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April 19, 2026Molecules1 citationsOpen Access

Using the Scaffold of FDA-Approved Drugs with Trypanocidal Activity to Identify New Anti-Trypanosoma cruzi Agents: An In Silico and In Vitro Approach

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LVLenci K. Vázquez-JiménezAGAlonzo González-GonzálezTDTimoteo Delgado-Maldonado

Key Points

  • The aim is to discover new treatments for Chagas disease by exploring FDA-approved drug analogs targeting Trypanosoma cruzi.
  • Conducted ligand-based virtual screening of FDA-approved drugs.
  • Evaluated biological activity of identified compounds against Trypanosoma cruzi blood trypomastigotes.
  • Performed molecular dynamics simulations to assess compound stability in protein complexes.
  • Executed ADMET predictive analysis for compound safety and efficacy profiles.
  • Identified compounds TD-095, TS-936, and TD-831 as potential trans-sialidase inhibitors with better activity than traditional drugs.
  • TIM-967 and LK-284 showed promising effects as triosephosphate isomerase inhibitors.
  • Molecular dynamics simulations indicated stability of the compounds in their protein complexes.
  • ADMET analysis revealed favorable properties, supporting further exploration of these compounds.

Abstract

Chagas disease affects millions of people worldwide, including those in Latin America. The only drugs available for its treatment are benznidazole and nifurtimox. However, these drugs present high toxicity and limited efficacy. Therefore, the search for new treatments continues. In this regard, computer-assisted drug design has been implemented in scientific research for drug repurposing, allowing for reduced costs and time. Therefore, the objective of this work was to search for analogs of FDA-approved drugs with activity against Trypanosoma cruzi through ligand-based virtual screening and their biological evaluation against blood trypomastigotes. The compound TD-095 (LC50 = 48.60 and 13.75 µM), a ketanserin analogue, TS-936 (LC50 = 71.55 and 37.54 µM), a terfenadine analogue, and TD-831 (LC50 = 75.94 and 26.17 µM), a sulfasalazine analogue, were considered as potential trans-sialidase inhibitors; TIM-967 (LC50 = 69.70 and 39.69 µM) and LK-284 (LC50 = 116.7 and 82.29 µM), two sulfonylurea analogues, were considered as potential triosephosphate isomerase inhibitors, showing better trypanocidal activity against NINOA and INC-5 strains, respectively, than the reference drugs. Molecular dynamics simulations predicted the stability of the compounds in complex with their respective proteins. Finally, the ADMET predictive analysis showed favorable properties for the compounds. These results support continued research into new agents against Trypanosoma cruzi, using structures of drugs already approved by the FDA.

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Cite This Study

Vázquez-Jiménez et al. (2026) studied this question.

synapsesocial.com/papers/69e472d8010ef96374d8ec7fhttps://doi.org/10.3390/molecules31081327
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