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Electrorotation of single yeast cells at frequencies between 100 Hz and 1.6 GHz.

机译:单个酵母细胞在100 Hz至1.6 GHz之间的电旋转。

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摘要

The determination of complete electrorotation spectra of living cells has been made possible by the development of a quadrature generator and an electrode assembly that span the frequency range between 100 Hz and 1.6 GHz. Multiple spectra of single cells of the yeast Saccharomyces cerevisiae have been measured at different medium conductivities ranging from 0.7 to 550 microS cm-1. A spherical four-shell model was applied that simulated the experimental data well and disclosed the four-layer structure of the cell envelope attributed to the plasma membrane, the periplasmic space, and a thick inner and a thin outer wall region. Below 10 kHz an additional rotation effect was found, which changed its direction depending on the ionic strength of the medium. This is supposed to be connected with properties of the cell surface and its close vicinity. From the four-shell simulation the following physical properties of cell compartments could be derived: specific capacitance of plasma membrane (0.76 microF cm-2), periplasmic space (0.5 microF cm-2), and outer wall region (0.1 microF cm-2). The conductivity of cytoplasm, plasma membrane, and inner wall region were found to vary with medium ionic strength from 9 to 12 mS cm-1, 5.8 nS cm-1 to approximately 50 nS cm-1, and 6 microS cm-1 to 240 microS cm-1, respectively.
机译:通过开发正交发生器和跨越100 Hz至1.6 GHz频率范围的电极组件,可以确定活细胞的完整电旋转光谱。已在0.7至550 microS cm-1的不同介质电导率下测量了酿酒酵母单细胞的多光谱。应用了球形四壳模型,该模型很好地模拟了实验数据,并揭示了归因于质膜,周质空间以及较厚的内壁和较薄的外壁区域的细胞包膜的四层结构。在10 kHz以下,发现了另外的旋转效应,其旋转方向取决于介质的离子强度。认为这与细胞表面及其附近的性质有关。通过四壳模拟,可以得出以下细胞隔室的物理特性:质膜的比电容(0.76 microF cm-2),周质空间(0.5 microF cm-2)和外壁区域(0.1 microF cm-2) )。发现细胞质,质膜和内壁区域的电导率随中等离子强度从9到12 mS cm-1、5.8 nS cm-1到大约50 nS cm-1和6 microS cm-1到240而变化microS cm-1。

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