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武汉基于序列的重组抗原在诱导的抗体中表达,这些抗体能够与奥密克戎 S 蛋白结合。

Wuhan Sequence-Based Recombinant Antigens Expressed in Elicit Antibodies Capable of Binding with Omicron S-Protein.

机构信息

Department of Virology, Faculty of Biology, Lomonosov Moscow State University, Moscow 119234, Russia.

R-Pharm, Moscow 119421, Russia.

出版信息

Int J Mol Sci. 2024 Aug 20;25(16):9016. doi: 10.3390/ijms25169016.

Abstract

The development of cross-reactive vaccines is one of the central aims of modern vaccinology. Continuous mutation and the emergence of new SARS-CoV-2 variants and subvariants create the problem of universal coronavirus vaccine design. Previously, the authors devised three recombinant coronavirus antigens, which were based on the sequence collected in 2019 (the Wuhan variant) and produced in an bacterial expression system. The present work has shown, for the first time, that these recombinant antigens induce the production of antibodies that clearly interact with produced in CHO full-length S-protein of the Omicron variant. The immunogenicity of these recombinant antigens was studied in formulations with different adjuvants: Freund's adjuvant, Al(OH) and an adjuvant based on spherical particles (SPs), which are structurally modified plant virus. All adjuvanted formulations effectively stimulated Omicron-specific IgG production in mice. These universal coronavirus antigens could be considered the main component for the further development of broad-spectrum coronavirus vaccines for the prevention of SARS-CoV-2 infection. The present work also provides evidence that the synthetic biology approach is a promising strategy for the development of highly cross-reactive vaccines. Moreover, it is important to note that the bacterial expression system might be appropriate for the production of antigenically active universal antigens.

摘要

开发交叉反应疫苗是现代疫苗学的主要目标之一。冠状病毒的不断突变以及新的 SARS-CoV-2 变体和亚变体的出现,给通用冠状病毒疫苗的设计带来了问题。此前,作者设计了三种基于 2019 年收集的序列(武汉变体)并在细菌表达系统中产生的重组冠状病毒抗原。本研究首次表明,这些重组抗原诱导产生的抗体与在 CHO 全长 S 蛋白中产生的奥密克戎变体有明显的相互作用。这些重组抗原的免疫原性在含有不同佐剂的配方中进行了研究:弗氏佐剂、氢氧化铝和基于球形颗粒(SPs)的佐剂,SPs 是结构修饰的植物病毒。所有加佐剂的配方均能有效刺激小鼠产生针对奥密克戎的 IgG。这些通用冠状病毒抗原可被视为进一步开发广谱冠状病毒疫苗以预防 SARS-CoV-2 感染的主要成分。本研究还提供了证据,证明合成生物学方法是开发高交叉反应性疫苗的有前途的策略。此外,值得注意的是,细菌表达系统可能适合生产具有抗原活性的通用抗原。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c74/11354337/0bbef0661714/ijms-25-09016-g001.jpg

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