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营养不良小鼠生命过程中膈肌和伸趾长肌的电特性。

Electrical properties of diaphragm and EDL muscles during the life of dystrophic mice.

作者信息

De Luca A, Pierno S, Camerino D C

机构信息

Department of Pharmacobiology, Faculty of Pharmacy, University of Bari, Italy.

出版信息

Am J Physiol. 1997 Jan;272(1 Pt 1):C333-40. doi: 10.1152/ajpcell.1997.272.1.C333.

Abstract

The membrane electrical properties of diaphragm and extensor digitorum longus (EDL) muscle fibers of dystrophic mdx and control mice from 4 wk to 14-19 mo of age were recorded with the intracellular microelectrode technique. Up to 8 wk of age, the diaphragm and EDL muscles did not differ between the two strains. From 8 up to 20 wk, the mdx diaphragm fibers showed a higher membrane resistance (Rm), which was due to significantly lower values of resting chloride conductance (GCl) and an overexcitability with respect to age-matched controls. Oppositely, the mdx EDL muscle fibers had significantly lower Rm and higher GCl values than age-related controls at 8, 10, and 13 wk, along with a decreased membrane excitability. These differences were no longer detectable at 20 wk. The diaphragm and EDL muscles from 14- to 19-mo-old controls showed a decrease of GCl and an increase of potassium conductance with respect to adult animals. In aged mdx animals, these changes were very dramatic in diaphragm fibers, whereas no differences, with respect to adults, were found in the EDL muscle. Thus GCl is an index of the dystrophic condition of mdx muscles. In the degenerating diaphragm, the impairment of GCl can account for some of the pathological features of the muscle. In the EDL muscle, the changes of GCl can follow the high regenerative potential of the hindlimb muscles of the mdx phenotype.

摘要

采用细胞内微电极技术记录了4周龄至14 - 19月龄的营养不良性mdx小鼠和对照小鼠膈肌及趾长伸肌(EDL)肌纤维的膜电特性。在8周龄之前,两种品系的膈肌和EDL肌肉没有差异。从8周到20周,mdx膈肌纤维表现出较高的膜电阻(Rm),这是由于静息氯电导(GCl)值显著降低以及相对于年龄匹配的对照具有过度兴奋性。相反,在8周、10周和13周时,mdx EDL肌纤维的Rm显著低于年龄相关对照,GCl值较高,同时膜兴奋性降低。这些差异在20周时不再可检测到。与成年动物相比,14至19月龄对照小鼠的膈肌和EDL肌肉显示GCl降低,钾电导增加。在老年mdx动物中,这些变化在膈肌纤维中非常显著,而在EDL肌肉中未发现与成年动物的差异。因此,GCl是mdx肌肉营养不良状况的一个指标。在退化的膈肌中,GCl的损害可以解释肌肉的一些病理特征。在EDL肌肉中,GCl的变化可能与mdx表型后肢肌肉的高再生潜力有关。

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