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首页> 外文期刊>American Journal of Physiology >A novel, noninvasive transdermal fluid sampling methodology: IGF-I measurement following exercise.
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A novel, noninvasive transdermal fluid sampling methodology: IGF-I measurement following exercise.

机译:一种新颖的,无创的透皮液体采样方法:运动后进行IGF-I测量。

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This study tested the hypothesis that transdermal fluid (TDF) provides a more sensitive and accurate measure of exercise-induced increases in insulin-like growth factor-I (IGF-I) than serum, and that these increases are detectable proximal, but not distal, to the exercising muscle. A novel, noninvasive methodology was used to collect TDF, followed by sampling of total IGF-I (tIGF-I) and free IGF-I (fIGF-I) in TDF and serum following an acute bout of exercise. Experiment 1: eight men (23 +/- 3 yrs, 79 +/- 7 kg) underwent two conditions (resting and 60 min of cycling exercise at 60% Vo(2)(peak)) in which serum and forearm TDF were collected for comparison. There were no significant changes in tIGF-I or fIGF-I in TDF obtained from the forearm or from serum following exercise (P > 0.05); however, the proportion of fIGF-I to tIGF-I in TDF was approximately fourfold greater than that of serum (P 0.05). Overall, these data suggest that TDF may provide a noninvasive means of monitoring acute exercise-induced changes in local IGF-I when sampled in proximity to exercising muscles. Moreover, our finding that the proportion of free to tIGF-I was greater in TDF than in serum suggests that changes in local IGF-I may be captured more readily using this system.
机译:这项研究检验了以下假设,即透皮液体(TDF)比血清能更灵敏,准确地测量运动引起的胰岛素样生长因子I(IGF-1)的增加,并且这些增加在近端可被检测到,而在远端不可检测到,以锻炼肌肉。一种新颖的,非侵入性的方法被用于收集TDF,然后在剧烈运动后对TDF和血清中的总IGF-1(tIGF-1)和游离IGF-1(fIGF-1)进行采样。实验1:八名男子(23 +/- 3岁,79 +/- 7公斤)经历了两个条件(在60%Vo(2)(peak)下休息和进行60分钟的自行车运动),其中收集了血清和前臂TDF为了比较。运动后从前臂或血清获得的TDF中的tIGF-I或fIGF-I没有明显变化(P> 0.05);然而,在TDF中,fIGF-I与tIGF-I的比例大约是血清的四倍(P≤0.05)。这些数据表明,当从工作组织的远端取样TDF时,TDF IGF-1的变化不明显。为了确定当在活动肌肉组上直接采样TDF时是否可以检测到运动引起的局部IGF-I升高,我们进行了第二项实验。实验2:十四名受试者(22 +/- 4岁,68 +/- 11公斤)进行了一次急性肺部锻炼运动,包括10组10次肺部测量跳跃,每组之间休息2分钟。我们观察到运动后TDF tIGF-I显着增加(P <= 0.05),但血清tIGF-I没有变化(P> 0.05)。总体而言,这些数据表明,当在运动肌肉附近采样时,TDF可能提供一种监测局部IGF-I急性运动引起的变化的无创手段。此外,我们的发现发现,游离TIGF-I在TDF中的比例比血清中更大,这表明使用此系统可以更容易地捕获局部IGF-I的变化。

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