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冲击波诱导哺乳动物细胞的通透性增加。

Shock wave-induced permeabilization of mammalian cells.

机构信息

Centro de Física Aplicada y Tecnología Avanzada, Universidad Nacional Autónoma de México, Boulevard Juriquilla 3001, 76230 Querétaro, Qro., Mexico.

Instituto de Ciencias Nucleares & Centro de Ciencias de la Complejidad, Universidad Nacional Autónoma de México, Ciudad Universitaria, 04510 Ciudad de México, Mexico.

出版信息

Phys Life Rev. 2018 Nov;26-27:1-38. doi: 10.1016/j.plrev.2018.03.001. Epub 2018 Mar 21.

Abstract

Controlled permeabilization of mammalian cell membranes is fundamental to develop gene and cell therapies based on macromolecular cargo delivery, a process that emerged against an increasing number of health afflictions, including genetic disorders, cancer and infections. Viral vectors have been successfully used for macromolecular delivery; however, they may have unpredictable side effects and have been limited to life-threatening cases. Thus, several chemical and physical methods have been explored to introduce drugs, vaccines, and nucleic acids into cells. One of the most appealing physical methods to deliver genes into cells is shock wave-induced poration. High-speed microjets of fluid, emitted due to the collapse of microbubbles after shock wave passage, represent the most significant mechanism that contributes to cell membrane poration by this technique. Herein, progress in shock wave-induced permeabilization of mammalian cells is presented. After covering the main concepts related to molecular strategies whose applications depend on safer drug delivery methods, the physics behind shock wave phenomena is described. Insights into the use of shock waves for cell membrane permeation are discussed, along with an overview of the two major biomedical applications thereof-i.e., genetic modification and anti-cancer shock wave-assisted chemotherapy. The aim of this review is to summarize 30 years of data showing underwater shock waves as a safe, noninvasive method for macromolecular delivery into mammalian cells, encouraging the development of further research, which is still required before the introduction of this promising tool into clinical practice.

摘要

哺乳动物细胞膜的控制通透性对于开发基于大分子货物传递的基因和细胞疗法至关重要,这一过程针对越来越多的健康问题,包括遗传疾病、癌症和感染而出现。病毒载体已成功用于大分子传递;然而,它们可能具有不可预测的副作用,并且仅限于危及生命的情况。因此,已经探索了几种化学和物理方法将药物、疫苗和核酸引入细胞。将基因递送入细胞的最吸引人的物理方法之一是冲击波诱导的穿孔。由于冲击波通过后微泡的坍塌而发射的高速流体微射流是通过该技术导致细胞膜穿孔的最重要机制。本文介绍了冲击波诱导的哺乳动物细胞通透性的进展。在涵盖与依赖更安全药物递送方法的应用相关的分子策略的主要概念之后,描述了冲击波现象背后的物理学。讨论了冲击波在细胞膜渗透中的应用,并概述了其两个主要的生物医学应用,即基因修饰和抗癌冲击波辅助化疗。本综述的目的是总结 30 年来的数据,表明水下冲击波作为一种安全、非侵入性的方法将大分子递送入哺乳动物细胞,鼓励进一步研究,在将这一有前途的工具引入临床实践之前,还需要进一步研究。

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