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Updated: Jan 23, 2026

In Vitro Drug Screening Against All Life Cycle Stages of Trypanosoma cruzi Using Parasites Expressing β-galactosidase
Published on: November 5, 2021
Exploración de IMPDH de T. cruzi como un objetivo prometedor mediante el cribado de Chagas Box y la inhibición de
Angel Lobo-Rojas1, Letícia Marchese1, Amanda G Eufrasio1
1Brazilian Biosciences National Laboratory, Brazilian Center for Research in Energy and Materials, Campinas, São Paulo, Brazil.
Abstract:
Chagas disease, caused by Trypanosoma cruzi, remains a leading cause of heart failure in Latin America, with current treatments limited to acute-phase efficacy, significant toxicity, and emerging resistance. Inosine monophosphate dehydrogenase (IMPDH) is an essential enzyme in guanine nucleotide salvage pathway and represents a promising alternative target. Here, we combined computational screening, biochemical and cell-based phenotypic assays that support T. cruzi IMPDH (TcIMPDH) as a druggable target and identify repurposing opportunities among clinical-stage inhibitors. Using Tanimoto similarity scoring against the library of 222 Chagas Box compounds, we identified TCMDC-143376 as uniquely similar to the clinical IMPDH inhibitors merimepodib and AVN-944. Phylogenetic analysis and multiple sequence alignment confirmed conservation of both catalytic and allosteric residues-drawn from T. foetus and T. brucei structures-within TcIMPDH. Recombinant TcIMPDH kinetics revealed Michaelis constants of 155 µM for IMP and 292 µM for NAD+. Biochemical IC50 assays showed submicromolar inhibition by AVN-944 (0.20 µM), (S)-Merimepodib (0.21 µM), and (R)-Merimepodib (0.37 µM). In H9c2 cardiomyoblasts infected with intracellular amastigotes, AVN-944 achieved the lowest EC50 (0.4 µM), outperforming benznidazole (EC50 = 3.0 µM) and other inhibitors. Our findings support TcIMPDH as a promising alternative drug target for Chagas disease and position AVN-944 as a compelling candidate to evaluate this therapeutic strategy in animal models.
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