4.7 Article

Mpox multi-antigen mRNA vaccine candidates by a simplified manufacturing strategy afford efficient protection against lethal orthopoxvirus challenge

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EMERGING MICROBES & INFECTIONS
卷 12, 期 1, 页码 -

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TAYLOR & FRANCIS LTD
DOI: 10.1080/22221751.2023.2204151

关键词

Mpox; mRNA vaccine; multi-antigen; VACV challenge; simplified manufacturing

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Current mpox outbreaks in non-endemic regions are a global public health concern. Two multi-antigen mRNA vaccine candidates, Rmix4 and Rmix6, were developed using a simplified manufacturing strategy and showed promising results in inducing potent immune responses against the virus. Both candidates protected mice from lethal virus challenge and revealed vulnerability to viral immune evasion.
Current unprecedented mpox outbreaks in non-endemic regions represent a global public health concern. Although two live-attenuated vaccinia virus (VACV)-based vaccines have been urgently approved for people at high risk for mpox, a safer and more effective vaccine that can be available for the general public is desperately needed. By utilizing a simplified manufacturing strategy of mixing DNA plasmids before transcription, we developed two multi-antigen mRNA vaccine candidates, which encode four (M1, A29, B6, A35, termed as Rmix4) or six (M1, H3, A29, E8, B6, A35, termed as Rmix6) mpox virus antigens. We demonstrated that those mpox multi-antigen mRNA vaccine candidates elicited similar potent cross-neutralizing immune responses against VACV, and compared to Rmix4, Rmix6 elicited significantly stronger cellular immune responses. Moreover, immunization with both vaccine candidates protected mice from the lethal VACV challenge. Investigation of B-cell receptor (BCR) repertoire elicited by mpox individual antigen demonstrated that the M1 antigen efficiently induced neutralizing antibody responses, and all neutralizing antibodies among the top 20 frequent antibodies appeared to target the same conformational epitope as 7D11, revealing potential vulnerability to viral immune evasion. Our findings suggest that Rmix4 and Rmix6 from a simplified manufacturing process are promising candidates to combat mpox.

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