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Surface-Mediated Intracellular Delivery by Physical Membrane Disruption

机译:表面介导的细胞内递送通过物理膜破坏

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Effective and nondestructive intracellular delivery of exogenous molecules and other functional materials into living cells is of importance for diverse biological fundamental research and therapeutic applications, such as gene editing and cell-based therapies. However, for most exogenous molecules, the cell plasma membrane is effectively impermeable and thus remains the greatest barrier to intracellular delivery. In recent years, methods based on surface-mediated physical membrane disruption have attracted considerable attention. These methods exploit the physical properties of the surface to transiently increase the membrane permeability of cells come in contact thereto, thereby facilitating the efficient intracellular delivery of molecules regardless of molecule or target cell type. In this Review, we focus on recent progress, particularly over the past decade, on these surface-mediated membrane disruption-based delivery systems. According to the membrane disruption mechanism, three categories can be recognized: (i) mechanical penetration, (ii) electroporation, and (iii) photothermal poration. Each of these is discussed in turn and a brief perspective on future developments in this promising area is presented.
机译:对生物细胞的外源分子和其他功能材料的有效和无损细胞内递送对不同的生物基础研究和治疗应用,例如基因编辑和基于细胞的疗法是重要的。然而,对于大多数外源分子,细胞血浆膜具有有效的不可渗透,因此仍然是细胞内递送的最大障碍。近年来,基于表面介导的物理膜中断的方法引起了相当大的关注。这些方法利用表面的物理性质瞬时增加,增加细胞的膜渗透性与其接触,从而促进了分子的有效细胞内递送,无论分子或靶细胞类型如何。在这篇综述中,我们专注于最近的进展,特别是过去十年,在这些表面介导的基于膜中断的递送系统上。根据膜破坏机制,可以识别出三类:(i)机械穿透,(ii)电穿孔,(iii)光热成对。反过来讨论了这些中的每一个,并介绍了对未来未来的未来发展中的未来发展。

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