利用三维电极设计,通过介质电泳平行测量药物对红细胞的作用。

Y Hübner, K F Hoettges, G E N Kass, S L Ogin, M P Hughes
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引用次数: 30

摘要

一种基于良好的分析方法,使用层压三维电极设计来表征不同药物对红细胞的影响,使用电泳术。该系统能够确定化学试剂对红细胞电生理的影响,并以皂素和万霉素为例证明了这两种药物可以穿透细胞膜,从而改变细胞的介电特性。在不同频率下测量井中一段时间内的光强变化,并使用椭球多壳模型确定电池的介电特性。结果表明,层压电极允许高度自动化,从而可以进行大量平行实验,从而减少了检查红细胞种群之间差异所需的时间和精力。该技术与工业标准1536孔板分析技术直接兼容。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Parallel measurements of drug actions on Erythrocytes by dielectrophoresis, using a three-dimensional electrode design.

A type of well-based assay that uses a laminated three-dimensional electrode design to characterise the effects of different drugs on red blood cells using dielectrophoresis is presented. The capability of the system to determine the effects of chemical agents on the electrophysiology of red blood cells is demonstrated using saponin and valinomycin as two examples of drugs that can penetrate the cell membrane and therefore change the dielectric properties of the cell. Light intensity changes are measured in the well over a period of time at various frequencies and the dielectric properties of the cells determined using an ellipsoidal multi-shell model. It is shown that the laminated electrode permits a high degree of automation and thus a high number of parallel experiments, which reduces both the time and effort needed to examine differences between populations of red blood cells. The technique is directly compatible with the industry-standard 1536 well-plate analysis technique.

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