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电穿孔致 H9c2 大鼠心肌细胞系体外分子跨膜转运的脉宽依赖性不对称性。

Pulse Duration Dependent Asymmetry in Molecular Transmembrane Transport Due to Electroporation in H9c2 Rat Cardiac Myoblast Cells In Vitro.

机构信息

Faculty of Electrical Engineering, University of Ljubljana, Tržaška Cesta 25, 1000 Ljubljana, Slovenia.

出版信息

Molecules. 2021 Oct 30;26(21):6571. doi: 10.3390/molecules26216571.

Abstract

Electroporation (EP) is one of the successful physical methods for intracellular drug delivery, which temporarily permeabilizes plasma membrane by exposing cells to electric pulses. Orientation of cells in electric field is important for electroporation and, consequently, for transport of molecules through permeabilized plasma membrane. Uptake of molecules after electroporation are the greatest at poles of cells facing electrodes and is often asymmetrical. However, asymmetry reported was inconsistent and inconclusive-in different reports it was either preferentially anodal or cathodal. We investigated the asymmetry of polar uptake of calcium ions after electroporation with electric pulses of different durations, as the orientation of elongated cells affects electroporation to a different extent when using electric pulses of different durations in the range of 100 ns to 100 µs. The results show that with 1, 10, and 100 µs pulses, the uptake of calcium ions is greater at the pole closer to the cathode than at the pole closer to the anode. With shorter 100 ns pulses, the asymmetry is not observed. A different extent of electroporation at different parts of elongated cells, such as muscle or cardiac cells, may have an impact on electroporation-based treatments such as drug delivery, pulse-field ablation, and gene electrotransfection.

摘要

电穿孔(EP)是一种成功的将药物递送入细胞内的物理方法,通过向细胞施加电脉冲来暂时使细胞膜穿孔。细胞在电场中的取向对于电穿孔以及随后穿过穿孔的细胞膜的分子运输非常重要。在细胞的两极(面对电极的部位),电穿孔后分子的摄取量最大,且通常是不对称的。然而,已报道的不对称性不一致且没有定论——在不同的报告中,要么是优先的阳极,要么是阴极。我们研究了在不同持续时间的电脉冲下,钙离子在电穿孔后的极性摄取的不对称性,因为在 100ns 到 100µs 的范围内使用不同持续时间的电脉冲时,伸长细胞的取向会对电穿孔产生不同程度的影响。结果表明,在 1µs、10µs 和 100µs 的脉冲下,靠近阴极的极比靠近阳极的极吸收的钙离子更多。在较短的 100ns 脉冲下,没有观察到不对称性。在伸长的细胞(如肌肉或心肌细胞)的不同部位,电穿孔程度的不同可能会对基于电穿孔的治疗方法(如药物输送、脉冲场消融和基因电转染)产生影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6417/8588460/2d9a0c6d011c/molecules-26-06571-g001.jpg

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