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Synthesis and antiprotozoal activity of furanchalcone–quinoline, furanchalcone–chromone and furanchalcone–imidazole hybrids

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Google Scholar Scholar | Other documents of the author: García, Elisa; Coa, Juan C.; Otero, Elver; Carda, Miguel; Vélez, Iván D.; Robledo, Sara M.; Cardona G, Wilson IMicrosoft Academico
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comunitat-uji-handle:10234/9

comunitat-uji-handle2:10234/7053

comunitat-uji-handle3:10234/8639

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https://doi.org/10.1007/s00044-017-2076-6

Metadata

Title
Synthesis and antiprotozoal activity of furanchalcone–quinoline, furanchalcone–chromone and furanchalcone–imidazole hybrids
Author (s)
García, Elisa;
Coa, Juan C.;
Otero, Elver;
Carda, MiguelOrcidResearcherID;
Vélez, Iván D.;
Robledo, Sara M.;
Cardona G, Wilson I
Date
2018
URI
http://hdl.handle.net/10234/174759
Publisher version
https://link.springer.com/article/10.1007/s00044-017-2076-6
DOI
https://doi.org/10.1007/s00044-017-2076-6
ISSN
1054-2523; 1554-8120
Publisher
Springer Verlag
Abstract
We report herein the synthesis and biological activities (cytotoxicity, leishmanicidal, and trypanocidal) of several furanchalcone–quinoline, furanchalcone–chromone, and furanchalcone–imidazole hybrids. The synthesized ... [+]
We report herein the synthesis and biological activities (cytotoxicity, leishmanicidal, and trypanocidal) of several furanchalcone–quinoline, furanchalcone–chromone, and furanchalcone–imidazole hybrids. The synthesized compounds were evaluated against amastigotes forms of L. (V) panamensis, which is the most prevalent Leishmania species in Colombia and against Trypanosoma cruzi, which is the major pathogenic species to humans. Cytotoxicity was evaluated against human U-937 macrophages. Compounds (6e, 8a–8f, 11b, and 11c) were active against both L. (V) panamensis and T. cruzi being 8e and 8f the most active compounds with an EC50 of 0.78 and 2.16 µM against L. (V) panamensis, respectively, and 0.66 and 0.72 µM against T. cruzi, respectively. Seven hybrid compounds showed better activity than meglumine antimoniate and the anti-trypanosomal activity of nine compounds were higher than benznidazole. Although these compounds showed toxicity for mammalian U-937 cells, they still have the potential to be considered as candidates for antileishmanial or trypanocydal drug development. There is not a clear relationship between the antiprotozoal activity and the length of the alkyl linker. However, we obtained higher bioactivity when the alkyl linker has nine and twelve carbon atoms. Furanchalcone-imidazole hybrids were the most active of all compounds, showing that the imidazole salt moiety is important for their biological actions. [-]
Subject
Leishmaniasis | Chagas disease | Antiprotozoal activity | Furanchalcone | Hybrids | Quinoline
Investigation project
grant CODI 6203 and CIDEPRO
Bibliographic citation
García, E., Coa, J.C., Otero, E. et al. Med Chem Res (2018) 27: 497. https://doi.org/10.1007/s00044-017-2076-6
Type
info:eu-repo/semantics/article
Rights
info:eu-repo/semantics/restrictedAccess
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  • QUIO_Articles [527]

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Our content is published in:

HispanaEuropeanaRePEc: Research Papers in EconomicsTesis Doctorals en XarxaGoogle ScholarRecolectaOpenDOARRevistes Catalanes d'Accés ObertOpenAIREMaterials Docents en Xarxa

Ministerio This project has received a grant from the Dirección General del Libro, Archivos y Bibliotecas of the Spanish Ministry of Culture.
DSpace
Metadata subject to:Public Domain | Information and queries:biblioteca@uji.es | Security and privacy center | Legal Advice
Universitat Jaume I - Av. de Vicent Sos Baynat, s/n 12071 Castelló de la Plana, Spain - Phone: +34 964 72 87 61 Fax: +34 964 72 87 78