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Current Status of Vaccine Development for Monkeypox Virus

猴痘 病毒学 生物 牛痘 遗传学 基因 重组DNA
作者
Amber Rastogi,Manoj Kumar
出处
期刊:Advances in Experimental Medicine and Biology [Springer Nature]
卷期号:: 289-300
标识
DOI:10.1007/978-3-031-57165-7_18
摘要

Monkeypox virusMonkeypox virus (MPXV) of poxviridae family causes a zoonotic disease called monkeypox (Mpox). MPXV cases have a fatality ratio ranging from 0 to 11% globally and have been more prevalent in children. There are three generations of smallpox vaccines that protect against MPXV. First and second generation of the vaccinia virusVaccinia virus (VACV) vaccine protects MPXV. However, various adverse side effects were associated with the first and second generations of vaccines. In contrast, the Modified Vaccinia Ankara-Bavarian Nordic (MVA-BN) replication-incompetent vaccine shows fewer adverse effects and a significant amount of neutralizing antibodies in mammalian cells. A third-generation Modified Vaccinia Ankara-Bavarian Nordic (MVA-BN) was approved to prevent Mpox in 2019. Recently, MVA-BN-based Imvanex, Imvamune, and JYNNEOSJYNNEOS vaccines have also been administered against MPXV. Globally, the World Health Organization (WHO) declared a global health emergency in May 2022 due to increased MPXV cases. Various computational studies have also designed a multi-epitope-based vaccineMulti-epitope-based vaccine against the MPXV. In the multi-epitope-based vaccineMulti-epitope-based vaccine, different epitopes like B-cellB-cell, Cytotoxic T LymphocyteCytotoxic T Lymphocyte (CTL), CD8+, and CD4+ epitopes were derived from MPXV proteins. Further, these epitopes were linked with the help of various linkers to design a multi-epitope vaccine against MPXV. In summary, we have provided an overview of the current status of the vaccine against MPXV.

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