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TbpB变体的合理选择阐明了一种具有广谱覆盖性的二价疫苗配方,可抵御…… (原文此处against后内容缺失)

Rational selection of TbpB variants elucidates a bivalent vaccine formulation with broad spectrum coverage against .

作者信息

Fegan Jamie E, Islam Epshita A, Curran David M, Ng Dixon, Au Natalie, Currie Elissa G, Zeppa Joseph, Lam Jessica, Schryvers Anthony B, Moraes Trevor F, Gray-Owen Scott D

出版信息

bioRxiv. 2024 Sep 7:2024.09.07.611798. doi: 10.1101/2024.09.07.611798.

DOI:10.1101/2024.09.07.611798
PMID:39282273
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11398527/
Abstract

is the causative agent of gonorrhea, an on-going public health problem due in part to the lack of success with efforts to develop an efficacious vaccine to prevent this sexually transmitted infection. An attractive candidate vaccine antigen because of its essential function and surface exposure, the gonococcal transferrin binding protein B (TbpB) exhibits high levels of antigenic variability which poses a significant obstacle in evoking a broadly protective vaccine composition. Here, we utilize phylogenetic information to rationally select TbpB variants for inclusion into a potential gonococcal vaccine and identify two TbpB variants that when formulated together elicit a highly cross-reactive antibody response in both rabbits and mice against a diverse panel of TbpB variants and clinically relevant gonococcal strains. Further, this formulation performed well in experimental proxies of real-world usage, including eliciting bactericidal activity against 8 diverse gonococcal strains and decreasing the median duration of colonization after vaginal infection in female mice by two heterologous strains of . Together, these data support the use of a combination of TbpB variants for a broadly protective gonococcal vaccine.

摘要

是淋病的病原体,淋病是一个持续存在的公共卫生问题,部分原因是开发有效疫苗以预防这种性传播感染的努力未取得成功。淋球菌转铁蛋白结合蛋白B(TbpB)因其重要功能和表面暴露而成为有吸引力的候选疫苗抗原,但其抗原变异性很高,这在引发具有广泛保护作用的疫苗组合物方面构成了重大障碍。在这里,我们利用系统发育信息合理选择TbpB变体以纳入潜在的淋球菌疫苗,并鉴定出两种TbpB变体,当它们一起配制时,在兔子和小鼠中均能引发针对多种TbpB变体和临床相关淋球菌菌株的高度交叉反应性抗体反应。此外,该制剂在实际使用的实验模型中表现良好,包括对8种不同的淋球菌菌株产生杀菌活性,并将雌性小鼠阴道感染两种异源菌株后的定植中位持续时间缩短。总之,这些数据支持使用TbpB变体组合来制备具有广泛保护作用的淋球菌疫苗。

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