首页> 外文期刊>Toxicon: An International Journal Devoted to the Exchange of Knowledge on the Poisons Derived from Animals, Plants and Microorganisms >Histochemical differences in the responses of predominantly fast-twitch glycolytic muscle and slow-twitch oxidative muscle to veratrine
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Histochemical differences in the responses of predominantly fast-twitch glycolytic muscle and slow-twitch oxidative muscle to veratrine

机译:快速抽动的糖酵解肌和慢抽动的氧化肌对藜芦碱反应的组织化学差异

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摘要

The aim of this study was to investigate if the Na+-channel activating alkaloid veratrine is able to change the oxidative and m-ATPase activities of a fast-twitch glycolytic muscle (EDL, extensor digitorum longus) and slow-twitch oxidative muscle (SOL, soleus) in mice. Oxidative fibers and glycolytic fibers were more sensitive to veratrine than oxidative-glycolytic fibers 15, 30 and 60 min after the i.m. injection of veratrine (10 ng/kg) with both showing an increase in their metabolic activity in both muscles. In EDL, the m-ATPase reaction revealed a significant (p < 0.001) decrease (50%) in the number of type IIB fibers after 30 min while the number of type I fibers increased by 550%. Type I fibers decreased from 34% in control SOL to 17% (50% decrease) in veratrinized muscles, with a 10% decrease in type IIA fibers within 15 min. A third type of fiber appeared in SOL veratrinized muscle, which accounted for 28% of the fibers. Our work gives evidence that the changes in the percentage of the fiber types induced by veratrine may be the result, at least partially, from a direct effect of veratrine on muscle fibers and else from an interaction with the muscle type influencing distinctively the response of a same fiber type. Based on the results obtained in the present study the alterations in EDL may be related to the higher number of Na+ channels present in this muscle whereas those in SOL may involve an action of veratrine on mitochondria. Although it is unlikely that the shift of enzymes activities induced by veratrine involves genotypic expression changes an alternative explanation for the findings cannot be substantiated by the present experimental approach.
机译:这项研究的目的是研究Na +通道活化生物碱藜芦碱是否能够改变快速抽搐的糖酵解肌(EDL,趾长伸肌)和缓慢抽搐的氧化肌(SOL,比目鱼)。 i.m后15、30和60分钟,氧化纤维和糖酵解纤维比氧化-糖酵解纤维对藜芦碱更敏感。注射veratrine(10 ng / kg),两者均显示出其在两条肌肉中的代谢活性增加。在EDL中,m-ATPase反应显示30分钟后IIB型纤维数量显着减少(50%)(p <0.001),而I型纤维数量增加550%。 I型纤维从对照SOL中的34%减少到椎化肌肉中的17%(减少50%),而IIA型纤维在15分钟内减少了10%。第三类纤维出现在SOL晶化的肌肉中,占纤维的28%。我们的研究表明,藜芦碱引起的纤维类型百分比的变化可能至少部分是由于藜芦碱对肌肉纤维的直接作用,也可能是由于与肌肉类型的相互作用显着影响了肌肉的反应。相同的纤维类型。根据本研究获得的结果,EDL的改变可能与该肌肉中存在的Na +通道数量增加有关,而SOL中的改变可能涉及藜芦碱对线粒体的作用。尽管由藜芦碱诱导的酶活性转移不太可能涉及基因型表达的改变,但目前的实验方法不能证实这一发现的另一种解释。

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