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Changes in contractile activation characteristics of rat fast and slow skeletal muscle fibres during regeneration

机译:再生过程中大鼠快慢骨骼肌纤维收缩活化特性的变化

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摘要

Damaged skeletal muscle fibres are replaced with new contractile units via muscle regeneration. Regenerating muscle fibres synthesize functionally distinct isoforms of contractile and regulatory proteins but little is known of their functional properties during the regeneration process. An advantage of utilizing single muscle fibre preparations is that assessment of their function is based on the overall characteristics of the contractile apparatus and regulatory system and as such, these preparations are sensitive in revealing not only coarse, but also subtle functional differences between muscle fibres. We examined the Ca2+- and Sr2+-activated contractile characteristics of permeabilized fibres from rat fast-twitch (extensor digitorum longus) and slow-twitch (soleus) muscles at 7, 14 and 21 days following myotoxic injury, to test the hypothesis that fibres from regenerating fast and slow muscles have different functional characteristics to fibres from uninjured muscles. Regenerating muscle fibres had ∼10% of the maximal force producing capacity (Po) of control (uninjured) fibres, and an altered sensitivity to Ca2+ and Sr2+ at 7 days post-injury. Increased force production and a shift in Ca2+ sensitivity consistent with fibre maturation were observed during regeneration such that Po was restored to 36–45% of that in control fibres by 21 days, and sensitivity to Ca2+ and Sr2+ was similar to that of control (uninjured) fibres. The findings support the hypothesis that regenerating muscle fibres have different contractile activation characteristics compared with mature fibres, and that they adopt properties of mature fast- or slow-twitch muscle fibres in a progressive manner as the regeneration process is completed.
机译:通过肌肉再生,受损的骨骼肌纤维被新的收缩单位所取代。再生肌纤维合成功能不同的收缩蛋白和调节蛋白同工型,但对其再生过程中的功能特性知之甚少。利用单个肌纤维制剂的优点是,其功能的评估是基于收缩装置和调节系统的总体特征,因此,这些制剂不仅敏感地揭示了肌纤维之间的粗略差异,而且还揭示了细微的功能差异。我们检查了大鼠快肌(指长肌)和慢肌(比目鱼)肌肉的透化纤维的Ca 2 + -和Sr 2 + 激活的收缩特性在肌毒性损伤后第7、14和21天,测试以下假设:来自快速和慢速肌肉再生的纤维具有与未受伤的肌肉不同的功能特征。再生的肌肉纤维具有约10%的对照(未损伤)纤维的最大力量产生能力(Po),并且在变化时对Ca 2 + 和Sr 2 + 的敏感性发生了变化受伤后7天。在再生过程中观察到增加的力产生和与纤维成熟一致的Ca 2 + 敏感性的变化,使得Po在21天时恢复到对照纤维的36–45%,对Ca < sup> 2 + 和Sr 2 + 与对照(未损伤)纤维相似。这些发现支持这样的假说,即再生的肌肉纤维与成熟的纤维相比具有不同的收缩活化特性,并且随着再生过程的完成,它们以渐进的方式采用成熟的快或慢肌纤维特性。

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