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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Protonophoric action of triclosan causes calcium efflux from mitochondria, plasma membrane depolarization and bursts of miniature end-plate potentials
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Protonophoric action of triclosan causes calcium efflux from mitochondria, plasma membrane depolarization and bursts of miniature end-plate potentials

机译:三氯联环的质子渗作用导致钙软化钙,血浆膜去极化和微型端板电位爆发

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The formerly widely used broad-spectrum biocide triclosan (TCS) has now become a subject of special concern due to its accumulation in the environment and emerging diverse toxicity. Despite the common opinion that TCS is an uncoupler of oxidative phosphorylation in mitochondria, there have been so far no studies of protonophoric activity of this biocide on artificial bilayer lipid membranes (BLM). Yet only few works have indicated the relationship between TCS impacts on mitochondria and nerve cell functioning. Here, we for the first time report data on a high protonophoric activity of TCS on planar BLM. TCS proved to be a more effective protonophore on planar BLM, than classical uncouplers. Correlation between a strong depolarizing effect of TCS on bacterial membranes and its bactericidal action on Bacillus subtilis might imply substantial contribution of TCS protonophoric activity to its antimicrobial efficacy. Protonophoric activity of TCS, monitored by proton-dependent mitochondrial swelling, resulted in Ca2+ efflux from mitochondria. A comparison of TCS effects on molluscan neurons with those of conventional mitochondrial uncouplers allowed us to ascribe the TCS-induced neuronal depolarization and suppression of excitability to the consequences of mitochondrial deenergization. Also similar to the action of common uncouplers, TCS caused a pronounced increase in frequency of miniature end-plate potentials at neuromuscular junctions. Thus, the TCS-induced mitochondrial uncoupling could alter neuronal function through distortion of Ca2+ homeostasis.
机译:由于其在环境中的积累和新兴的多种毒性中,以前广泛使用的广泛使用的广谱杀生物酰胺三氯烷(TCS)现在已成为特别关注的主题。尽管TCS是线粒体中TCS是氧化磷酸化的脱孔器,但迄今为止没有关于人造双层脂质膜(BLM)上该杀生物剂的质子渗活性的研究。然而,只有很少的作品表明TCS对线粒体的影响与线粒体和神经细胞功能之间的关系。在这里,我们首次报告数据在平面BLM上的TCS的高质量活动数据。 TCS被证明是平面BLM的更有效的Protonophors,而不是古典的解耦者。 TCS对枯草芽孢杆菌TCS对细菌膜上的施用作用的相关性可能意味着TCS质子渗至其抗微生物疗效的大量贡献。通过质子依赖性线粒体肿胀监测TCS的质子渗活动,导致线粒体的Ca2 + Efflux。与常规线粒体非偶偶器的软体动物神经元的TCS效应的比较使我们允许我们将TCS诱导的神经元去极化和抑制兴奋性与线粒体奈塞化的后果。同样类似于常见的非偶联器的作用,TCS在神经肌肉连接处的微型端板电位频率发出显着增加。因此,TCS诱导的线粒体非耦合可以通过Ca2 +稳态的变形来改变神经元函数。

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