The influence of valinomycin induced membrane potential on erythrocyte shape.

Biomedica biochimica acta Pub Date : 1991-01-01
R Glaser, C Gengnagel, J Donath
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Abstract

In addition to previous observations indicating that membrane potential changes generated by various Donnan- and Nernst-potentials lead to erythrocyte shape transformations, we show in this paper that diffusion potential change, induced by valinomycin, governs erythrocyte shape transformations. In low KCl-medium valinomycin, transferring the positive Nernst-potential into a negative diffusion potential, transforms stomatocytes into echinocytes. Using modified erythrocytes with a reversed K/Na ratio, even positive diffusion potentials can be induced by valinomycin. In these cases, stomatocytes can be generated by valinomycin. It is shown that, additionally, valinomycin in large concentrations is itself stomatocytogenic, and that the fluorescent dye diS-C3-(5) also induces stomatocytes. This, however, is a side effect which does not contradict the potential dependence of shape transformation. Using non washed erythrocytes, resuspended in plasma, valinomycin, inducing negative diffusion potential, transforms most erythrocytes to echinocytes despite the stomatocytogenic effect of albumin.

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缬霉素诱导膜电位对红细胞形态的影响。
除了先前的观察表明,由各种Donnan-和nernst电位引起的膜电位变化导致红细胞形状转变外,我们在本文中还表明,由缬霉素诱导的扩散电位变化控制着红细胞形状转变。在低kcl -培养基中,valinomycin将正的能斯特电位转化为负的扩散电位,将气孔细胞转化为棘刺细胞。在K/Na比逆转的修饰红细胞中,缬霉素甚至可以诱导阳性的扩散电位。在这些情况下,可以由缬霉素产生气孔细胞。此外,研究表明,大浓度的valinomycin本身具有造口作用,并且荧光染料diS-C3-(5)也能诱导造口细胞。然而,这是一种副作用,与形状变换的潜在依赖性并不矛盾。使用未洗涤的红细胞,重悬在血浆中,缬霉素诱导负扩散电位,将大多数红细胞转化为棘细胞,尽管白蛋白有造口细胞的作用。
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