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细菌膜泡的两面性:病理生理作用与治疗机遇

The Two Faces of Bacterial Membrane Vesicles: Pathophysiological Roles and Therapeutic Opportunities.

作者信息

Thapa Himadri B, Ebenberger Stephan P, Schild Stefan

机构信息

Institute of Molecular Biosciences, University of Graz, Humboldtstrasse 50, 8010 Graz, Austria.

BioTechMed Graz, 8010 Graz, Austria.

出版信息

Antibiotics (Basel). 2023 Jun 14;12(6):1045. doi: 10.3390/antibiotics12061045.

Abstract

Bacterial membrane vesicles (MVs) are nanosized lipid particles secreted by lysis or blebbing mechanisms from Gram-negative and -positive bacteria. It is becoming increasingly evident that MVs can promote antimicrobial resistance but also provide versatile opportunities for therapeutic exploitation. As non-living facsimiles of parent bacteria, MVs can carry multiple bioactive molecules such as proteins, lipids, nucleic acids, and metabolites, which enable them to participate in intra- and interspecific communication. Although energetically costly, the release of MVs seems beneficial for bacterial fitness, especially for pathogens. In this review, we briefly discuss the current understanding of diverse MV biogenesis routes affecting MV cargo. We comprehensively highlight the physiological functions of MVs derived from human pathogens covering in vivo adaptation, colonization fitness, and effector delivery. Emphasis is given to recent findings suggesting a vicious cycle of MV biogenesis, pathophysiological function, and antibiotic therapy. We also summarize potential therapeutical applications, such as immunotherapy, vaccination, targeted delivery, and antimicrobial potency, including their experimental validation. This comparative overview identifies common and unique strategies for MV modification used along diverse applications. Thus, the review summarizes timely aspects of MV biology in a so far unprecedented combination ranging from beneficial function for bacterial pathogen survival to future medical applications.

摘要

细菌膜泡(MVs)是革兰氏阴性菌和阳性菌通过裂解或出泡机制分泌的纳米级脂质颗粒。越来越明显的是,MVs既能促进抗菌抗性,也能为治疗开发提供多种机会。作为亲代细菌的无生命复制品,MVs可以携带多种生物活性分子,如蛋白质、脂质、核酸和代谢物,这使它们能够参与种内和种间通讯。尽管能量消耗巨大,但MVs的释放似乎对细菌适应性有益,尤其是对病原体。在这篇综述中,我们简要讨论了目前对影响MVs货物的多种MV生物发生途径的理解。我们全面强调了源自人类病原体的MVs的生理功能,包括体内适应、定植适应性和效应物递送。重点是最近的研究结果,这些结果表明MV生物发生、病理生理功能和抗生素治疗存在恶性循环。我们还总结了潜在的治疗应用,如免疫治疗、疫苗接种、靶向递送和抗菌效力,包括它们的实验验证。这一比较性综述确定了不同应用中使用的MV修饰的常见和独特策略。因此,本综述以前所未有的组合总结了MV生物学的及时方面,从对细菌病原体生存的有益功能到未来的医学应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9511/10295235/80a12c6cf5eb/antibiotics-12-01045-g001.jpg

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