表达肺炎球菌表面蛋白A的鼻内流感载体疫苗可预防流感和肺炎链球菌感染。

IF 6.9 1区 医学 Q1 IMMUNOLOGY NPJ Vaccines Pub Date : 2024-12-19 DOI:10.1038/s41541-024-01033-5
Kimberly Freitas Cardoso, Lara Regina Alves de Souza, Beatriz Senra Álvares da Silva Santos, Ketyllen Reis Andrade de Carvalho, Sarah Giarola da Silva Messias, Ana Paula de Faria Gonçalves, Flora Satiko Kano, Pedro Augusto Alves, Marco Antônio da Silva Campos, Marcelo Pascoal Xavier, Cristiana Couto Garcia, Remo Castro Russo, Ricardo Tostes Gazzinelli, Érica Azevedo Costa, Nelson Rodrigo da Silva Martins, Eliane Namie Miyaji, Alexandre de Magalhães Vieira Machado, Márcio Sobreira Silva Araújo
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引用次数: 0

摘要

肺炎链球菌和甲型流感病毒(IAV)是全球肺炎病例和严重呼吸道感染的重要病原体。继发性细菌感染,特别是肺炎链球菌感染,在iav感染者中很常见,可导致严重后果。尽管降低了死亡率,但肺炎球菌疫苗的生产成本很高,并且具有血清型特异性。新的流行血清型的出现促使人们寻求能够提供广泛保护的新预防策略。在这种情况下,使用所有血清型中存在的抗原进行疫苗接种,例如肺炎球菌表面蛋白A (PspA),可以提供广泛的覆盖范围,无论血清型如何。本研究小组利用反向遗传学技术,通过PspA替代神经氨酸酶,开发了一种表达PspA(流感-PspA)的重组甲型H1N1流感病毒。该病毒作为抗甲型流感和肺炎链球菌引起的小鼠感染的二价疫苗进行了评估。最初,我们评估了流感-PspA病毒在体外感染细胞和表达PspA的能力,在胚胎鸡蛋中的繁殖能力,以及在小鼠接种时的安全性。随后,使用不同的免疫方案评估了小鼠对甲型流感和肺炎链球菌致命攻击感染的保护作用。分析了抗PspA4蛋白和流感抗体的产生,以及抗PspA4抗体/补体沉积对不同肺炎链球菌菌株的结合能力。我们的研究结果表明,流感-PspA病毒疫苗在体外有效地诱导PspA蛋白的表达,并且即使在没有外源神经氨酸酶的情况下,它也能在胚胎鸡蛋中繁殖。基于流感pspa的二价疫苗被证明是安全的,可以刺激高滴度的抗pspa和抗流感抗体,并保护小鼠免受同亚型和异亚型甲型流感和肺炎链球菌的攻击。此外,抗体的有效结合和补体沉积在肺炎球菌菌株表面归因于体内广谱疫苗反应。总之,这种创新方法有望开发出针对两种主要呼吸道病原体的双重保护疫苗。
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Intranasal influenza-vectored vaccine expressing pneumococcal surface protein A protects against Influenza and Streptococcus pneumoniae infections.

Streptococcus pneumoniae and influenza A virus (IAV) are significant agents of pneumonia cases and severe respiratory infections globally. Secondary bacterial infections, particularly by Streptococcus pneumoniae, are common in IAV-infected individuals, leading to critical outcomes. Despite reducing mortality, pneumococcal vaccines have high production costs and are serotype specific. The emergence of new circulating serotypes has led to the search for new prevention strategies that provide a broad spectrum of protection. In this context, vaccination using antigens present in all serotypes, such as Pneumococcal Surface Protein A (PspA), can offer broad coverage regardless of serotype. Employing the reverse genetics technique, our research group developed a recombinant influenza A H1N1 virus that expresses PspA (Flu-PspA), through the replacement of neuraminidase by PspA. This virus was evaluated as a bivalent vaccine against infections caused by influenza A and S. pneumoniae in mice. Initially, we evaluated the Flu-PspA virus's ability to infect cells and express PspA in vitro, its capacity to multiply in embryonated chicken eggs, and its safety when inoculated in mice. Subsequently, the protective effect against influenza A and Streptococcus pneumoniae lethal challenge infections in mice was assessed using different immunization protocols. Analysis of the production of antibodies against PspA4 protein and influenza, and the binding capacity of anti-PspA4 antibodies/complement deposition to different strains of S. pneumoniae were also evaluated. Our results demonstrate that the Flu-PspA virus vaccine efficiently induces PspA protein expression in vitro, and that it was able to multiply in embryonated chicken eggs even without exogenous neuraminidase. The Flu-PspA-based bivalent vaccine was demonstrated to be safe, stimulated high titers of anti-PspA and anti-influenza antibodies, and protected mice against homosubtypic and heterosubtypic influenza A and S. pneumoniae challenge. Moreover, an efficient binding of antibodies and complement deposition on the surface of pneumococcal strains ascribes the broad-spectrum vaccine response in vivo. In summary, this innovative approach holds promise for developing a dual-protective vaccine against two major respiratory pathogens.

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来源期刊
NPJ Vaccines
NPJ Vaccines Immunology and Microbiology-Immunology
CiteScore
11.90
自引率
4.30%
发文量
146
审稿时长
11 weeks
期刊介绍: Online-only and open access, npj Vaccines is dedicated to highlighting the most important scientific advances in vaccine research and development.
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