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Electroporation and electropermeabilization of lipid bilayer membranes in the course of snakes’ venom intoxication

机译:蛇毒中毒过程中脂质双层膜的电穿孔和通透性

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The present study was undertaken to elucidate how the plastic properties of model membranes from native lipids of different tissues of rats change in the course of Macrovipera lebetina obtuse (MLO), Montivipera raddei (MR) and Naja kaouthia (NK) venoms processing. The presence of viper venom in organism lead to increasing of the electrical resistance of BLMs from liver and muscle lipids approximately on a sequence, while the BLMs from brain lipids has not shown a noticeable differences of plastic properties compare the control. The same concentration of cobra venom leads to decreasing of electrical resistance of BLMs from 1011 Ohm till 108 Ohm. The low concentration of venom leads to appearance of channel activity. Especially it is noticeable in liver lipids in media of bivalen ions.
机译:进行本研究以阐明大鼠不同组织的天然脂质的模型膜的可塑性特性在巨圆叶钝脚虫(MLO),山iv(Montivipera raddei(MR)和眼镜蛇(Naja kaouthia)(NK)毒液加工过程中如何变化。机体中毒蛇毒的存在导致肝脏和肌肉脂质中的BLM的电阻大约按一定顺序增加,而脑脂质中的BLM与对照相比未显示出明显的可塑性差异。眼镜蛇毒的浓度相同会导致BLM的电阻从1011欧姆降低到108欧姆。低浓度的毒液导致出现通道活性。尤其是在比伐林离子介质中的肝脏脂质中,它很明显。

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