Military Performance Division, The United States Army Research Institute of Environmental Medicine, Natick, Massachusetts, USA.
Am J Physiol Regul Integr Comp Physiol. 2012 Nov 15;303(10):R1080-9. doi: 10.1152/ajpregu.00275.2012. Epub 2012 Aug 29.
Insulin-like growth factor-I (IGF-I) resides across different biocompartments [blood, interstitial fluid (ISF), and muscle]. Whether circulating IGF-I responses to exercise reflect local events remains uncertain. We measured the IGF-I response to plyometric exercise across blood, ISF, and muscle biopsy from the vastus lateralis. Twenty volunteers (8 men, 12 women, 22 ± 1 yr) performed 10 sets of 10 plyometric jump repetitions at a 40% 1-repetition maximum. Blood, ISF, and muscle samples were taken pre- and postexercise. Circulating IGF-I increased postexercise: total IGF-I (preexercise = 546 ± 42, midexercise = 585 ± 43, postexercise = 597 ± 45, +30 = 557 ± 42, +60 = 536 ± 40, +120 = 567 ± 42 ng/ml; midexercise, postexercise, and +120 greater than preexercise, P < 0.05); Free IGF-I (preexercise = 0.83 ± 0.09, midexercise = 0.78 ± 0.10, postexercise = 0.79 ± 0.11, +30 = 0.93 ± 0.10, +60 = 0.88 ± 0.10, + 120 = 0.91 ± 0.11 ng/ml; +30 greater than all other preceding time points, P < 0.05). No exercise-induced changes were observed for ISF IGF-I (preexercise = 2.35 ± 0.29, postexercise = 2.46 ± 0.35 ng/ml). No changes were observed for skeletal muscle IGF-I protein, although IGF-I mRNA content increased ∼40% postexercise. The increase in circulating total and free IGF-I was not correlated with increases in ISF IGF-I or muscle IGF-I protein content. Our data indicate that exercise-induced increases in circulating IGF-I are not reflective of local IGF-I signaling.
胰岛素样生长因子-I(IGF-I)存在于不同的生物区室中[血液、细胞间隙液(ISF)和肌肉]。循环 IGF-I 对运动的反应是否反映局部事件尚不确定。我们测量了比目鱼肌的血液、ISF 和肌肉活检中对弹震式运动的 IGF-I 反应。20 名志愿者(8 名男性,12 名女性,22 ± 1 岁)以 40%的 1 次重复最大值进行了 10 组 10 次弹震式跳跃重复。运动前和运动后采集血液、ISF 和肌肉样本。循环 IGF-I 在运动后增加:总 IGF-I(运动前=546±42,运动中=585±43,运动后=597±45,+30=557±42,+60=536±40,+120=567±42 ng/ml;运动中、运动后和+120 均大于运动前,P<0.05);游离 IGF-I(运动前=0.83±0.09,运动中=0.78±0.10,运动后=0.79±0.11,+30=0.93±0.10,+60=0.88±0.10,+120=0.91±0.11 ng/ml;+30 大于所有其他先前时间点,P<0.05)。ISF IGF-I 没有观察到运动诱导的变化(运动前=2.35±0.29,运动后=2.46±0.35 ng/ml)。肌肉 IGF-I 蛋白没有变化,尽管运动后 IGF-I mRNA 含量增加了约 40%。循环总 IGF-I 和游离 IGF-I 的增加与 ISF IGF-I 或肌肉 IGF-I 蛋白含量的增加无关。我们的数据表明,运动引起的循环 IGF-I 增加与局部 IGF-I 信号传导无关。