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作为佐剂的细菌幽灵:作用机制与潜力

Bacterial ghosts as adjuvants: mechanisms and potential.

作者信息

Hajam Irshad A, Dar Pervaiz A, Won Gayeon, Lee John Hwa

机构信息

College of Veterinary Medicine, Chonbuk National University, Iksan, 54596, Republic of Korea.

Department of Medicine, College of Medicine and Life Sciences, University of Toledo, Toledo, OH, 43614, USA.

出版信息

Vet Res. 2017 Jun 24;48(1):37. doi: 10.1186/s13567-017-0442-5.

Abstract

Bacterial ghosts (BG) are empty cell envelopes derived from Gram-negative bacteria. They contain many innate immunostimulatory agonists, and are potent activators of a broad range of cell types involved in innate and adaptive immunity. Several considerable studies have demonstrated the effectiveness of BG as adjuvants as well as their ability to induce proinflammatory cytokine production by a range of immune and non-immune cell types. These proinflammatory cytokines trigger a generalized recruitment of T and B lymphocytes to lymph nodes that maximize the chances of encounter with their cognate antigen, and subsequent elicitation of potent immune responses. The plasticity of BG has allowed for the generation of envelope-bound foreign antigens in immunologically active forms that have proven to be effective vaccines in animal models. Besides their adjuvant property, BG also effectively deliver DNA-encoded antigens to dendritic cells, thereby leading to high transfection efficiencies, which subsequently result in higher gene expressions and improved immunogenicity of DNA-based vaccines. In this review, we summarize our understanding of BG interactions with the host immune system, their exploitation as an adjuvant and a delivery system, and address important areas of future research interest.

摘要

细菌幽灵(BG)是源自革兰氏阴性菌的空细胞包膜。它们含有许多天然免疫刺激激动剂,是参与先天免疫和适应性免疫的多种细胞类型的有效激活剂。多项重要研究已证明BG作为佐剂的有效性,以及它们诱导多种免疫和非免疫细胞类型产生促炎细胞因子的能力。这些促炎细胞因子引发T和B淋巴细胞向淋巴结的广泛募集,从而最大限度地增加与同源抗原相遇的机会,并随后引发有效的免疫反应。BG的可塑性使得能够产生免疫活性形式的包膜结合外来抗原,这些抗原在动物模型中已被证明是有效的疫苗。除了其佐剂特性外,BG还能有效地将DNA编码抗原递送至树突状细胞,从而实现高转染效率,进而导致更高的基因表达和基于DNA的疫苗免疫原性的改善。在这篇综述中,我们总结了对BG与宿主免疫系统相互作用的理解、它们作为佐剂和递送系统的应用,并探讨了未来研究感兴趣的重要领域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3496/5482964/8e1d9f406136/13567_2017_442_Fig1_HTML.jpg

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