Aug 2026· Chemical Reviews· Vol 126 16, pp.
9307-9356
· 0 citations· 369 references
Medicine
TL;DR
A systematic review of current research progress on potential therapeutic targets and agent for MPXV is provided, aiming to offer innovative insights and strategies for the development of effective therapeutic agents against mpox.
Abstract
Since the first confirmed case in 1970, the monkeypox virus (MPXV) has emerged as a significant threat to global public health. The World Health Organization (WHO) has declared it a Public Health Emergency of International Concern (PHEIC) on two occasions. Despite decades of research, only tecovirimat has been approved by the European Medicines Agency (EMA) for the treatment of MPXV infection. The genome and structure are similar between MPXV and other orthopoxviruses (OPXVs), suggesting that the strategies used for other OPXVs may be applicable to MPXV. This review systematically summarizes the genome, structure, and critical stages in the life cycle of OPXVs, especially MPXV. A variety of antiviral agents against MPXV and other OPXVs are discussed according to their distinct mechanisms of action: 1) blocking viral entry and fusion, 2) inhibiting DNA replication and processing, 3) disrupting transcription and mRNA processing, 4) preventing virion assembly, maturation and release, 5) modulating immune responses, and 6) mechanism unknown. Overall, this article provides a systematic review of current research progress on potential therapeutic targets and agent for MPXV, aiming to offer innovative insights and strategies for the development of effective therapeutic agents against mpox.
Abstract Monkeypox virus (MPXV) has garnered global attention in recent years. MPXV is a DNA virus that is categorized as belonging to the Orthopoxvirus, exhibiting close genetic and structural similarities to variola virus (VARV) and vaccinia virus (VACV). Despite the World Health Organization (WHO) announcing in 2023...
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