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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >The effect of oxidative stress on the membrane dipole potential of human red blood cells
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The effect of oxidative stress on the membrane dipole potential of human red blood cells

机译:氧化应激对人红细胞膜偶极电位的影响

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摘要

The membrane dipole potential (??d) is an important biophysical determinant of membrane function and a sensitive indicator of lipid organisation. In this study we have used the environmentally sensitive probe di-8-anepps to explore the effects of oxidative stress on the membrane dipole potential of human erythrocytes. Cells suspended in 0.15 mM phosphate buffered saline containing 0.1 mg/ml albumin maintained a mean value for ??d of 270 (?? 20) mV over the course of 1 hour. In the presence of 0.4 mM cumene hydroperoxide there was an increase in ??d of 14 (?? 7)%, accompanied by a decrease in cell diameter of ~ 14 (?? 2)%. Exposure of the cells to 0.4 mM hydrogen peroxide caused ??d to decrease by 13 (?? 8)% at the centre of the cell and 8 (?? 5)% at the edge whilst the diameter remained constant. In both cases the changes were equivalent to a change in transmembrane electric field of a magnitude of ~ 10 MVm- 1, sufficient to influence membrane function. Raman microspectrometry supported the conclusion that cumene exerts its effect primarily on membrane lipids whilst hydrogen peroxide causes the formation of spectrin-haemoglobin complexes which stiffen the membrane. ? 2012 Elsevier B.V. All rights reserved.
机译:膜偶极电位(Δdd)是膜功能的重要生物物理决定因素,也是脂质组织的敏感指标。在这项研究中,我们使用了对环境敏感的探针di-8-anepps来探索氧化应激对人红细胞膜偶极电位的影响。悬浮在含有0.1 mg / ml白蛋白的0.15 mM磷酸盐缓冲盐水中的细胞在1小时的过程中保持Δdd平均值为270(Δ20)mV。在存在0.4mM氢过氧化枯烯的情况下,Δdd增加了14(Δ7)%,同时细胞直径减小了约14(Δ2)%。将细胞暴露于0.4mM的过氧化氢中,使Δdd在细胞中心降低13(Δε8)%,在边缘处降低8(Δε5)%,同时直径保持恒定。在这两种情况下,该变化等同于〜10 MVm-1量级的跨膜电场变化,足以影响膜功能。拉曼光谱法支持以下结论:异丙苯主要作用于膜脂质,而过氧化氢则导致形成血影蛋白-血红蛋白复合物,从而使膜变硬。 ? 2012 Elsevier B.V.保留所有权利。

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