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电操控介质的介电测量

Dielectric measurements on electro-manipulation media.

作者信息

Arnold W M, Gessner A G, Zimmermann U

机构信息

Lehrstuhl für Biotechnologie, Universität Würzburg, Germany.

出版信息

Biochim Biophys Acta. 1993 May 7;1157(1):32-44. doi: 10.1016/0304-4165(93)90075-j.

Abstract

The permittivity and conductivity of solutions of sugars and sugar alcohols, such as are suitable for electric-field work on cells, were measured. The range of concentrations was 0-3 M (subject to solubility), and the frequency range was that commonly used in dielectrophoresis prior to electrofusion (200 kHz-2 MHz). This was widened to 30 kHz-12 MHz, when dispersive behaviour was found. A parallel-plate impedance chamber with variable electrode-spacing, suited to stable measurements in these low-conductivity aqueous media, was used. Errors due to electrode polarisation were effectively removed by linear regression of the series parameters against electrode distance, as well as by subtraction of data obtained on KCl solutions of comparable conductivity. The permittivity of the sugar solutions decreased as only approximately linear functions of concentration, so that a description in terms of both first- and second-order molar dielectric increments (delta 1 and delta 2) provided a better description of the behaviour than a single linear increment (delta). Sugar solutions of concentration of 1.2 M or less showed no change in permittivity or conductivity over the measured frequency range (i.e., were dispersion-free). On the other hand, various high-density media showed dispersion. The stabilised silica sol 'Percoll' showed dispersion over the whole frequency range; solutions of sucrose (at above 1.2 M concentration), as well as of proprietary high-density solutes ('Metrizamide' at above 0.5 M and 'Nycodenz' at above 0.75 M) showed dispersion above 0.6 MHz. Although these media are of interest for electro-manipulation (they can be used to prevent sedimentation), their dispersive properties may make them unsuitable for use with radio-frequency fields.

摘要

对糖类和糖醇类溶液的介电常数和电导率进行了测量,这些溶液适用于细胞的电场处理。浓度范围为0 - 3M(取决于溶解度),频率范围是电融合前介电电泳常用的范围(200kHz - 2MHz)。当发现有分散行为时,频率范围拓宽到30kHz - 12MHz。使用了一个电极间距可变的平行板阻抗室,适合在这些低电导率水性介质中进行稳定测量。通过将串联参数对电极距离进行线性回归,以及减去在具有可比电导率的KCl溶液上获得的数据,有效地消除了电极极化引起的误差。糖溶液的介电常数仅随浓度呈近似线性函数下降,因此用一阶和二阶摩尔介电增量(δ1和δ2)来描述其行为比用单个线性增量(δ)更好。浓度为1.2M或更低的糖溶液在测量频率范围内介电常数和电导率没有变化(即无分散现象)。另一方面,各种高密度介质表现出分散现象。稳定化的硅胶溶胶“Percoll”在整个频率范围内都有分散现象;蔗糖溶液(浓度高于1.2M)以及专利高密度溶质溶液(“Metrizamide”浓度高于0.5M和“Nycodenz”浓度高于0.75M)在高于0.6MHz时表现出分散现象。尽管这些介质对于电操作很有意义(它们可用于防止沉降),但其分散特性可能使其不适用于射频场。

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