Por favor, use este identificador para citar o enlazar este ítem: https://hdl.handle.net/10495/44455
Título : Menthol carbonates as potent antiparasitic agents: synthesis and in vitro studies along with computer-aided approaches
Autor : Robledo Restrepo, Sara María
Clemente, Camila M.
Ravetti, Soledad
metadata.dc.subject.*: Antiparasitarios
Antiparasitic Agents
Carbonatos
Carbonates
Enfermedad de Chagas
Chagas Disease
Mentol
Menthol
Profármacos
Prodrugs
Simulación de Dinámica Molecular
Molecular Dynamics Simulation
Citotoxicidad
Cytotoxicity
http://aims.fao.org/aos/agrovoc/c_34251
https://id.nlm.nih.gov/mesh/D000977
https://id.nlm.nih.gov/mesh/D002254
https://id.nlm.nih.gov/mesh/D014355
https://id.nlm.nih.gov/mesh/D008610
https://id.nlm.nih.gov/mesh/D011355
https://id.nlm.nih.gov/mesh/D056004
Fecha de publicación : 2022
Editorial : BMC (BioMed Central)
Citación : Clemente CM, Robledo SM, Ravetti S. Menthol carbonates as potent antiparasitic agents: synthesis and in vitro studies along with computer-aided approaches. BMC Complement Med Ther. 2022 Jun 13;22(1):156. doi: 10.1186/s12906-022-03636-8.
Resumen : ABSTRACT: Introduction: Despite the number of deaths and the signifcant economic and social costs associated with Chagas, Leishmaniasis and Malaria diseases worldwide, available drugs are limited and have serious side efects and high toxicity for the patient. Therefore, there is an urgent need for safe, low-cost, and efective treatments. Natural products are an important source of bioactive compounds and there is current interest in fnding natural bioactive molecules that can be used for treating these parasitic diseases. In the present study we proposed to evaluate the in vitro antiparasitic activity of new menthol derivatives against Trypanosoma cruzi, Leishmania braziliensis and Plasmodium falciparum; moreover, we propose to explore their mode of action through in silico approaches. Material and methods: A series of carbonate prodrugs (1–9) were synthesized from menthol with diferent aliphatic alcohols. Spectroscopic techniques were used to confrm the structures of the synthesized compounds. The cytotoxicity of the compounds was assessed using U-937 cells. In vitro trypanocidal, leishmanicidal and antiplasmodial activity were evaluated using a T. cruzi, L. braziliensis and P. falciparum organism, respectively. In addition, in silico studies were also performed through molecular dynamics simulations and MM-PBSA analysis. Results: The assay revealed that most of the compounds were highly active against intracellular amastigotes of T. cruzi and L. braziliensis, and had moderate activity against the total forms of P. falciparum. Compound 2 was one of the drugs that showed a high selectivity index (SI) for the three organisms evaluated. The prediction of the ADME properties suggests that all the compounds have drug-like molecular properties and the probability to be lead candidates. Finally, molecular dynamics simulations, and MM-PBSA studies indicate that menthol at the substrate binding site of TcDHODH, LbDHODH and PfDHODH is structurally stable in the same order as the natural substrate; also, interactions of menthol with residues involved in the inhibition of TcDHODH and PfDHODH proteins were predicted. Conclusions: The present study demonstrates that menthol prodrugs are promising antiparasitic agents; however, the mechanisms of action proposed in this study need to be experimentally verifed by future enzymatic assays.
metadata.dc.identifier.eissn: 2662-7671
metadata.dc.identifier.doi: 10.1186/s12906-022-03636-8
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