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Shape change of sickled erythrocytes induced by pulsed rf electrical fields.

机译:脉冲射频电场引起的镰状红细胞的形状变化。

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摘要

The shape change of sickled erythrocytes induced by electrical pulses was investigated under various experimental conditions using different suspending media. The purpose of this research is to find a set of conditions under which sickled erythrocytes from an individual with sickle cell anemia (SS erythrocytes) can be desickled with minimal damage to the membrane. Previously we observed, using 0.9% NaCl solution, that rounding of the SS erythrocytes eventually led to hemolysis even when the field was turned off. Using short pulses, we have now observed that the rounding of sickled erythrocytes does not necessarily lead to hemolysis if buffer solutions such as Hanks' solution are used. The cause of the shape change is believed to be the perforation of the erythrocyte membrane by the potential induced by applied fields. The field-induced membrane potential has been calculated for spherical cells and infinitely long cylinders. Using an ellipsoid of revolution as a model, we generalize the calculation of membrane potential. These calculations indicate that a transverse field is less effective in inducing a potential than a longitudinal field.
机译:在不同的实验条件下,使用不同的悬浮介质,研究了电脉冲诱导的镰状红细胞的形状变化。这项研究的目的是找到一套条件,在这种条件下,镰状细胞性贫血个体的镰状红细胞(SS红细胞)可以被去除毛刺,而对膜的损害最小。以前我们观察到,使用0.9%NaCl溶液,即使关闭电场,SS红细胞的四舍五入最终也会导致溶血。使用短脉冲,我们现在已经观察到,如果使用缓冲液(如Hanks's solution),镰状红细胞的圆化并不一定会导致溶血。形状改变的原因被认为是由施加的电场引起的电位使红细胞膜穿孔。对于球形细胞和无限长的圆柱体,已经计算出了场感应膜电位。使用旋转椭球作为模型,我们概括了膜电位的计算。这些计算表明,横向电场在感应电势方面不如纵向电场有效。

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