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酵母细胞的介电特性。

Dielectric properties of yeast cells.

作者信息

Asami K, Hanai T, Koizumi N

出版信息

J Membr Biol. 1976 Aug 26;28(2-3):169-80. doi: 10.1007/BF01869695.

Abstract

Dielectric measurements were made on suspensions of intact yeast cells over a frequency range of 10kHz to 100 MHz. The suspensions showed typical dielectric dispersions, which are considered to be caused by the presence of cytoplasmic membranes with sufficiently low conductivity. Since the conductivity of the cell wall was found to be of nearly the same value as that of the suspending medium, composed of Kcl solutions in a range from 10 to 80 mM, the cell wall may be ignored in establishing an electrical model of the cells suspended in such media. An analysis of the dielectric data was carried out by use of Pauly and Schwan's theory. The membrane capacitance was estimated to be 1.1+/-0.1 muF/cm2, which is compared with values reported so far for most biological membranes. The conductivity of the cell interior was almost unchanged with varying KCl concentrations and showed low values owing to the presence of less conducting particles, presumably intracellular organelles. The relatively low dielectric constant of about 50 obtained for the cell interior, in comparison with values of aqueous solutions, may be attributed also to the presence of intracellular organelles and proteins.

摘要

在10kHz至100MHz的频率范围内对完整酵母细胞悬液进行了介电测量。这些悬液呈现出典型的介电色散,这被认为是由具有足够低电导率的细胞质膜的存在所引起的。由于发现细胞壁的电导率与由10至80mM范围内的Kcl溶液组成的悬浮介质的电导率几乎相同,在建立悬浮于此类介质中的细胞的电模型时,细胞壁可被忽略。利用保利和施万的理论对介电数据进行了分析。膜电容估计为1.1±0.1μF/cm²,并与迄今为止报道的大多数生物膜的值进行了比较。细胞内部的电导率几乎不随KCl浓度的变化而变化,并且由于存在传导性较低的颗粒(可能是细胞内细胞器)而显示出较低的值。与水溶液的值相比,细胞内部获得的相对较低的介电常数约为50,这也可能归因于细胞内细胞器和蛋白质的存在。

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