Jan K M, Chien S
J Gen Physiol. 1973 May;61(5):655-68. doi: 10.1085/jgp.61.5.655.
The effects of ionic strength and cationic valency of the fluid medium on the surface potential and dextran-induced aggregation of red blood cells (RBC's) were investigated. The zeta potential was calculated from cell mobility in a microelectrophoresis apparatus; the degree of aggregation of normal and neuraminidase-treated RBC's in dextrans (Dx 40 and Dx 80) was quantified by microscopic observation, measurement of erythrocyte sedimentation rate, and determination of low-shear viscosity. A decrease in ionic strength caused a reduction in aggregation of normal RBC's in dextrans, but had no effect on the aggregation of neuraminidase-treated RBC's. These findings reflect an increase in electrostatic repulsive force between normal RBC's by the reduction in ionic strength due to (a) a decrease in the screening of surface charge by counter-ions and (b) an increase in the thickness of the electric double layer. Divalent cations (Ca(++), Mg(++), and Ba(++)) increased aggregation of normal RBC's in dextrans, but had no effect on the aggregation of neuraminidase-treated RBC's. These effects of the divalent cations are attributable to a decrease in surface potential of normal RBC's and a shrinkage of the electric double layer. It is concluded that the surface charge of RBC's plays a significant role in cell-to-cell interactions.
研究了流体介质的离子强度和阳离子价态对红细胞(RBC)表面电位和右旋糖酐诱导的聚集的影响。通过在微电泳装置中测量细胞迁移率来计算ζ电位;通过显微镜观察、红细胞沉降率测量和低剪切粘度测定来量化正常和经神经氨酸酶处理的RBC在右旋糖酐(Dx 40和Dx 80)中的聚集程度。离子强度降低导致正常RBC在右旋糖酐中的聚集减少,但对经神经氨酸酶处理的RBC的聚集没有影响。这些发现反映了由于(a)抗衡离子对表面电荷的屏蔽作用降低和(b)双电层厚度增加,离子强度降低导致正常RBC之间的静电排斥力增加。二价阳离子(Ca(++)、Mg(++)和Ba(++))增加了正常RBC在右旋糖酐中的聚集,但对经神经氨酸酶处理的RBC的聚集没有影响。二价阳离子的这些作用归因于正常RBC表面电位的降低和双电层的收缩。得出结论,RBC的表面电荷在细胞间相互作用中起重要作用。