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小型有袋动物短尾矮袋鼠骨骼肌纤维的钙和锶激活特性

Calcium and strontium activation characteristics of skeletal muscle fibres from the small marsupial Sminthopsis macroura.

作者信息

Wilson G J, Stephenson D G

机构信息

Department of Zoology, La Trobe University, Bundoora, Melbourne, Victoria, Australia.

出版信息

J Muscle Res Cell Motil. 1990 Feb;11(1):12-24. doi: 10.1007/BF01833322.

Abstract

Mechanically skinned skeletal muscle fibres from the soleus and tibialis anterior muscles of the small marsupial Sminthopsis macroura were activated by Ca2+ and Sr2+ so that their isometric force properties could be determined. The properties characterized were the shape, slope and positions of the curves generated by plotting isometric force vs. pCa (-log10[Ca2+]) and pSr (-log10[Sr2+]), the maximum Ca2(+)-activated and Sr2(+)-activated tension (Ncm-2) and the frequency of force oscillations of myofibrillar origin during submaximal activations. The effect of caffeine on force activation was also studied. Apart from the fibres which exhibited physiological characteristics similar to those observed previously in mammalian fibres, a large proportion of fibres exhibited characteristics or combinations of characteristics which have not previously been described from healthy adult mammals. The results from 32 soleus fibres showed that only 23 could be categorized as either typical fast-twitch or slow-twitch fibres. The rest possessed unusual physiological characteristics which suggested the co-existence in the same fibre of Ca2(+)-regulatory and contractile properties from different categories of fast-twitch and slow-twitch fibres. We could distinguish two major fast twitch populations of tibialis anterior fibres which occurred in similar proportions. There were significant differences in the maximum tension produced by some of these groups of fibres. The tibialis anterior population fibres produced the highest maximum tension (ToCa 44.6 +/- 4.6 Ncm-2, n = 7) while the soleus combined type fibres produced the lowest maximum tension (ToCa 18.1 +/- 2.1 Ncm-2, n = 8). Our physiological observations of the Ca2(+)-activation and Sr2(+)-activation properties of soleus fibres in this study provide new evidence that there can be combinations of characteristics in single fibres and a continuum of properties between fibre types in normal mammalian skeletal muscles. These animals can therefore be used as a source of fibres with a wide range of properties.

摘要

对小有袋动物斯氏袋鼬比目鱼肌和胫骨前肌的机械去皮肤骨骼肌纤维施加Ca2+和Sr2+进行激活,从而测定其等长力特性。所表征的特性包括绘制等长力与pCa(-log10[Ca2+])和pSr(-log10[Sr2+])曲线的形状、斜率和位置、最大Ca2+激活和Sr2+激活张力(Ncm-2)以及次最大激活期间肌原纤维起源的力振荡频率。还研究了咖啡因对力激活的影响。除了那些表现出与先前在哺乳动物纤维中观察到的生理特征相似的纤维外,很大一部分纤维表现出以前在健康成年哺乳动物中未描述过的特征或特征组合。来自32条比目鱼肌纤维的结果表明,只有23条可以归类为典型的快肌纤维或慢肌纤维。其余的具有不寻常的生理特征,这表明不同类型的快肌纤维和慢肌纤维的Ca2+调节和收缩特性在同一纤维中共存。我们可以区分出比例相似的两个主要的胫骨前肌快肌群体。这些纤维组中一些产生的最大张力存在显著差异。胫骨前肌群体纤维产生的最大张力最高(ToCa 44.6 +/- 4.6 Ncm-2,n = 7),而比目鱼肌联合型纤维产生的最大张力最低(ToCa 18.1 +/- 2.1 Ncm-2,n = 8)。我们在本研究中对比目鱼肌纤维的Ca2+激活和Sr2+激活特性的生理观察提供了新的证据,表明在正常哺乳动物骨骼肌中,单根纤维可以存在特征组合,纤维类型之间存在连续的特性。因此,这些动物可以作为具有广泛特性的纤维来源。

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