Energy-Based Tumor Ablation Laboratory, School of Mechatronic Engineering and Automation, Shanghai University, Shanghai 200444, China.
Department of Neurosurgery, Huashan Hospital Shanghai Medical College, Fudan University, Shanghai 200040, China.
J Biomech Eng. 2021 Oct 1;143(10). doi: 10.1115/1.4051184.
Electroporation-based therapy (EBT), as a high-voltage-pulse technology has been prevalent with favorable clinical outcomes in the treatment of various solid tumors. This review paper aims to promote the clinical translation of EBT for brain tumors. First, we briefly introduced the mechanism of pore formation in a cell membrane activated by external electric fields using a single cell model. Then, we summarized and discussed the current in vitro and in vivo preclinical studies, in terms of (1) the safety and effectiveness of EBT for brain tumors in animal models, and (2) the blood-brain barrier (BBB) disruption induced by EBT. Two therapeutic effects could be achieved in EBT for brain tumors simultaneously, i.e., the tumor ablation induced by irreversible electroporation (IRE) and transient BBB disruption induced by reversible electroporation (RE). The BBB disruption could potentially improve the uptake of antitumor drugs thereby enhancing brain tumor treatment. The challenges that hinder the application of EBT in the treatment of human brain tumors are discussed in the review paper as well.
电穿孔治疗(EBT)作为一种高压脉冲技术,在治疗各种实体瘤方面取得了良好的临床效果。本文旨在促进电穿孔治疗脑肿瘤的临床转化。首先,我们简要介绍了利用单细胞模型激活细胞膜形成孔的机制。然后,我们总结和讨论了目前的体外和体内临床前研究,包括(1)EBT 在动物模型中的安全性和有效性,以及(2)EBT 诱导的血脑屏障(BBB)破坏。EBT 可同时实现两种治疗效果,即不可逆电穿孔(IRE)诱导的肿瘤消融和可逆电穿孔(RE)诱导的短暂 BBB 破坏。BBB 破坏可能会增加抗肿瘤药物的摄取,从而增强脑肿瘤的治疗效果。本文还讨论了阻碍 EBT 在人类脑肿瘤治疗中应用的挑战。