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February 16, 2026Nature Communications2 citationsOpen Access

From nicotine to SARS-CoV-2 antivirals with potent in vivo efficacy and a broad anti-coronavirus spectrum

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KKKaustav KhatuaMitchell InstituteSASandeep AtlaMitchell InstituteDCDemonta ColemanTexas A&M University

Key Points

  • The research aims to discover effective inhibitors of the SARS-CoV-2 main protease, enhancing antiviral treatments.
  • Investigated nicotine and pyrolysis products as potential inhibitors of SARS-CoV-2 main protease.
  • Discovered 3-vinylpyridine as an M Pro inhibitor through medicinal chemistry campaigns.
  • Compared antiviral efficacy and pharmacokinetics of lead molecules to nirmatrelvir in virus-challenged mice.
  • 3-vinylpyridine shows similarity to nirmatrelvir in binding but does not engage critical resistance mutation.
  • Lead molecules YR-C-136 and SR-B-103 exhibit superior in vitro potency compared to nirmatrelvir.
  • Both lead molecules effectively inhibit nirmatrelvir-resistant M Pro variants, demonstrating broad antiviral efficacy.

Abstract

Abstract Anecdotal reports about smoking that might prevent SARS-CoV-2 infection inspire the search for nicotine and its pyrolysis products as inhibitors of the SARS-CoV-2 main protease (M Pro ). This effort leads to the discovery of 3-vinylpyridine as an M Pro inhibitor. 3-Vinylpyridine resembles part of nirmatrelvir in binding to M Pro but does not involve a critical interaction with residue E166, whose mutation has led to resistance to nirmatrelvir. Integration of the two molecules, followed by a medicinal chemistry campaign, produces several molecules with better in vitro potency than nirmatrelvir. Two lead molecules, YR-C-136 and SR-B-103, display better pharmacokinetic characteristics than nirmatrelvir in virus-challenged male mice and much better antiviral efficacy in virus-challenged female mice. Both molecules maintain high potency in inhibiting the nirmatrelvir-resistant M Pro (E166V/L50F) variant. They also exhibit a broad and highly potent antiviral spectrum against most pathogenic coronaviruses. With high in vivo potency, both molecules are potentially standalone pan-antivirals for coronaviruses and may serve as countermeasures for future coronavirus outbreaks.

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Cite This Study

Khatua et al. (2026) studied this question.

synapsesocial.com/papers/69926503eb1f82dc367a0e92https://doi.org/10.1038/s41467-026-69527-5
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