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脉冲施加过程中的温度效应及其对细胞膜流动性和通透性的影响。

The temperature effect during pulse application on cell membrane fluidity and permeabilization.

作者信息

Kanduser M, Sentjurc M, Miklavcic D

机构信息

University of Ljubljana, Faculty of Electrical Engineering, Trzaska 25, SI-1000 Ljubljana, Slovenia.

出版信息

Bioelectrochemistry. 2008 Nov;74(1):52-7. doi: 10.1016/j.bioelechem.2008.04.012. Epub 2008 Apr 16.

Abstract

Cell membrane permeabilization is caused by the application of high intensity electric pulses of short duration. The extent of cell membrane permeabilization depends on electric pulse parameters, characteristics of the electropermeabilization media and properties of cells exposed to electric pulses. In the present study, the temperature effect during pulse application on cell membrane fluidity and permeabilization was determined in two different cell lines: V-79 and B16F-1. While cell membrane fluidity was determined by electron paramagnetic resonance (EPR) method, the cell membrane electropermeabilization was determined by uptake of bleomycin and clonogenic assay. A train of eight rectangular pulses with the amplitude of 500 V/cm, 700 V/cm and 900 V/cm in the duration of 100 micros and with repetition frequency 1 Hz was applied. Immediately after the pulse application, 50 microl droplet of cell suspension was maintained at room temperature in order to allow cell membrane resealing. The cells were then plated for clonogenic assay. The main finding of this study is that the chilling of cell suspension from physiological temperature (of 37 degrees C) to 4 degrees C has significant effect on cell membrane electropermeabilization, leading to lower percent of cell membrane permeabilization. The differences are most pronounced when cells are exposed to electric pulse amplitude of 900 V/cm. At the same time with the decreasing of temperature, the cell membranes become less fluid, with higher order parameters in all three types of domains and higher proportion of domain with highest order parameter. Our results indicate that cell membrane fluidity and domain structure influence the electropermeabilization of cells, however it seems that some other factors may have contributing role.

摘要

细胞膜通透性的改变是由短时间高强度电脉冲的施加引起的。细胞膜通透性的程度取决于电脉冲参数、电穿孔介质的特性以及暴露于电脉冲的细胞特性。在本研究中,在两种不同的细胞系V - 79和B16F - 1中测定了脉冲施加过程中的温度对细胞膜流动性和通透性的影响。通过电子顺磁共振(EPR)方法测定细胞膜流动性,通过博来霉素摄取和克隆形成试验测定细胞膜电穿孔情况。施加一系列八个矩形脉冲,幅度分别为500 V/cm、700 V/cm和900 V/cm,持续时间为100微秒,重复频率为1 Hz。脉冲施加后,立即将50微升细胞悬液在室温下保持,以允许细胞膜重新封闭。然后将细胞接种用于克隆形成试验。本研究的主要发现是,细胞悬液从生理温度(37摄氏度)冷却到4摄氏度对细胞膜电穿孔有显著影响,导致细胞膜通透性百分比降低。当细胞暴露于900 V/cm的电脉冲幅度时,差异最为明显。同时,随着温度降低,细胞膜流动性降低,在所有三种类型的结构域中有序参数更高,且具有最高有序参数的结构域比例更高。我们的结果表明,细胞膜流动性和结构域结构影响细胞的电穿孔,然而似乎还有其他一些因素可能起作用。

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