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Vectorization of biomacromolecules into cells using extracellular vesicles with enhanced internalization induced by macropinocytosis

机译:用细胞外囊泡与大型细胞增强内化诱导的内化诱导的细胞外囊中的生物摩托细胞中的向量化

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Extracellular vesicles (EVs, exosomes) are approximately 30- to 200-nm-long vesicles that have received increased attention due to their role in cell-to-cell communication. Although EVs are highly anticipated to be a next-generation intracellular delivery tool because of their pharmaceutical advantages, including non-immunogenicity, their cellular uptake efficacy is low because of the repulsion of EVs and negatively charged cell membranes and size limitations in endocytosis. Here, we demonstrate a methodology for achieving enhanced cellular EV uptake using arginine-rich cell-penetrating peptides (CPPs) to induce active macropinocytosis. The induction of macropinocytosis via a simple modification to the exosomal membrane using stearylated octaarginine, which is a representative CPP, significantly enhanced the cellular EV uptake efficacy. Consequently, effective EV-based intracellular delivery of an artificially encapsulated ribosome-inactivating protein, saporin, in EVs was attained.
机译:细胞外囊泡(EVS,Exosomes)约为30-200nm的囊泡,其由于它们在细胞对细胞通信中的作用而受到增加的关注。虽然EVS高度预期是一个下一代细胞内输送工具,因为它们的药物优势,包括非免疫原性,它们的细胞摄取功效是低,因为对EV的排斥和带负电荷的细胞膜和内吞作用的大小限制。在这里,我们证明了一种使用精氨酸的细胞穿透肽(CPP)来实现增强的细胞EV摄取,以诱导活性大毒细胞增生。通过使用子化octaarninine对外泌体膜的简单改性诱导大型细胞增生,这是代表性CPP,显着增强了细胞再摄取功效。因此,达到了EVS中的有效的基于EV的细胞内递送人工包封的核糖体 - 灭活蛋白酶Saporin。

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