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The Bilayer Lipid Membrane (BLM) Under Electrical Fields

机译:电场作用下的双层脂质膜(BLM)

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Trans membrane voltage pulses are known to create transient "pores" in the lipid bilayer. This phenomenon, termed electroporation (EP), has been extensively investigated. EP occurs following electric field pulses of up to 10{sup}6 V/cm with duration between μs and ms to membranes in close contact and is believed to initiate primarily in the lipid bilayer. This paper begins with a brief summary of the origin of lipid bilayer research. One of practical applications of EP is cell transfection for gene expression. Other applications include encapsulation of drugs in controlled-release and insertion of proteins in living cells. It seems likely that the presence of membrane proteins affect the EP of the lipid bilayer by changing its mechanical properties. Transport of ions such as Na{sup}+, K{sup}+, Cl{sup}- through membrane channels discharge the membrane potential, and at times an external pulse of sufficient amplitude and duration tends to cause dielectric breakdown of the lipid bilayer. Molecular transport through primary pores and pores enlarged by secondary processes provides the basis for transporting molecules into and out of cells. Some recent relevant papers on BLM under electric fields are referenced.
机译:已知跨膜电压脉冲会在脂质双层中产生瞬态“孔”。这种现象被称为电穿孔(EP),已经得到了广泛的研究。 EP继高达10 {sup} 6 V / cm的电场脉冲之后发生,持续时间在μs和ms之间,持续到与紧密接触的膜,并且据信主要在脂质双层中引发。本文首先简要概述了脂质双层研究的起源。 EP的实际应用之一是用于基因表达的细胞转染。其他应用包括将药物封装在控制释放中以及在活细胞中插入蛋白质。似乎膜蛋白的存在可能会通过改变其机械性能来影响脂质双层的EP。诸如Na {sup} +,K {sup} +,Cl {sup}-之类的离子通过膜通道的传输会释放膜电位,并且有时外部脉冲的幅度和持续时间会导致脂质双层的介电击穿。通过主要孔的分子运输和通过次级过程扩大的孔为分子进出细胞提供了基础。参考了有关电场下BLM的一些最新相关论文。

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