Interaction of fluorinated lipophilic ions with the plasma membrane of mammalian cells studied by electrorotation and dielectrophoresis

被引:9
作者
Reuss, OR
Kürschner, M
Dilsky, S
Horbaschek, M
Schenk, WA
Zimmermann, U
Sukhorukov, VL
机构
[1] Univ Wurzburg, Lehrstuhl Biotechnol, Biozentrum, D-97074 Wurzburg, Germany
[2] Univ Wurzburg, Inst Anorgan Chem, D-97074 Wurzburg, Germany
关键词
hydrophobic ions; biological cells; plasma membrane; mobile charges; dielectric spectroscopy; dielectrophoresis; DEP; yeast DNA; characterization; manipulation; electrode;
D O I
10.1016/S0304-3886(02)00107-9
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Two complementary AC electrokinetic techniques electrorotation (ROT) and dielectrophoresis (DEP) were employed for studying the interaction of the fluorinated tungsten anion [W(CO)(5)(SC6H4CF3)](-) and a number of its derivatives with the plasma membrane of mouse myeloma cells. The use of microstructured electrodes allowed the measurements to be performed over wide ranges of field frequency and medium conductivity. At micromolar concentrations, most of the fluorinated anions gave rise to dramatic changes in the low-frequency part of both ROT and DEP spectra of cells, indicating that these compounds acted as lipophilic anions capable of introducing large amounts of mobile charges into the plasma membrane. Application of the theoretical models linking the ROT and DEP responses yielded not only the passive electrical properties of the plasma membrane and cytosol but also the ion transport parameters, such as the surface concentration and translocation rate of the lipophilic ions dissolved in the plasma membrane. This study demonstrated that combined ROT and DEP measurements can be employed as a powerful experimental tool for the analysis of the complex relationships between the molecular structure and membrane permeability of charged lipophilic compounds. Due to their strong lipophilicity and fairly low cytotoxicity, the fluorinated tungsten compounds presented here appear to provide a promising new class of field-sensitive molecular probes for membrane structure and transport studies. (C) 2002 Elsevier Science B.V. All rights reserved.
引用
收藏
页码:419 / 434
页数:16
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