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具有增强免疫原性的合理设计的人巨细胞病毒gB纳米颗粒疫苗。

Rationally designed Human Cytomegalovirus gB nanoparticle vaccine with improved immunogenicity.

作者信息

Perotti Michela, Marcandalli Jessica, Demurtas Davide, Sallusto Federica, Perez Laurent

机构信息

Institute for Research in Biomedicine, Università della Svizzera italiana, faculty of Biomedical Sciences, Bellinzona, Switzerland.

Institute of Microbiology, ETH Zürich, Zürich, Switzerland.

出版信息

PLoS Pathog. 2020 Dec 28;16(12):e1009169. doi: 10.1371/journal.ppat.1009169. eCollection 2020 Dec.

Abstract

Human cytomegalovirus (HCMV) is the primary viral cause of congenital birth defects and causes significant morbidity and mortality in immune-suppressed transplant recipients. Despite considerable efforts in vaccine development, HCMV infection still represents an unmet clinical need. In recent phase II trials, a MF59-adjuvanted gB vaccine showed only modest efficacy in preventing infection. These findings might be attributed to low level of antibodies (Abs) with a neutralizing activity induced by this vaccine. Here, we analyzed the immunogenicity of each gB antigenic domain (AD) and demonstrated that domain I of gB (AD5) is the main target of HCMV neutralizing antibodies. Furthermore, we designed, characterized and evaluated immunogenic responses to two different nanoparticles displaying a trimeric AD5 antigen. We showed that mice immunization with nanoparticles induces sera neutralization titers up to 100-fold higher compared to those obtained with the gB extracellular domain (gBECD). Collectively, these results illustrate with a medically relevant example the advantages of using a general approach combining antigen discovery, protein engineering and scaffold presentation for modern development of subunit vaccines against complex pathogens.

摘要

人巨细胞病毒(HCMV)是先天性出生缺陷的主要病毒病因,在免疫抑制的移植受者中可导致严重的发病率和死亡率。尽管在疫苗研发方面付出了巨大努力,但HCMV感染仍然是尚未满足的临床需求。在最近的II期试验中,一种MF59佐剂gB疫苗在预防感染方面仅显示出适度的疗效。这些发现可能归因于该疫苗诱导的具有中和活性的抗体(Abs)水平较低。在此,我们分析了gB每个抗原结构域(AD)的免疫原性,并证明gB的结构域I(AD5)是HCMV中和抗体的主要靶点。此外,我们设计、表征并评估了对两种展示三聚体AD5抗原的不同纳米颗粒的免疫反应。我们发现,与用gB胞外结构域(gBECD)获得的血清中和滴度相比,用纳米颗粒免疫小鼠可诱导高达100倍的血清中和滴度。总体而言,这些结果通过一个医学相关实例说明了使用抗原发现、蛋白质工程和支架呈递相结合的通用方法进行针对复杂病原体的亚单位疫苗现代研发的优势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2023/7794029/d3e4a4092ef8/ppat.1009169.g001.jpg

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