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后肢卸载和疲劳后大鼠比目鱼肌纤维中的底物谱

Substrate profile in rat soleus muscle fibers after hindlimb unloading and fatigue.

作者信息

Grichko V P, Heywood-Cooksey A, Kidd K R, Fitts R H

机构信息

Department of Biology, Marquette University, Milwaukee, Wisconsin 53201, USA.

出版信息

J Appl Physiol (1985). 2000 Feb;88(2):473-8. doi: 10.1152/jappl.2000.88.2.473.

Abstract

Limb muscles from rats flown in space and after hindlimb unloading (HU) show an increased fatigability, and spaceflight has been shown to result in a reduced ability to oxidize fatty acids. The purpose of this investigation was to determine the effects of HU on the substrate content in fast- and slow-twitch fibers and to assess the substrate utilization patterns in single slow type I fibers isolated from control and HU animals. A second objective was to assess whether HU altered the ability of the heart or limb muscle to oxidize pyruvate or palmitate. After 2 wk of HU, single fibers were isolated from the freeze-dried soleus and gastrocnemius muscles. HU increased the glycogen content in all fiber types, and it increased lactate, ATP, and phosphocreatine in the slow type I fiber. After HU, the type I fiber substrate profile was shifted toward that observed in fast fibers. For example, fiber glycogen increased from 179 +/- 16 to 285 +/- 25 mmol/kg dry wt, which approached the 308 +/- 23 mmol/kg dry wt content observed in the post-HU type IIa fiber. With contractile activity, the type I fiber from the HU animal showed a greater utilization of glycogen and accumulation of lactate compared with the control type I fiber. HU had no effect on the ability of crude homogenate or mitochondria fractions from the soleus or gastrocnemius to oxidize pyruvate or palmitate. The increased fatigability after HU may have resulted from an elevated glycolysis producing an increased cell lactate and a decreased pH.

摘要

在太空飞行以及后肢卸载(HU)后的大鼠肢体肌肉显示出疲劳性增加,并且已表明太空飞行会导致脂肪酸氧化能力降低。本研究的目的是确定HU对快肌纤维和慢肌纤维中底物含量的影响,并评估从对照动物和HU处理动物分离出的单个慢I型纤维中的底物利用模式。第二个目的是评估HU是否改变了心脏或肢体肌肉氧化丙酮酸或棕榈酸的能力。HU处理2周后,从冻干的比目鱼肌和腓肠肌中分离出单根纤维。HU增加了所有纤维类型中的糖原含量,并增加了慢I型纤维中的乳酸、ATP和磷酸肌酸。HU处理后,I型纤维的底物谱向在快肌纤维中观察到的方向转变。例如,纤维糖原从179±16增加到285±25 mmol/kg干重,接近HU处理后IIa型纤维中观察到的308±23 mmol/kg干重的含量。与对照I型纤维相比,HU处理动物的I型纤维在收缩活动时显示出更高的糖原利用率和乳酸积累。HU对来自比目鱼肌或腓肠肌的粗匀浆或线粒体部分氧化丙酮酸或棕榈酸的能力没有影响。HU处理后疲劳性增加可能是由于糖酵解增强导致细胞乳酸增加和pH降低所致。

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