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Computer-Aided Design, Synthesis, and Antiviral Evaluation of Novel Acrylamides as Potential Inhibitors of E3-E2-E1 Glycoproteins Complex from Chikungunya Virus

Chikungunya virus (CHIKV) causes an infectious disease characterized by inflammation and pain of the musculoskeletal tissues accompanied by swelling in the joints and cartilage damage. Currently, there are no licensed vaccines or chemotherapeutic agents to prevent or treat CHIKV infections. In this...

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Autores principales: Passos, Gabriel Felipe Silva, Gomes, Matheus Gabriel Moura, de Aquino, Thiago Mendonça, de Araújo-Júnior, João Xavier, de Souza, Stephannie Janaina Maia, Cavalcante, João Pedro Monteiro, dos Santos, Elane Conceição, Bassi, Ênio José, da Silva-Júnior, Edeildo Ferreira
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7407227/
https://www.ncbi.nlm.nih.gov/pubmed/32629969
http://dx.doi.org/10.3390/ph13070141
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author Passos, Gabriel Felipe Silva
Gomes, Matheus Gabriel Moura
de Aquino, Thiago Mendonça
de Araújo-Júnior, João Xavier
de Souza, Stephannie Janaina Maia
Cavalcante, João Pedro Monteiro
dos Santos, Elane Conceição
Bassi, Ênio José
da Silva-Júnior, Edeildo Ferreira
author_facet Passos, Gabriel Felipe Silva
Gomes, Matheus Gabriel Moura
de Aquino, Thiago Mendonça
de Araújo-Júnior, João Xavier
de Souza, Stephannie Janaina Maia
Cavalcante, João Pedro Monteiro
dos Santos, Elane Conceição
Bassi, Ênio José
da Silva-Júnior, Edeildo Ferreira
author_sort Passos, Gabriel Felipe Silva
collection PubMed
description Chikungunya virus (CHIKV) causes an infectious disease characterized by inflammation and pain of the musculoskeletal tissues accompanied by swelling in the joints and cartilage damage. Currently, there are no licensed vaccines or chemotherapeutic agents to prevent or treat CHIKV infections. In this context, our research aimed to explore the potential in vitro anti-CHIKV activity of acrylamide derivatives. In silico methods were applied to 132 Michael’s acceptors toward the six most important biological targets from CHIKV. Subsequently, the ten most promising acrylamides were selected and synthesized. From the cytotoxicity MTT assay, we verified that LQM330, 334, and 336 demonstrate high cell viability at 40 µM. Moreover, these derivatives exhibited anti-CHIKV activities, highlighting the compound LQM334 which exhibited an inhibition value of 81%. Thus, docking simulations were performed to suggest a potential CHIKV-target for LQM334. It was observed that the LQM334 has a high affinity towards the E3-E2-E1 glycoproteins complex. Moreover, LQM334 reduced the percentage of CHIKV-positive cells from 74.07 to 0.88%, 48h post-treatment on intracellular flow cytometry staining. In conclusion, all virtual simulations corroborated with experimental results, and LQM334 could be used as a promising anti-CHIKV scaffold for designing new drugs in the future.
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spelling pubmed-74072272020-08-11 Computer-Aided Design, Synthesis, and Antiviral Evaluation of Novel Acrylamides as Potential Inhibitors of E3-E2-E1 Glycoproteins Complex from Chikungunya Virus Passos, Gabriel Felipe Silva Gomes, Matheus Gabriel Moura de Aquino, Thiago Mendonça de Araújo-Júnior, João Xavier de Souza, Stephannie Janaina Maia Cavalcante, João Pedro Monteiro dos Santos, Elane Conceição Bassi, Ênio José da Silva-Júnior, Edeildo Ferreira Pharmaceuticals (Basel) Article Chikungunya virus (CHIKV) causes an infectious disease characterized by inflammation and pain of the musculoskeletal tissues accompanied by swelling in the joints and cartilage damage. Currently, there are no licensed vaccines or chemotherapeutic agents to prevent or treat CHIKV infections. In this context, our research aimed to explore the potential in vitro anti-CHIKV activity of acrylamide derivatives. In silico methods were applied to 132 Michael’s acceptors toward the six most important biological targets from CHIKV. Subsequently, the ten most promising acrylamides were selected and synthesized. From the cytotoxicity MTT assay, we verified that LQM330, 334, and 336 demonstrate high cell viability at 40 µM. Moreover, these derivatives exhibited anti-CHIKV activities, highlighting the compound LQM334 which exhibited an inhibition value of 81%. Thus, docking simulations were performed to suggest a potential CHIKV-target for LQM334. It was observed that the LQM334 has a high affinity towards the E3-E2-E1 glycoproteins complex. Moreover, LQM334 reduced the percentage of CHIKV-positive cells from 74.07 to 0.88%, 48h post-treatment on intracellular flow cytometry staining. In conclusion, all virtual simulations corroborated with experimental results, and LQM334 could be used as a promising anti-CHIKV scaffold for designing new drugs in the future. MDPI 2020-06-30 /pmc/articles/PMC7407227/ /pubmed/32629969 http://dx.doi.org/10.3390/ph13070141 Text en © 2020 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
Passos, Gabriel Felipe Silva
Gomes, Matheus Gabriel Moura
de Aquino, Thiago Mendonça
de Araújo-Júnior, João Xavier
de Souza, Stephannie Janaina Maia
Cavalcante, João Pedro Monteiro
dos Santos, Elane Conceição
Bassi, Ênio José
da Silva-Júnior, Edeildo Ferreira
Computer-Aided Design, Synthesis, and Antiviral Evaluation of Novel Acrylamides as Potential Inhibitors of E3-E2-E1 Glycoproteins Complex from Chikungunya Virus
title Computer-Aided Design, Synthesis, and Antiviral Evaluation of Novel Acrylamides as Potential Inhibitors of E3-E2-E1 Glycoproteins Complex from Chikungunya Virus
title_full Computer-Aided Design, Synthesis, and Antiviral Evaluation of Novel Acrylamides as Potential Inhibitors of E3-E2-E1 Glycoproteins Complex from Chikungunya Virus
title_fullStr Computer-Aided Design, Synthesis, and Antiviral Evaluation of Novel Acrylamides as Potential Inhibitors of E3-E2-E1 Glycoproteins Complex from Chikungunya Virus
title_full_unstemmed Computer-Aided Design, Synthesis, and Antiviral Evaluation of Novel Acrylamides as Potential Inhibitors of E3-E2-E1 Glycoproteins Complex from Chikungunya Virus
title_short Computer-Aided Design, Synthesis, and Antiviral Evaluation of Novel Acrylamides as Potential Inhibitors of E3-E2-E1 Glycoproteins Complex from Chikungunya Virus
title_sort computer-aided design, synthesis, and antiviral evaluation of novel acrylamides as potential inhibitors of e3-e2-e1 glycoproteins complex from chikungunya virus
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7407227/
https://www.ncbi.nlm.nih.gov/pubmed/32629969
http://dx.doi.org/10.3390/ph13070141
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