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通过细胞膜的介电击穿制备红细胞血影。

Preparation of erythrocyte ghosts by dielectric breakdown of the cell membrane.

作者信息

Zimmermann U, Pilwat G, Riemann F

出版信息

Biochim Biophys Acta. 1975 Jan 28;375(2):209-19. doi: 10.1016/0005-2736(75)90189-3.

Abstract

Dielectric breakdown of membranes of red blood cells was observed in high electric fields (approx. 10-3-10-4 V/cm) using an improved Coulter Counter with hydrodynamic focussing. In making measurements of the size distributions of red blood cells as a function of increasing electric field strength it was found that a sharp discontinuity occurred in the otherwise linear relation between the pulse heights in the Coulter Counter and the electric field strength due to dielectric breakdown of the membranes. Solution of Laplace's equation for the electric field generated at breakdown in the cell membranes yeilds a mean value of about 1.6 V. for the membrane potential of red blood cells. Due to the dielectric break-down, release of hemoglobin occurred. Mechanical rupture of the red blood cells by the hydrodynamic forces in the orifice of the Coulter Counter or thermal rupture could be excluded as hemolysing mechanisms. The leaky ghost cells resealed at 37 degrees C. as shown by incorporation of 131I-labeled albumin and repeated dielctric breakdown.

摘要

使用改进的带有流体动力学聚焦的库尔特计数器,在高电场(约10⁻³ - 10⁻⁴V/cm)中观察到红细胞膜的介电击穿现象。在测量红细胞大小分布随电场强度增加的函数关系时,发现由于细胞膜的介电击穿,库尔特计数器中脉冲高度与电场强度之间原本呈线性关系出现了急剧的不连续性。对细胞膜击穿时产生的电场求解拉普拉斯方程,得出红细胞膜电位的平均值约为1.6V。由于介电击穿,血红蛋白发生了释放。可以排除库尔特计数器孔口处的流体动力导致红细胞机械破裂或热破裂作为溶血机制。如通过掺入¹³¹I标记的白蛋白和重复介电击穿所示,渗漏的空壳细胞在37℃时重新封闭。

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