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化学增强不可逆电穿孔:综述与未来建议。

Chemical Enhancement of Irreversible Electroporation: A Review and Future Suggestions.

机构信息

School of Mechanical and Power Engineering, East China University of Science and Technology, Shanghai, China.

Department of Surgery, University of Saskatchewan, Saskatoon, Canada.

出版信息

Technol Cancer Res Treat. 2019 Jan 1;18:1533033819874128. doi: 10.1177/1533033819874128.

Abstract

Irreversible electroporation has raised great interest in the past decade as a means of destroying cancers in a way that does not involve heat. Irreversible electroporation is a novel ablation technology that uses short high-voltage electrical pulses to enhance the permeability of tumor cell membranes and generate irreversible nano-sized structural defects or pores, thus leading to cell death. Irreversible electroporation has many advantages over thermal therapies due to its nonthermal mechanism: (1) reduced risk of injury to surrounding organs and (2) no "heat-sink" effect due to nearby blood vessels. However, so far, it has been difficult for irreversible electroporation to completely ablate large tumors (eg, >3 cm in diameter). In order to overcome this problem, many preclinical and clinical studies have been performed to improve the efficacy of IRE in the treatment of large size of tumors through a chemical perspective. Due to the distribution of electric field, irreversible electroporation region, reversible electroporation region, and intact region can be found in the treatment of irreversible electroporation. Thus, 2 types of chemical enhancements of irreversible electroporation were discussed in the article, such as the reversible electroporation region enhanced and the irreversible electroporation region enhanced. Specifically, the state-of-the-art results regarding the following approaches that have the potential to be used in the enhancement of irreversible electroporation were systematically reviewed in the article, including (1) combination with cytotoxic drugs, (2) calcium electroporation, (3) modification of cell membrane, and (4) modification of the tumor cell microenvironment. In the end, we concluded with 4 issues that should be addressed in the future for improving irreversible electroporation further in a chemical way.

摘要

在过去的十年中,不可逆电穿孔作为一种不涉及热的方法来破坏癌症而引起了极大的兴趣。不可逆电穿孔是一种新型的消融技术,它使用短的高压电脉冲来增强肿瘤细胞膜的通透性,并产生不可逆的纳米级结构缺陷或孔,从而导致细胞死亡。与热疗相比,不可逆电穿孔具有许多优势,因为它是非热机制:(1)降低了周围器官损伤的风险,(2)由于附近的血管不存在“热阱”效应。然而,到目前为止,不可逆电穿孔很难完全消融大肿瘤(例如,直径> 3 厘米)。为了克服这个问题,已经进行了许多临床前和临床研究,从化学角度出发,通过化学方法提高 IRE 在治疗大尺寸肿瘤中的疗效。由于电场的分布,不可逆电穿孔区域、可逆电穿孔区域和完整区域可以在不可逆电穿孔的治疗中找到。因此,文章讨论了 2 种不可逆电穿孔的化学增强方式,如可逆电穿孔区域增强和不可逆电穿孔区域增强。具体来说,本文系统地综述了以下几种具有增强不可逆电穿孔潜力的方法的最新研究结果,包括(1)与细胞毒性药物联合使用,(2)钙电穿孔,(3)细胞膜修饰,和(4)肿瘤细胞微环境的修饰。最后,我们总结了未来在化学方法上进一步改进不可逆电穿孔时需要解决的 4 个问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/852d/6737874/9644e147d6f4/10.1177_1533033819874128-fig1.jpg

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