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Membrane-Potential-Induced Electroporation as a Physical Mechanism for Metal Nanoparticle Penetration through a Cell Membrane

机译:膜电位诱导的电穿孔作为通过细胞膜穿透金属纳米粒子的物理机制。

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摘要

A mechanism of the penetration of nanosized metal particles from an ambient solution into the cytoplasm of a living cell, has been proposed. The driving force of this new mechanism is membrane potential, i.e., the potential difference between the cellular cytoplasm and the ambient solution. The essence of the mechanism consists in the fact that a metal particle occurring at a cell membrane shunts the potential drop in the diffuse part of the electrical double layer of the membrane. As a result, almost the entire membrane potential, which, at a normal state of the cell, is distributed between its electrical double layer and the lipid bilayer of the cell membrane, appears to be completely applied to the latter. As a consequence, the field strength in the lipid bilayer rises, thereby increasing the probability of the formation of a pore in it, through which a metal particle with a diameter lying in a certain range (in the case under consideration, from two to three tens of nanometers) can penetrate into the cytoplasm without inflicting any damage on the cell.
机译:已经提出了纳米金属颗粒从环境溶液渗透到活细胞的细胞质中的机制。这种新机制的驱动力是膜电位,即细胞质与周围溶液之间的电位差。该机制的实质在于,存在于细胞膜上的金属颗粒会分流膜双电层扩散部分的电势降。结果,在细胞的正常状态下分布在其电双层和细胞膜的脂质双层之间的几乎整个膜电位似乎完全施加到了后者。结果,脂质双层中的场强增加,从而增加了在其中形成孔的可能性,直径在一定范围内的金属颗粒(在考虑的情况下为2至3)通过该孔形成孔几十纳米)可以渗透到细胞质中而不会对细胞造成任何损害。

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