In silico studies and biological evaluation of thiosemicarbazones as Isabella cruzain-targeting trypanocidal agents for Chagas disease

Resumo

Background/Objectives: Chagas disease remains a major unmet medical need due to the limited efficacy and safety of current therapies. Here, we investigated sixteen thiosemicarbazone (TSC) derivatives as cruzain inhibitors using an integrated in silico/in vitro workflow. Methods: Docking against cruzain (PDB 3KKU) guided hit prioritization and correlated with enzyme inhibition; validation by redocking supported the protocol’s reliability. Results: The top compounds—H7, H10 and H11—showed potent cruzain inhibition (IC50 = 0.306, 0.512 and 0.412 µM, respectively) and low-micromolar trypanocidal activity, with negligible cytotoxicity in human fibroblasts (CC50 > 64 µM) and favorable selectivity. Structure–activity insights highlighted the role of expanded aromatic systems and electron-donating groups in enhancing binding within S2/S1′ subsites, while nitro substituents were associated with higher cytotoxicity. In silico ADMET parameters supported oral drug-likeness and acceptable metabolic liabilities. Conclusions: Overall, these data position TSCs as promising anti-T. cruzi leads and underscore the value of rational design against cruzain.

Descrição

Citação

MEIER, Lidiane et al. In silico studies and biological evaluation of thiosemicarbazones as Isabella cruzain-targeting trypanocidal agents for Chagas disease. Pharmaceutics, Basel, v. 18, n. 1, e65, 2026. DOI: 10.3390/pharmaceutics18010065. Disponível em: https://www.mdpi.com/1999-4923/18/1/65. Acesso em: 16 set. 2026.