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Optimization of 1,4-Naphthoquinone Hit Compound: A Computational, Phenotypic, and In Vivo Screening against Trypanosoma cruzi

Chagas disease (CD) still represents a serious public health problem in Latin America, even after more than 100 years of its discovery. Clinical treatments (nifurtimox and benznidazole) are considered inadequate, especially because of undesirable side effects and low efficacy in the chronic stages o...

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Autores principales: Lara, Leonardo S., Lechuga, Guilherme C., Moreira, Caroline dos S., Santos, Thaís B., Ferreira, Vitor F., da Rocha, David R., Pereira, Mirian C. S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7829778/
https://www.ncbi.nlm.nih.gov/pubmed/33467422
http://dx.doi.org/10.3390/molecules26020423
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author Lara, Leonardo S.
Lechuga, Guilherme C.
Moreira, Caroline dos S.
Santos, Thaís B.
Ferreira, Vitor F.
da Rocha, David R.
Pereira, Mirian C. S.
author_facet Lara, Leonardo S.
Lechuga, Guilherme C.
Moreira, Caroline dos S.
Santos, Thaís B.
Ferreira, Vitor F.
da Rocha, David R.
Pereira, Mirian C. S.
author_sort Lara, Leonardo S.
collection PubMed
description Chagas disease (CD) still represents a serious public health problem in Latin America, even after more than 100 years of its discovery. Clinical treatments (nifurtimox and benznidazole) are considered inadequate, especially because of undesirable side effects and low efficacy in the chronic stages of the disease, highlighting the urgency for discovering new effective and safe drugs. A small library of compounds (1a–i and 2a–j) was designed based on the structural optimization of a Hit compound derived from 1,4-naphthoquinones (C2) previously identified. The biological activity, structure-activity relationship (SAR), and the in silico physicochemical profiles of the naphthoquinone derivatives were analyzed. Most modifications resulted in increased trypanocidal activity but some substitutions also increased toxicity. The data reinforce the importance of the chlorine atom in the thiophenol benzene ring for trypanocidal activity, highlighting 1g, which exhibit a drug-likeness profile, as a promising compound against Trypanosoma cruzi. SAR analysis also revealed 1g as cliff generator in the structure-activity similarity map (SAS maps). However, compounds C2 and 1g were unable to reduce parasite load, and did not prevent mouse mortality in T. cruzi acute infection. Phenotypic screening and computational analysis have provided relevant information to advance the optimization and design of new 1,4-naphthoquinone derivatives with a better pharmacological profile.
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spelling pubmed-78297782021-01-26 Optimization of 1,4-Naphthoquinone Hit Compound: A Computational, Phenotypic, and In Vivo Screening against Trypanosoma cruzi Lara, Leonardo S. Lechuga, Guilherme C. Moreira, Caroline dos S. Santos, Thaís B. Ferreira, Vitor F. da Rocha, David R. Pereira, Mirian C. S. Molecules Article Chagas disease (CD) still represents a serious public health problem in Latin America, even after more than 100 years of its discovery. Clinical treatments (nifurtimox and benznidazole) are considered inadequate, especially because of undesirable side effects and low efficacy in the chronic stages of the disease, highlighting the urgency for discovering new effective and safe drugs. A small library of compounds (1a–i and 2a–j) was designed based on the structural optimization of a Hit compound derived from 1,4-naphthoquinones (C2) previously identified. The biological activity, structure-activity relationship (SAR), and the in silico physicochemical profiles of the naphthoquinone derivatives were analyzed. Most modifications resulted in increased trypanocidal activity but some substitutions also increased toxicity. The data reinforce the importance of the chlorine atom in the thiophenol benzene ring for trypanocidal activity, highlighting 1g, which exhibit a drug-likeness profile, as a promising compound against Trypanosoma cruzi. SAR analysis also revealed 1g as cliff generator in the structure-activity similarity map (SAS maps). However, compounds C2 and 1g were unable to reduce parasite load, and did not prevent mouse mortality in T. cruzi acute infection. Phenotypic screening and computational analysis have provided relevant information to advance the optimization and design of new 1,4-naphthoquinone derivatives with a better pharmacological profile. MDPI 2021-01-15 /pmc/articles/PMC7829778/ /pubmed/33467422 http://dx.doi.org/10.3390/molecules26020423 Text en © 2021 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Lara, Leonardo S.
Lechuga, Guilherme C.
Moreira, Caroline dos S.
Santos, Thaís B.
Ferreira, Vitor F.
da Rocha, David R.
Pereira, Mirian C. S.
Optimization of 1,4-Naphthoquinone Hit Compound: A Computational, Phenotypic, and In Vivo Screening against Trypanosoma cruzi
title Optimization of 1,4-Naphthoquinone Hit Compound: A Computational, Phenotypic, and In Vivo Screening against Trypanosoma cruzi
title_full Optimization of 1,4-Naphthoquinone Hit Compound: A Computational, Phenotypic, and In Vivo Screening against Trypanosoma cruzi
title_fullStr Optimization of 1,4-Naphthoquinone Hit Compound: A Computational, Phenotypic, and In Vivo Screening against Trypanosoma cruzi
title_full_unstemmed Optimization of 1,4-Naphthoquinone Hit Compound: A Computational, Phenotypic, and In Vivo Screening against Trypanosoma cruzi
title_short Optimization of 1,4-Naphthoquinone Hit Compound: A Computational, Phenotypic, and In Vivo Screening against Trypanosoma cruzi
title_sort optimization of 1,4-naphthoquinone hit compound: a computational, phenotypic, and in vivo screening against trypanosoma cruzi
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7829778/
https://www.ncbi.nlm.nih.gov/pubmed/33467422
http://dx.doi.org/10.3390/molecules26020423
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