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Alterations of the apparent area expansivity modulus of red blood cell membrane by electric fields.

机译:电场改变红细胞膜的表观面积膨胀模量。

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摘要

Red blood cell membrane exhibits a large resistance to changes in surface area. This resistance is characterized by the area expansivity modulus K, which relates the isotropic membrane force resultant, T, to the fractional change in membrane surface area delta A/Ao. The experimental technique commonly used to determine K is micropipette aspiration. Using this method, E. A. Evans and R. Waugh (1977, Biophys. J. 20:307-313) obtained a value of 450 dyn/cm for the modulus. In the present report, it is shown that the value of K, as determined using this method, is affected by electric potential differences applied across the tip of the pipette. Using Ag-AgCl electrodes and current clamping electronics, we obtained values for K ranging from 150 dyn/cm with -1.0 V applied, to 1,500 dyn/cm with 1.0 V applied. At 0.0 V the modulus obtained was approximately 500 dyn/cm. A reversible, voltage- and pressure-dependent change in the cell volume probably accounts for the effect of the voltage on the calculated value of the modulus. The use of lanthanum chloride or increasing the extra- and intracellular solute concentrations reduced the voltage dependence of the measurements. It was also found that when dissimilar metals were used to "ground" the pipette to the chamber to prevent lysis of cells by static charge, values for K ranged from 121 to 608 dyn/cm. Based on measurements made at zero applied volts, in the presence of 0.4 mM lanthanum and at high solute concentration, we conclude that the true value of the modulus is approximately 500 dyn/cm.
机译:红细胞膜对表面积的变化表现出很大的抵抗力。该电阻的特征在于面积膨胀模量K,其将各向同性膜力合力T与膜表面积δA / Ao的分数变化相关。通常用于确定K的实验技术是微量移液器抽吸。使用该方法,E.A.Evans和R.Waugh(1977,Biophys.J.20:307-313)获得的模量值为450dyn / cm。在本报告中,显示了使用此方法确定的K值受移液器吸头两端施加的电势差的影响。使用Ag-AgCl电极和电流钳制电子设备,我们得出的K值范围从施加-1.0 V的150 dyn / cm到施加1.0 V的1,500 dyn / cm。在0.0 V时,获得的模量约为500 dyn / cm。晶胞体积中可逆的,与电压和压力有关的变化可能解释了电压对模量计算值的影响。使用氯化镧或增加细胞外和细胞内溶质的浓度可降低测量的电压依赖性。还发现,当使用异种金属将移液器“接地”至腔室以防止细胞因静电荷溶解时,K值的范围为121至608达因/厘米。基于在零施加电压,0.4 mM镧存在下和高溶质浓度下进行的测量,我们得出结论,模量的真实值约为500 dyn / cm。

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