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通过交变电场诱导细胞表面受体的重新分布。

Induced redistribution of cell surface receptors by alternating current electric fields.

作者信息

Cho M R, Thatte H S, Lee R C, Golan D E

机构信息

Department of Biological Chemistry and Molecular Pharmacology, Harvard Medical School, Boston, Massachusetts 02115.

出版信息

FASEB J. 1994 Jul;8(10):771-6. doi: 10.1096/fasebj.8.10.8050677.

Abstract

The molecular mechanisms that underlie the biological effects of low frequency sinusoidal electric fields may involve induced changes in the physical state of charged cell surface receptors. We have used intensified fluorescence video microscopy to study the redistribution of cell surface receptors, including transferrin receptors (TFR) and low density lipoprotein receptors (LDL-R), in response to externally applied alternating current electric fields in the 3 to 23 V/cm range (peak to peak). Redistribution of both TFR and LDL-R was prominent at frequencies of 1 and 10 Hz but negligible at frequencies of 60 and 120 Hz. Application of a 1 Hz, 23 V/cm field for 15 min caused a twofold change in local TFR surface density, whereas application of a 60 Hz, 23 V/cm field resulted in no significant TFR redistribution. The extent of TFR redistribution induced by a 1 Hz field changed by only 20% over the field strength range from 3.5 to 23 V/cm. AC field-induced cell surface receptor migration did not consistently follow electric field lines, suggesting that mechanisms more complex than classical electrophoresis and electroosmosis mediate receptor redistribution. Joule heating and plasma membrane calcium channel activation were shown not to be involved in the mechanism of receptor redistribution. Applied external electric fields may reorganize cytoskeletal and plasma membrane structures, providing pathways for cell surface receptors to migrate anharmonically.

摘要

低频正弦电场生物效应背后的分子机制可能涉及带电细胞表面受体物理状态的诱导变化。我们使用增强荧光视频显微镜来研究细胞表面受体的重新分布,包括转铁蛋白受体(TFR)和低密度脂蛋白受体(LDL-R),以响应在3至23 V/cm范围内(峰峰值)外部施加的交变电流电场。TFR和LDL-R在1和10 Hz频率下的重新分布很明显,但在60和120 Hz频率下可忽略不计。施加1 Hz、23 V/cm的电场15分钟会导致局部TFR表面密度发生两倍的变化,而施加60 Hz、23 V/cm的电场则不会导致TFR明显重新分布。在3.5至23 V/cm的场强范围内,1 Hz电场诱导的TFR重新分布程度仅变化20%。交流电场诱导的细胞表面受体迁移并不总是沿着电场线,这表明介导受体重新分布的机制比经典的电泳和电渗更复杂。焦耳热和质膜钙通道激活被证明不参与受体重新分布机制。施加的外部电场可能会重组细胞骨架和质膜结构,为细胞表面受体非和谐迁移提供途径。

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