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滤泡树突状细胞向同源 B 细胞呈递抗原对于广义膜抗原(GMMA)的免疫原性至关重要。

Antigen presentation by Follicular Dendritic cells to cognate B cells is pivotal for Generalised Modules for Membrane Antigens (GMMA) immunogenicity.

机构信息

GSK, Siena, Italy.

GSK Vaccine Institute for Global Health (GVGH), Siena, Italy.

出版信息

Vaccine. 2022 Oct 19;40(44):6305-6314. doi: 10.1016/j.vaccine.2022.09.034. Epub 2022 Sep 20.

DOI:10.1016/j.vaccine.2022.09.034
PMID:36137901
Abstract

GMMA has been proposed as a potent technology platform for the design of safe, effective and affordable vaccines. As GMMA are vesicles blebbing out of the outer membrane of Gram-negative bacteria, they contain lipopolysaccharides, lipoproteins and peptidoglycans that stimulate immune cells via Toll-like Receptors 4 (TLR4) or TLR2. Being basically nanoparticles, GMMA can be efficiently captured by Follicular Dendritic Cells (FDC) for antigen presentation to cognate B cells. GMMA have shown to be highly immunogenic in preclinical and clinical studies and the engagement of TLR4 and TLR2 or antigen presentation by FDC may have a prominent role in GMMA immunogenicity, which is well worth investigating. By using GMMA derived from Shigella sonnei and Salmonella Typhimurium, we show for the first time that the antigen presentation by FDC to cognate B cells plays a major role in the induction of an effective humoral immune response upon immunization with GMMA by using both models. The engagement of TLR4 is critical to elicit an optimal antibody production, but its effect on antibody functionality is dependent on GMMA type and is dispensable when immunizing with Alum adjuvant, whereas TLR2 does not have any role for GMMA immunogenicity. Our findings represent a substantial advancement of the knowledge on GMMA mode of action and shed a light on novel perspectives for the design of safer and more effective GMMA-based vaccines. ONE SENTENCE SUMMARY: The study demonstrated that the antigen presentation by FDC to cognate B cells plays a major role for GMMA immunogenicity.

摘要

GMMA 已被提议作为设计安全、有效和负担得起的疫苗的有力技术平台。由于 GMMA 是从革兰氏阴性菌的外膜上泡状突出的囊泡,因此它们包含脂多糖、脂蛋白和肽聚糖,通过 Toll 样受体 4 (TLR4) 或 TLR2 刺激免疫细胞。作为基本的纳米颗粒,GMMA 可以被滤泡树突状细胞 (FDC) 有效捕获,用于将抗原呈递给同源 B 细胞。GMMA 在临床前和临床研究中显示出高度的免疫原性,TLR4 和 TLR2 的参与或 FDC 的抗原呈递可能在 GMMA 的免疫原性中发挥突出作用,这非常值得研究。通过使用来源于志贺氏菌和伤寒沙门氏菌的 GMMA,我们首次表明,FDC 对同源 B 细胞的抗原呈递在使用两种模型进行 GMMA 免疫时诱导有效的体液免疫反应中起着主要作用。TLR4 的参与对于引发最佳的抗体产生至关重要,但它对抗体功能的影响取决于 GMMA 类型,并且在使用 Alum 佐剂免疫时是可有可无的,而 TLR2 对于 GMMA 的免疫原性没有任何作用。我们的发现代表了对 GMMA 作用模式的知识的重大进展,并为设计更安全、更有效的 GMMA 疫苗提供了新的视角。一句话总结:该研究表明,FDC 对同源 B 细胞的抗原呈递在 GMMA 的免疫原性中起着主要作用。

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