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Prospects and challenges of extracellular vesicle-based drug delivery system: considering cell source

机译:基于细胞外囊泡药物递送系统的前景与挑战:考虑细胞来源

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Extracellular vesicles (EVs), including exosomes, microvesicles, and apoptotic bodies, are nanosized membrane vesicles derived from most cell types. Carrying diverse biomolecules from their parent cells, EVs are important mediators of intercellular communication and thus play significant roles in physiological and pathological processes. Owing to their natural biogenesis process, EVs are generated with high biocompatibility, enhanced stability, and limited immunogenicity, which provide multiple advantages as drug delivery systems (DDSs) over traditional synthetic delivery vehicles. EVs have been reported to be used for the delivery of siRNAs, miRNAs, protein, small molecule drugs, nanoparticles, and CRISPR/Cas9 in the treatment of various diseases. As a natural drug delivery vectors, EVs can penetrate into the tissues and be bioengineered to enhance the targetability. Although EVs’ characteristics make them ideal for drug delivery, EV-based drug delivery remains challenging, due to lack of standardized isolation and purification methods, limited drug loading efficiency, and insufficient clinical grade production. In this review, we summarized the current knowledge on the application of EVs as DDS from the perspective of different cell origin and weighted the advantages and bottlenecks of EV-based DDS.
机译:细胞外囊泡(EVS),包括外泌体,微泡和凋亡体,是衍生自大多数细胞类型的纳米膜囊泡。从他们的亲本细胞携带各种生物分子,EVS是细胞间通信的重要介质,从而在生理和病理过程中发挥重大作用。由于它们的天然生物生成过程,EVS以高生物相容性,增强的稳定性和大量免疫原性产生,这为传统的合成送货车上的药物递送系统(DDS)提供了多种优势。据报道,EVS用于递送SIRNA,MIRNA,蛋白质,小分子药物,纳米粒子和CRISPR / CAS9,治疗各种疾病。作为天然药物递送载体,EVS可以渗透到组织中并进行生物工程以增强靶向性。虽然EVS的特点使其成为药物递送的理想选择,但由于缺乏标准化的分离和纯化方法,有限的药物负载效率,并且临床级生产不足,因此EV的药物递送仍然具有挑战性。在本次审查中,我们总结了目前从不同细胞来源的角度作为DDS应用EVS应用的知识,并加权EV基DDS的优点和瓶颈。

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