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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Ethanol- and acetonitrile-induced inhibition of water diffusional permeability across bovine red blood cell membrane
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Ethanol- and acetonitrile-induced inhibition of water diffusional permeability across bovine red blood cell membrane

机译:乙醇和乙腈对水穿过牛红细胞膜的扩散渗透性的抑制作用

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The effect of 0–3% (v/v) ethanol and acetonitrile on water diffusional permeability of bovine and chicken red blood cells (RBCs) was studied using a pulse 1H-T2 NMR technique. Transmembrane water diffusional exchange times, τexch, of 9.2 ± 0.46 ms and 18.3 ± 1.0 ms were determined for bovine and chicken erythrocytes at 27.5° C, respectively. Arrhenius activation energies Ea of water diffusion were 20.4 and 35.8 kJ mol?1. Ethanol, and acetonitrile being 2-fold more effective, markedly increased both τexch and Ea in bovine RBC as compared to the well-known mercurial inhibitor of water channels, p-chloromercuribenzene sulfonate. Chicken RBCs that have no protein water channels, were found to be completely insensitive for either agent. It was suggested that ethanol and acetonitrile partitioning into the lipid phase of bovine RBC membrane affects the permeability of CHIP28 water channel but not the lipid confined water diffusion. The results suggest that the inhibition of transmembrane movement of water via CHIP28 channels might be involved in the anti-hemolytic action of anaesthetics such as ethanol.
机译:使用脉冲1H-T2 NMR技术研究了0-3%(v / v)乙醇和乙腈对牛和鸡红细胞(RBC)的水扩散渗透性的影响。在27.5°C下,牛和鸡的红细胞的跨膜水扩散交换时间τexch分别为9.2±0.46 ms和18.3±1.0 ms。水扩散的阿累尼乌斯活化能Ea分别为20.4和35.8 kJ mol?1。与众所周知的水通道水银抑制剂对氯汞苯磺酸盐相比,乙醇和乙腈的功效高2倍,显着增加了牛RBC中的τexch和Ea。没有蛋白水通道的鸡RBC被发现对任何一种试剂都完全不敏感。提示乙醇和乙腈分配进入牛RBC膜的脂质相会影响CHIP28水通道的渗透性,但不会影响脂质限制的水扩散。结果表明,通过CHIP28通道抑制水的跨膜运动可能与麻醉剂(如乙醇)的抗溶血作用有关。

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