Navigating the COVID-19 Therapeutic Landscape: Unveiling Novel Perspectives on FDA-Approved Medications, Vaccination Targets, and Emerging Novel Strategies
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Date
2024-11-25
Journal Title
Journal ISSN
Volume Title
Type
Article
Publisher
Multidisciplinary Digital Publishing Institute (MDPI)
Series Info
Molecules ; Volume 29, Issue 23 , December 2024 Article number 5564
Scientific Journal Rankings
Abstract
Amidst the ongoing global challenge of the SARS-CoV-2 pandemic, the quest for effective
antiviral medications remains paramount. This comprehensive review delves into the dynamic
landscape of FDA-approved medications repurposed for COVID-19, categorized as antiviral and
non-antiviral agents. Our focus extends beyond conventional narratives, encompassing vaccination
targets, repurposing efficacy, clinical studies, innovative treatment modalities, and future outlooks.
Unveiling the genomic intricacies of SARS-CoV-2 variants, including the WHO-designated Omicron
variant, we explore diverse antiviral categories such as fusion inhibitors, protease inhibitors, transcription inhibitors, neuraminidase inhibitors, nucleoside reverse transcriptase, and non-antiviral
interventions like importin α/β1-mediated nuclear import inhibitors, neutralizing antibodies, and
convalescent plasma. Notably, Molnupiravir emerges as a pivotal player, now licensed in the UK.
This review offers a fresh perspective on the historical evolution of COVID-19 therapeutics, from
repurposing endeavors to the latest developments in oral anti-SARS-CoV-2 treatments, ushering in a
new era of hope in the battle against the pandemic.
Description
Keywords
molnupiravir, SARS-CoV-2, drug repurposing, vaccines, variant of concerns (VOC), paxlovid
Citation
Barghash, R. F., Gemmati, D., Awad, A. M., Elbakry, M. M. M., Tisato, V., Awad, K., & Singh, A. V. (2024). Navigating the COVID-19 therapeutic landscape: unveiling novel perspectives on FDA-Approved medications, vaccination targets, and emerging novel strategies. Molecules, 29(23), 5564. https://doi.org/10.3390/molecules29235564