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猫比目鱼肌运动单位的机电和代谢特性的协调

Coordination of electromechanical and metabolic properties of cat soleus motor units.

作者信息

Martin T P, Bodine-Fowler S, Edgerton V R

机构信息

Department of Kinesiology, University of California, Los Angeles 90024-1568.

出版信息

Am J Physiol. 1988 Nov;255(5 Pt 1):C684-93. doi: 10.1152/ajpcell.1988.255.5.C684.

Abstract

Motor units were studied in the soleus muscle of normal adult cats and adult cats that had undergone complete spinal cord transection approximately 4 mo earlier. Intracellular recording and stimulation techniques were used to study selected electrical properties of the motoneuron and isometric contractile properties of the muscle unit. Motor unit fibers were depleted of their glycogen through repetitive stimulation of the motoneuron and identified by a quantitative histochemical determination of glycogen. A sample of muscle fibers from the glycogen-depleted unit and from fibers not depleted of glycogen were analyzed for cross-sectional area, succinate dehydrogenase (SDH), alpha-glycerolphosphate dehydrogenase (GPD), and alkaline myofibrillar adenosine triphosphatase. It was observed that the fiber-to-fiber variability in cross-sectional area and SDH and GPD activity within units of normal and transected cats was significantly larger than that measured in repeated samples from a single fiber. Additionally, for each of these properties, the range found among fibers within a unit was similar to that found among nondepleted fibers of the same myosin type. The influence of spinal cord transection on some muscle fibers seemed to result in a metabolic shift from the generalized category of slow-oxidative toward fast-oxidative glycolytic. This shift in metabolic properties appeared to be coupled with a similar shift in the physiological properties of the muscle unit and motoneuron from slow to fast.

摘要

在正常成年猫以及大约4个月前接受了完全脊髓横断的成年猫的比目鱼肌中研究运动单位。采用细胞内记录和刺激技术来研究运动神经元的特定电特性以及肌肉单位的等长收缩特性。通过重复刺激运动神经元使运动单位纤维的糖原耗尽,并通过糖原的定量组织化学测定来识别。对来自糖原耗尽单位的肌肉纤维样本以及未耗尽糖原的纤维样本进行横截面积、琥珀酸脱氢酶(SDH)、α-甘油磷酸脱氢酶(GPD)和碱性肌原纤维三磷酸腺苷酶的分析。观察到正常猫和横断猫的运动单位内纤维间在横截面积、SDH和GPD活性方面的变异性显著大于从单根纤维的重复样本中测得的变异性。此外,对于这些特性中的每一项,在一个单位内纤维间发现的范围与在相同肌球蛋白类型的未耗尽纤维间发现的范围相似。脊髓横断对某些肌肉纤维的影响似乎导致了从一般的慢氧化型向快氧化糖酵解型的代谢转变。这种代谢特性的转变似乎与肌肉单位和运动神经元的生理特性从慢到快的类似转变相关联。

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