)和I型胶原COOH末端端肽]的全身和组织水平。运动组(进行36公里跑步,n = 6)和对照组(无干预,n = 6)。两组在72小时后均观察到局部PICP浓度升高,在运动组在96小时时仍保持升高(P <0.05)。运动组在运动后立即升高血清和透析液中的IGFBP-1水平(P <0.05),而IGFBP-3全身性降低(P <0.05)。对照组和运动组在48小时后均观察到局部IGFBP-4升高(P <0.05)。两组中的总IGF-I在局部或全身均未改变。我们的结果表明,随着机械负荷的延长,人体周缘组织中PICP的局部产生增加,其中一部分是由于采样技术造成的创伤所致。因此,必须注意尽量减少微透析的插入次数。我们证明了IGFBP-1在全身和腹膜中都会升高,以应对长时间的急性运动。局部增加的胶原蛋白合成之前是IGFBP-4的局部浓度升高,这提示IGFBP-4可能在体内IGF-轴对人胶原蛋白合成的作用中起关键作用。

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