Viruses (Nov 2024)

Benzocarbazoledinones as SARS-CoV-2 Replication Inhibitors: Synthesis, Cell-Based Studies, Enzyme Inhibition, Molecular Modeling, and Pharmacokinetics Insights

  • Luana G. de Souza,
  • Eduarda A. Penna,
  • Alice S. Rosa,
  • Juliana C. da Silva,
  • Edgar Schaeffer,
  • Juliana V. Guimarães,
  • Dennis M. de Paiva,
  • Vinicius C. de Souza,
  • Vivian Neuza S. Ferreira,
  • Daniel D. C. Souza,
  • Sylvia Roxo,
  • Giovanna B. Conceição,
  • Larissa E. C. Constant,
  • Giovanna B. Frenzel,
  • Matheus J. N. Landim,
  • Maria Luiza P. Baltazar,
  • Celimar Cinézia Silva,
  • Ana Laura Macedo Brand,
  • Julia Santos Nunes,
  • Tadeu L. Montagnoli,
  • Gisele Zapata-Sudo,
  • Marina Amaral Alves,
  • Diego Allonso,
  • Priscila V. Z. Capriles Goliatt,
  • Milene D. Miranda,
  • Alcides J. M. da Silva

DOI
https://doi.org/10.3390/v16111768
Journal volume & issue
Vol. 16, no. 11
p. 1768

Abstract

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Endemic and pandemic viruses represent significant public health challenges, leading to substantial morbidity and mortality over time. The COVID-19 pandemic has underscored the urgent need for the development and discovery of new, potent antiviral agents. In this study, we present the synthesis and anti-SARS-CoV-2 activity of a series of benzocarbazoledinones, assessed using cell-based screening assays. Our results indicate that four compounds (4a, 4b, 4d, and 4i) exhibit EC50 values below 4 μM without cytotoxic effects in Calu-3 cells. Mechanistic investigations focused on the inhibition of the SARS-CoV-2 main protease (Mpro) and papain-like protease (PLpro) have used enzymatic assays. Notably, compounds 4a and 4b showed Mpro inhibition activity with IC50 values of 0.11 ± 0.05 and 0.37 ± 0.05 µM, respectively. Furthermore, in silico molecular docking, physicochemical, and pharmacokinetic studies were conducted to validate the mechanism and assess bioavailability. Compound 4a was selected for preliminary drug-likeness analysis and in vivo pharmacokinetics investigations, which yielded promising results and corroborated the in vitro and in silico findings, reinforcing its potential as an anti-SARS-CoV-2 lead compound.

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