Enhanced production of recombinant coxsackievirus A16 using a serum-free HEK293A suspension culture system for bivalent enterovirus vaccine development

IF 2.7 Q3 IMMUNOLOGY
Yi-An Chen , Yu-Sheng Shen , Chih-Yeu Fang , Ting-Ting Chan , Shang-Rung Wu , Jen-Ren Wang , Suh-Chin Wu , Chia-Chyi Liu
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引用次数: 0

Abstract

Coxsackievirus A16 (CVA16) is one of the primary pathogens that causes hand, foot, and mouth disease (HFMD) in young children. In previous studies, CVA16 vaccine development has encountered several challenges, such as inefficient replication of the CVA16 virus in present culture systems, the induction of only mild neutralizing antibody titers, and neutralizing antibodies induced by certain vaccine candidates that are unable to protect against CVA16 viral challenge. In this study, we constructed a DNA-launched CVA16 infectious clone (CVA16ic) based on the genomic sequence of the CVA16 N5079 strain to minimize interference from viral quasispecies. The biochemical properties of this CVA16ic strain were similar to those of its parental strain. Serum-free HEK293A suspension cells, which produced higher virus titers than Vero cells, were demonstrated to improve CVA16 production yields. In addition, our study showed that inactivated EV-A71 antigens could enhance the immunogenicity of inactivated CVA16 mature/full particles (F-particles), suggesting that a bivalent CVA16 and EV-A71 vaccine may be an effective strategy for CVA16 vaccine development. These findings are expected to provide novel strategies and accelerate the development of bivalent HFMD vaccines.
利用无血清 HEK293A 悬浮培养系统提高重组柯萨奇病毒 A16 的产量,以开发二价肠道病毒疫苗
柯萨奇病毒 A16(CVA16)是导致幼儿手足口病(HFMD)的主要病原体之一。在以往的研究中,CVA16 疫苗的开发遇到了一些挑战,如 CVA16 病毒在现有培养系统中的复制效率低下、只能诱导出轻微的中和抗体滴度,以及某些候选疫苗诱导出的中和抗体无法抵御 CVA16 病毒的挑战。在本研究中,我们根据 CVA16 N5079 株的基因组序列构建了一个 DNA 发射的 CVA16 感染性克隆(CVA16ic),以尽量减少病毒类群的干扰。CVA16ic 株系的生化特性与其亲本株系相似。与 Vero 细胞相比,无血清 HEK293A 悬浮细胞能产生更高的病毒滴度,从而提高了 CVA16 的产量。此外,我们的研究还表明,灭活的EV-A71抗原能增强灭活的CVA16成熟/完整颗粒(F颗粒)的免疫原性,这表明CVA16和EV-A71二价疫苗可能是开发CVA16疫苗的有效策略。这些发现有望为手足口病二价疫苗的开发提供新的策略和加速。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Vaccine: X
Vaccine: X Multiple-
CiteScore
2.80
自引率
2.60%
发文量
102
审稿时长
13 weeks
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