He Stephanie, Singh Davindra, Helfield Brandon
Department of Biology, Concordia University, Montreal, QC H4B 1R6, Canada.
Department of Physics, Concordia University, Montreal, QC H4B 1R6, Canada.
Pharmaceutics. 2022 Apr 18;14(4):886. doi: 10.3390/pharmaceutics14040886.
Localized and reversible plasma membrane disruption is a promising technique employed for the targeted deposition of exogenous therapeutic compounds for the treatment of disease. Indeed, the plasma membrane represents a significant barrier to successful delivery, and various physical methods using light, sound, and electrical energy have been developed to generate cell membrane perforations to circumvent this issue. To restore homeostasis and preserve viability, localized cellular repair mechanisms are subsequently triggered to initiate a rapid restoration of plasma membrane integrity. Here, we summarize the known emergency membrane repair responses, detailing the salient membrane sealing proteins as well as the underlying cytoskeletal remodeling that follows the physical induction of a localized plasma membrane pore, and we present an overview of potential modulation strategies that may improve targeted drug delivery approaches.
局部性和可逆性的质膜破坏是一种很有前景的技术,用于将外源性治疗化合物靶向递送至病灶以治疗疾病。实际上,质膜是成功递送的重大障碍,人们已开发出各种利用光、声和电能的物理方法来制造细胞膜穿孔,以规避这一问题。为了恢复体内平衡并维持细胞活力,随后会触发局部细胞修复机制,以快速恢复质膜完整性。在此,我们总结了已知的应急膜修复反应,详细介绍了显著的膜封闭蛋白以及局部质膜孔物理诱导后发生的潜在细胞骨架重塑,并概述了可能改善靶向药物递送方法的潜在调节策略。