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多抗原外膜囊泡工程开发多价疫苗:案例。

Multi-Antigen Outer Membrane Vesicle Engineering to Develop Polyvalent Vaccines: The Case.

机构信息

Department of Cellular, Computational and Integrative Biology, University of Trento, Trento, Italy.

ERC Vaccibiome Unit, Toscana Life Sciences Foundation, Siena, Italy.

出版信息

Front Immunol. 2021 Nov 8;12:752168. doi: 10.3389/fimmu.2021.752168. eCollection 2021.

Abstract

Modification of surface antigens and differential expression of virulence factors are frequent strategies pathogens adopt to escape the host immune system. These escape mechanisms make pathogens a "moving target" for our immune system and represent a challenge for the development of vaccines, which require more than one antigen to be efficacious. Therefore, the availability of strategies, which simplify vaccine design, is highly desirable. Bacterial Outer Membrane Vesicles (OMVs) are a promising vaccine platform for their built-in adjuvanticity, ease of purification and flexibility to be engineered with foreign proteins. However, data on if and how OMVs can be engineered with multiple antigens is limited. In this work, we report a multi-antigen expression strategy based on the co-expression of two chimeras, each constituted by head-to-tail fusions of immunogenic proteins, in the same OMV-producing strain. We tested the strategy to develop a vaccine against , a Gram-positive human pathogen responsible for a large number of community and hospital-acquired diseases. Here we describe an OMV-based vaccine in which four virulent factors, ClfA, LukE, SpA and Hla have been co-expressed in the same OMVs (CLSH-OMVs). The vaccine elicited antigen-specific antibodies with functional activity, as judged by their capacity to promote opsonophagocytosis and to inhibit Hla-mediated hemolysis, LukED-mediated leukocyte killing, and ClfA-mediated binding to fibrinogen. Mice vaccinated with CLSH-OMVs were robustly protected from challenge in the skin, sepsis and kidney abscess models. This study not only describes a generalized approach to develop easy-to-produce and inexpensive multi-component vaccines, but also proposes a new tetravalent vaccine candidate ready to move to development.

摘要

表面抗原的修饰和毒力因子的差异表达是病原体逃避宿主免疫系统的常见策略。这些逃避机制使病原体成为我们免疫系统的“移动目标”,这对疫苗的开发构成了挑战,因为疫苗需要不止一种抗原才能有效。因此,需要有更简单的疫苗设计策略。细菌外膜囊泡(OMVs)是一种很有前途的疫苗平台,因为它们具有内在的佐剂特性、易于纯化以及可以与外源蛋白灵活结合的特性。然而,关于 OMVs 是否可以与多种抗原结合以及如何结合的信息有限。在这项工作中,我们报告了一种基于两种嵌合体共表达的多抗原表达策略,每个嵌合体由免疫原性蛋白的头尾融合组成,在同一产生 OMV 的菌株中。我们测试了该策略用于开发针对 的疫苗, 是一种革兰氏阳性人类病原体,可导致大量社区获得性和医院获得性疾病。在这里,我们描述了一种基于 OMV 的疫苗,其中四种 毒力因子,ClfA、LukE、SpA 和 Hla 在相同的 OMV 中共同表达(CLSH-OMVs)。该疫苗诱导产生具有功能活性的抗原特异性抗体,其判断依据是它们促进调理吞噬作用的能力,以及抑制 Hla 介导的溶血、LukED 介导的白细胞杀伤和 ClfA 介导的纤维蛋白原结合的能力。用 CLSH-OMVs 接种的小鼠在皮肤、败血症和肾脓肿模型中受到强烈保护,免受 攻击。这项研究不仅描述了一种开发易于生产和廉价的多组分疫苗的通用方法,还提出了一种新的四价疫苗候选物,准备进入开发阶段。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/87f0/8606680/8de92a553590/fimmu-12-752168-g001.jpg

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