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An anthrax subunit vaccine candidate based on protective regions of Bacillus anthracis protective antigen and lethal factor.

机译:基于炭疽芽孢杆菌保护性抗原和致死因子的保护区的炭疽亚单位候选疫苗。

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摘要

Studies have confirmed the key role of Bacillus anthracis protective antigen (PA) in the US and UK human anthrax vaccines. However, given the tripartite nature of the toxin, other components, including lethal factor (LF), are also likely to contribute to protection. We examined the antibody and T cell responses to PA and LF in human volunteers immunized with the UK anthrax vaccine (AVP). Individual LF domains were assessed for immunogenicity in mice when given alone or with PA. Based on the results obtained, a novel fusion protein comprising D1 of LF and the host cell-binding domain of PA (D4) was assessed for protective efficacy. Murine protection studies demonstrated that both full-length LF and D1 of LF conferred complete protection against a lethal intraperitoneal challenge with B. anthracis STI spores. Subsequent studies with the LFD1-PAD4 fusion protein showed a similar level of protection. LF is immunogenic in humans and is likely to contribute to the protection stimulated by AVP. A single vaccine comprising protective regions from LF and PA would simplify production and confer a broader spectrum of protection than that seen with PA alone.
机译:研究证实了炭疽杆菌保护性抗原(PA)在美国和英国的人类炭疽疫苗中的关键作用。但是,考虑到毒素的三重性质,包括致死因子(LF)在内的其他成分也可能有助于保护。我们检查了用英国炭疽疫苗(AVP)免疫的人类志愿者对PA和LF的抗体和T细胞反应。当单独或与PA一起给予时,评估单个LF结构域在小鼠中的免疫原性。基于获得的结果,评估了包含LF的D1和PA的宿主细胞结合结构域(D4)的新型融合蛋白的保护功效。鼠类保护研究表明,全长LF和LF的D1均赋予针对B致死性腹膜内攻击的完全保护。炭疽STI孢子。随后对LFD1-PAD4融合蛋白的研究显示了相似的保护水平。 LF在人类中具有免疫原性,并可能有助于AVP刺激的保护作用。与单独使用PA相比,包含LF和PA保护区的单一疫苗将简化生产并提供更广的保护范围。

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