Key result
Vismione B reduces Trypanosoma cruzi infection more effectively than benznidazole in human cardiomyocytes without cytotoxicity.
Why the study?
New molecules from traditional African medicine were tested for efficacy against Trypanosoma cruzi infection to identify potential treatments for Chagas disease.
Does vismione B reduce Trypanosoma cruzi infection and multiplication in Vero cells and hiPSC-derived cardiomyocytes compared to benznidazole?
Does vismione B reduce Trypanosoma cruzi infection and multiplication in Vero cells and hiPSC-derived cardiomyocytes compared to benznidazole?
Vismione B is more potent than benznidazole against Trypanosoma cruzi infection in human stem cell-derived cardiomyocytes, highlighting its potential as a novel therapeutic lead for Chagas disease.
Supports vismione B as a Chagas lead compound; leaves open in vivo efficacy and clinical translation.
Traditional African medicine is a source of new molecules that might be useful in modern therapeutics. We tested ten limonoids, six quinones, one xanthone, one alkaloid, and one cycloartane, isolated from four Cameroonian medicinal plants, and one plant-associated endophytic fungus, against Trypanosoma cruzi, the etiological agent of Chagas disease (CD). Vero cells, or human-induced pluripotent stem cells (hiPSC)–derived cardiomyocytes (hiPSC-CM) were infected with T. cruzi trypomastigotes (discrete typing unit types I or II). Infection took place in the presence of drugs, or 24 hours before drug treatment. Forty-eight hours after infection, infection rates and parasite multiplication were evaluated by Giemsa stain. Cell metabolism was measured to determine functional integrity. In Vero cells, several individual molecules significantly affected T. cruzi infection and multiplication with no, or minor, effects on cell viability. Reduced infection rates and multiplication by the quinone vismione B was superior to the commonly used therapeutic benznidazole (BNZ). The vismione B concentration inhibiting 50% of T. cruzi infection (IC50) was 1.3 µM. When drug was applied after infection, anti-Trypanosoma effects of vismione B [10 µM) were significantly stronger than effects of BNZ (23 µM). Furthermore, in hiPSC-CM cultures, infection and multiplication rates in the presence of vismione B (10 µM) were significantly lower than in BNZ (11.5 µM), without showing signs of cytotoxicity. Our data indicate that vismione B is more potent against T. cruzi infection and multiplication than BNZ, with stronger effects on established infection. Vismione B, therefore, might become a promising lead molecule for treatment development for CD.
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Sass et al. (2019) studied Trypanosoma cruzi infection (Chagas disease). Vismione B vs. Benznidazole (BNZ) was evaluated on Infection rates and parasite multiplication. Vismione B (10 µM) significantly reduced Trypanosoma cruzi infection and multiplication rates in human stem cell-derived cardiomyocytes compared to benznidazole (11.5 µM) without cytotoxicity.
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