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后肢去负荷大鼠趾长伸肌纤维类型对离心收缩诱导损伤的易感性。

Fiber-type susceptibility to eccentric contraction-induced damage of hindlimb-unloaded rat AL muscles.

作者信息

Vijayan K, Thompson J L, Norenberg K M, Fitts R H, Riley D A

机构信息

Department of Cell Biology, Neurobiology and Anatomy, Medical College of Wisconsin, Milwaukee, Wisconsin 53226, USA.

出版信息

J Appl Physiol (1985). 2001 Mar;90(3):770-6. doi: 10.1152/jappl.2001.90.3.770.

Abstract

Slow oxidative (SO) fibers of the adductor longus (AL) were predominantly damaged during voluntary reloading of hindlimb unloaded (HU) rats and appeared explainable by preferential SO fiber recruitment. The present study assessed damage after eliminating the variable of voluntary recruitment by tetanically activating all fibers in situ through the motor nerve while applying eccentric (lengthening) or isometric contractions. Muscles were aldehyde fixed and resin embedded, and semithin sections were cut. Sarcomere lesions were quantified in toluidine blue-stained sections. Fibers were typed in serial sections immunostained with antifast myosin and antitotal myosin (which highlights slow fibers). Both isometric and eccentric paradigms caused fatigue. Lesions occurred only in eccentrically contracted control and HU muscles. Fatigue did not cause lesions. HU increased damage because lesioned- fiber percentages within fiber types and lesion sizes were greater than control. Fast oxidative glycolytic (FOG) fibers were predominantly damaged. In no case did damaged SO fibers predominate. Thus, when FOG, SO, and hybrid fibers are actively lengthened in chronically unloaded muscle, FOG fibers are intrinsically more susceptible to damage than SO fibers. Damaged hybrid-fiber proportions ranged between these extremes.

摘要

在对后肢卸载(HU)大鼠进行自愿性再负荷训练时,长收肌(AL)的慢氧化(SO)纤维受到了主要损伤,这似乎可以通过优先募集SO纤维来解释。本研究通过在原位通过运动神经强直激活所有纤维,同时施加离心(拉长)或等长收缩,消除了自愿募集这一变量后,评估了损伤情况。肌肉用醛固定并包埋在树脂中,然后切成半薄切片。在甲苯胺蓝染色的切片中对肌节损伤进行定量。在抗快肌球蛋白和抗总肌球蛋白(突出慢纤维)免疫染色的连续切片中对纤维进行分型。等长和离心模式都会导致疲劳。损伤仅发生在离心收缩的对照肌肉和HU肌肉中。疲劳不会导致损伤。HU会增加损伤,因为纤维类型内的损伤纤维百分比和损伤大小均大于对照。快氧化糖酵解(FOG)纤维受到主要损伤。在任何情况下,受损的SO纤维都不占主导。因此,当慢性卸载肌肉中的FOG、SO和混合纤维被主动拉长时,FOG纤维在本质上比SO纤维更容易受到损伤。受损混合纤维的比例介于这两个极端之间。

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