外膜囊泡是治疗方法的多功能工具。

microLife Pub Date : 2021-06-08 eCollection Date: 2021-01-01 DOI:10.1093/femsml/uqab006
Franz G Zingl, Deborah R Leitner, Himadri B Thapa, Stefan Schild
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引用次数: 0

摘要

细菌表面的芽生会导致外膜囊泡的形成和分泌,这是革兰氏阴性细菌中的一种常见现象。最近的研究强调,这些球形的供体细菌表面的仿制品,带有封闭的外质内容物,可为其宿主细菌提供多种用途。其中包括菌种间和菌种内的细胞-细胞通讯、向靶细胞输送效应物质以及细菌适应策略。本综述简要概述了利用外膜囊泡进行治疗的潜在医学应用。由于外膜囊泡与其供体细胞表面相似,因此是开发疫苗的有趣非生物候选物。此外,还可以通过基因工程改造细菌供体物种,使其在外膜囊泡表面或内腔中显示各种感兴趣的蛋白质和聚糖。外膜囊泡还具有宝贵的生物反应器特性,因为它们具有保护、稳定和增强腔内酶活性的天然能力。根据这些特点,外膜囊泡不仅可能适用于生物技术应用,而且还可能实现细胞特异性递送所设计的治疗药物,因为它们能被非专业吞噬细胞有效内化。最后,外膜囊泡是我们免疫系统的有效调节剂,具有促炎和抗炎特性。更深入地了解不同外膜囊泡的免疫调节作用,是它们未来可能的应用(从炎症和免疫反应调节到抗癌治疗)的基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Outer membrane vesicles as versatile tools for therapeutic approaches.

Outer membrane vesicles as versatile tools for therapeutic approaches.

Budding of the bacterial surface results in the formation and secretion of outer membrane vesicles, which is a conserved phenomenon observed in Gram-negative bacteria. Recent studies highlight that these sphere-shaped facsimiles of the donor bacterium's surface with enclosed periplasmic content may serve multiple purposes for their host bacterium. These include inter- and intraspecies cell-cell communication, effector delivery to target cells and bacterial adaptation strategies. This review provides a concise overview of potential medical applications to exploit outer membrane vesicles for therapeutic approaches. Due to the fact that outer membrane vesicles resemble the surface of their donor cells, they represent interesting nonliving candidates for vaccine development. Furthermore, bacterial donor species can be genetically engineered to display various proteins and glycans of interest on the outer membrane vesicle surface or in their lumen. Outer membrane vesicles also possess valuable bioreactor features as they have the natural capacity to protect, stabilize and enhance the activity of luminal enzymes. Along these features, outer membrane vesicles not only might be suitable for biotechnological applications but may also enable cell-specific delivery of designed therapeutics as they are efficiently internalized by nonprofessional phagocytes. Finally, outer membrane vesicles are potent modulators of our immune system with pro- and anti-inflammatory properties. A deeper understanding of immunoregulatory effects provoked by different outer membrane vesicles is the basis for their possible future applications ranging from inflammation and immune response modulation to anticancer therapy.

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