McLaughlin S, Poo M M
Biophys J. 1981 Apr;34(1):85-93. doi: 10.1016/S0006-3495(81)84838-2.
The surfaces of most cells bear a net negative charge. The imposition of an electric field parallel to the surface of the cell should produce, therefore, an electro-osmotic flow of fluid towards the cathodal side of the cell. Our analysis of a simple model of the cell surface indicates that a negatively charged mobile macromolecule will be swept by this electro-osmotic flow of fluid to the cathodal side of the cell if its zeta potential, zeta 1, is less negative than the zeta potential of the cell surface, zeta 2. Conversely, if zeta 2 is less negative than zeta 1, the negatively charged macromolecule will accumulate at the anodal side of the cell. Our experimental results demonstrate that concanavalin A (Con A) receptors on embryonic muscle cells normally accumulate at the cathodal side of the cell, but that they can be induced to accumulate at the anodal side of the cell by preincubating the myotubes either with neuraminidase, a treatment that removes negatively charged sialic acid residues, or with the lipid diI, a treatment that adds positive charges to the surface of the cell. Addition of the negatively charged lipid monosialoganglioside (GM1), on the other hand, enhances the accumulation of Con A receptors at the cathodal side of the cell.
大多数细胞表面带有净负电荷。因此,施加一个与细胞表面平行的电场会产生流体向细胞阴极侧的电渗流。我们对细胞表面简单模型的分析表明,如果带负电荷的可移动大分子的ζ电位(ζ1)比细胞表面的ζ电位(ζ2)负性小,那么该大分子会被这种流体的电渗流扫向细胞的阴极侧。相反,如果ζ2的负性比ζ1小,带负电荷的大分子会在细胞的阳极侧积累。我们的实验结果表明,胚胎肌肉细胞上的伴刀豆球蛋白A(Con A)受体通常在细胞的阴极侧积累,但通过用神经氨酸酶(一种去除带负电荷的唾液酸残基的处理方法)或脂质二碘(一种给细胞表面添加正电荷的处理方法)预孵育肌管,可以诱导这些受体在细胞的阳极侧积累。另一方面,添加带负电荷的脂质单唾液酸神经节苷脂(GM1)会增强Con A受体在细胞阴极侧的积累。