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实验性人体肌肉损伤:与其他损伤指标相关的形态学变化

Experimental human muscle damage: morphological changes in relation to other indices of damage.

作者信息

Jones D A, Newham D J, Round J M, Tolfree S E

出版信息

J Physiol. 1986 Jun;375:435-48. doi: 10.1113/jphysiol.1986.sp016126.

Abstract

The effects of eccentric exercise have been examined in human calf and biceps muscles. Release of muscle creatine kinase and uptake of technetium pyrophosphate have been followed for up to 20 days after the exercise and the results are related to the morphological changes seen in needle biopsy samples. The response to exercise was variable, all subjects developing pain and tenderness in the exercised muscles after 1-2 days and this was followed, in most subjects, by a large increase in plasma creatine kinase 4-6 days after the exercise. This was paralleled by an increased uptake of technetium pyrophosphate into the exercised muscle. Biopsies of the affected muscles showed little or no change in the first 7 days after the exercise but later degenerating fibres were seen, as well as infiltration by mononuclear cells and eventually, by 20 days, signs of regeneration. Very extensive changes were seen in the calf muscle of one subject; changes in the biceps were qualitatively similar but not so severe. In the severely affected calf muscle type II fibres were preferentially damaged. Mononuclear cell infiltration both between and within degenerating fibres was maximal well after the time of peak plasma creatine kinase and it is likely that in eccentrically exercised muscle infiltrating mononuclear cells act to scavenge cellular debris rather than to cause damage to the muscle.

摘要

已经对人体小腿和肱二头肌进行了离心运动效应的研究。运动后长达20天内监测了肌肉肌酸激酶的释放和焦磷酸锝的摄取情况,结果与针吸活检样本中观察到的形态学变化相关。运动反应存在差异,所有受试者在运动后1 - 2天在运动的肌肉中出现疼痛和压痛,并且在大多数受试者中,运动后4 - 6天血浆肌酸激酶大幅升高。这与焦磷酸锝在运动肌肉中的摄取增加相平行。受影响肌肉的活检显示,运动后的前7天几乎没有变化或没有变化,但后来可见纤维退变,以及单核细胞浸润,最终到20天时出现再生迹象。在一名受试者的小腿肌肉中观察到非常广泛的变化;肱二头肌的变化在性质上相似但没有那么严重。在严重受影响的小腿肌肉中,II型纤维优先受损。在血浆肌酸激酶达到峰值后的很长时间,退变纤维之间和内部的单核细胞浸润最为明显,并且在离心运动的肌肉中,浸润的单核细胞可能起到清除细胞碎片的作用,而不是对肌肉造成损伤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c955/1182768/dbd56baae3bf/jphysiol00552-0445-a.jpg

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