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工程化哺乳动物和细菌细胞外囊泡作为有前景的靶向治疗纳米载体。

Engineered mammalian and bacterial extracellular vesicles as promising nanocarriers for targeted therapy.

作者信息

Liu Han, Geng Zhen, Su Jiacan

机构信息

Authors contributed equally.

Institute of Translational Medicine, Shanghai University, Shanghai 200444, China.

出版信息

Extracell Vesicles Circ Nucl Acids. 2022 Apr 13;3(2):63-86. doi: 10.20517/evcna.2022.04. eCollection 2022.

Abstract

Extracellular vesicles (EVs), which are nanocarriers with phospholipid bilayer structures released by most cells, play a key role in regulating physiological and pathological processes. EVs have been investigated due to their loading capacity, low toxicity, immunogenicity, and biofunctions. Although EVs have shown good potential as therapeutic vehicles, natural EVs have a poor targeting ability, which substantially reduces the therapeutic effect. Through the addition of a targeting unit into the membrane surface of EVs or inside EVs by engineering technology, the therapeutic agent can accumulate in specific cells and tissues. Here, we focus on mammalian EVs (MEVs) and bacterial EVs (BEVs), which are the two most common types of EVs in the biomedical field. In this review, we describe engineered MEVs and BEVs as promising nanocarriers for targeted therapy and summarize the biogenesis, isolation, and characterization of MEVs and BEVs. We then describe engineering techniques for enhancement of the targeting ability of EVs. Moreover, we focus on the applications of engineered MEVs and BEVs in targeted therapy, including the treatment of cancer and brain and bone disease. We believe that this review will help improve the understanding of engineered MEVs and BEVs, thereby promoting their application and clinical translation.

摘要

细胞外囊泡(EVs)是大多数细胞释放的具有磷脂双层结构的纳米载体,在调节生理和病理过程中起关键作用。由于其负载能力、低毒性、免疫原性和生物功能,EVs已受到研究。尽管EVs作为治疗载体显示出良好的潜力,但天然EVs的靶向能力较差,这大大降低了治疗效果。通过工程技术在EVs的膜表面或内部添加靶向单元,治疗剂可以在特定细胞和组织中积累。在这里,我们重点关注哺乳动物细胞外囊泡(MEVs)和细菌细胞外囊泡(BEVs),它们是生物医学领域中最常见的两种EVs类型。在这篇综述中,我们将工程化的MEVs和BEVs描述为有前景的靶向治疗纳米载体,并总结MEVs和BEVs的生物发生、分离和表征。然后,我们描述增强EVs靶向能力的工程技术。此外,我们重点关注工程化的MEVs和BEVs在靶向治疗中的应用,包括癌症以及脑和骨疾病的治疗。我们相信,这篇综述将有助于提高对工程化MEVs和BEVs的理解,从而促进它们的应用和临床转化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8532/11648430/14a03399e9c9/evcna-3-2-63.fig.1.jpg

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