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细菌细胞外囊泡在再生医学中的机遇与挑战

Opportunities and challenges of bacterial extracellular vesicles in regenerative medicine.

作者信息

Guo Jiming, Huang Zhijie, Wang Qinjing, Wang Min, Ming Yue, Chen Weixing, Huang Yisheng, Tang Zhengming, Huang Mingshu, Liu Hongyu, Jia Bo

机构信息

Stomatological Hospital, School of Stomatology, Southern Medical University, Guangzhou, Guangdong, China.

出版信息

J Nanobiotechnology. 2025 Jan 3;23(1):4. doi: 10.1186/s12951-024-02935-1.

Abstract

Extracellular vesicles (EVs) are membrane-bound vesicles that are shed or secreted from the cell membrane and enveloped by a lipid bilayer. They possess stability, low immunogenicity, and non-cytotoxicity, exhibiting extensive prospects in regenerative medicine (RM). However, natural EVs pose challenges, such as insufficient targeting capabilities, potential biosafety concerns, and limited acquisition pathways. Although engineered EVs demonstrate excellent therapeutic efficacy, challenges such as low production yield and the complexity of engineering modifications constrain their further clinical applications. Bacteria have advantages such as rapid proliferation, diverse gene editing methods, mature cultivation techniques, and relatively easy preparation of bacterial EVs (BEVs), which can be used to effectively address the challenges currently encountered in the field of EVs. This review provides a description of the biogenesis and pathophysiological functions of BEVs, and strategies for optimizing BEVs preparation to attain efficiency and safety are discussed. An analysis of natural characteristics of BEVs is also conducted to explore how to leverage their advantages or mitigate their limitations, thereby overcoming constraints on the application of BEVs in RM. In summary, engineered BEVs possess characteristics such as high production yield, excellent stability, and high drug-delivering capabilities, laying the foundation for their application in RM.

摘要

细胞外囊泡(EVs)是从细胞膜脱落或分泌的膜结合囊泡,被脂质双层包裹。它们具有稳定性、低免疫原性和无细胞毒性,在再生医学(RM)中展现出广阔前景。然而,天然EVs存在一些挑战,如靶向能力不足、潜在的生物安全问题以及获取途径有限。尽管工程化EVs显示出优异的治疗效果,但诸如低产量和工程修饰的复杂性等挑战限制了它们进一步的临床应用。细菌具有快速增殖、多样的基因编辑方法、成熟的培养技术以及相对容易制备细菌细胞外囊泡(BEVs)等优势,可用于有效应对当前EVs领域遇到的挑战。本文综述了BEVs的生物发生和病理生理功能,并讨论了优化BEVs制备以实现效率和安全性的策略。还对BEVs的天然特性进行了分析,以探索如何利用其优势或减轻其局限性,从而克服BEVs在RM应用中的限制。总之,工程化BEVs具有高产量、优异的稳定性和高药物递送能力等特点,为其在RM中的应用奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b436/11697683/92dc10173565/12951_2024_2935_Fig1_HTML.jpg

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