以腺病毒为基础的预防儿童病原体:人呼吸道合胞病毒和诺如病毒的二价疫苗的强化构建

IF 2.5 4区 医学 Q3 BIOCHEMICAL RESEARCH METHODS
Ying-Chin Chen , Nai-Hsiang Chung , Yu-Ching Lin , Shu-Ling Yu , Chia-Chyi Liu , Yen-Hung Chow
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引用次数: 0

摘要

为了阻止呼吸道合胞病毒(RSV)和诺如病毒(NoV)在儿童中的传播,我们开发了一种新的重组腺病毒,表达RSV融合(F)和NoV VP1蛋白,由不同的启动子元件(EF1α、SV40和CMV)驱动,分别产生Ad-F/E/NoV、Ad-F/S/NoV和Ad-F/C/NoV。在ad -F感染的细胞中,表达的F可以被靶向位点II的融合后特异性抗体和靶向位点V和Ø的融合后特异性抗体识别。然而,NoV VP1仅在Ad-F/E/NoV和Ad-F/C/NoV感染的细胞中表达。在啮齿类动物腹腔分别注射两剂量单价Ad-F和所有三种双极性ad,诱导抗f中和抗体相似。Ad-F/C/NoV和Ad-F/E/NoV诱导了NoV vp1特异性IgG,但Ad-F/S/NoV不诱导。Ad-F/C/NoV免疫的受试者血清具有较强的抗NoV活性,这可以通过降低NoV VLPs与组织血型抗原的结合来证明。Ad-F/C/NoV和Ad-F/E/NoV免疫小鼠表现出细胞免疫介导的脾脏IFN-γ和IL-4分泌升高。在RSV攻击研究中,接种三种双声广告时,肺病毒粒子显著减少,证实了它们预防RSV感染的有效性。最后,用Ad-F/C/NoV免疫小鼠粘膜(鼻内)后,血清和阴道洗液中RSV和NoV特异性的抗RSV和NoV IgA均被高度诱导。这些发现强调了针对儿童流行的两种病原体的Ad疫苗的优化。此外,结果强调了粘膜递送Ad疫苗作为公共疫苗接种工作的一种有价值的策略的效用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhanced construction of a bivalent adenovirus-based vaccine for preventing childhood pathogens: Human respiratory syncytial virus and norovirus
To impede the spread of respiratory syncytial virus (RSV) and norovirus (NoV) in children, we developed novel recombinant adenoviruses expressing RSV fusion (F) and NoV VP1 proteins driven by different promoter elements (EF1α, SV40, and CMV), resulting in Ad-F/E/NoV, Ad-F/S/NoV, and Ad-F/C/NoV, respectively. The expressed F can be recognized by postfusion-specific antibody targeting to site II and prefusion-specific antibodies targeting to sites V and Ø in the Ad-F-infected cells. However, NoV VP1 is only expressed in Ad-F/E/NoV and Ad-F/C/NoV-infected cells. Intraperitoneal two-dose with monovalent Ad-F and all three bicistronic Ads individually in rodents induced anti-F neutralizing antibodies similarly. Ad-F/C/NoV and Ad-F/E/NoV but not Ad-F/S/NoV significantly induced NoV VP1-specific IgG. The serum from Ad-F/C/NoV-immunized subjects elicited superior anti-NoV activity, as evidenced by reduced binding of NoV VLPs to histo-blood group antigens. Ad-F/C/NoV and Ad-F/E/NoV-immunized mice exhibited elevated cellular immune-mediated splenic IFN-γ and IL-4 secretions. In the RSV challenge study, pulmonary virions were significantly decreased during the vaccination with each of the three bicistronic Ads, confirming their efficacy in preventing RSV infection. Finally, the mucosal (intranasal) immunization in mice with Ad-F/C/NoV induced superior anti-RSV and NoV IgA in both serum and vaginal washes specific to RSV and NoV were highly induced. These findings highlight the optimization of an Ad vaccine targeting two pathogens prevalent in childhood. Additionally, the results underscore the utility of mucosal delivery of Ad vaccines as a valuable strategy for public vaccination efforts.
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来源期刊
SLAS Technology
SLAS Technology Computer Science-Computer Science Applications
CiteScore
6.30
自引率
7.40%
发文量
47
审稿时长
106 days
期刊介绍: SLAS Technology emphasizes scientific and technical advances that enable and improve life sciences research and development; drug-delivery; diagnostics; biomedical and molecular imaging; and personalized and precision medicine. This includes high-throughput and other laboratory automation technologies; micro/nanotechnologies; analytical, separation and quantitative techniques; synthetic chemistry and biology; informatics (data analysis, statistics, bio, genomic and chemoinformatics); and more.
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