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Investigations on Anticancer and Antimalarial Activities of Indole-Sulfonamide Derivatives and In Silico Studies

[Image: see text] A library of 44 indole-sulfonamide derivatives (1–44) were investigated for their cytotoxic activities against four cancer cell lines (i.e., HuCCA-1, HepG2, A549, and MOLT-3) and antimalarial effect. Most of the studied indoles exhibit anticancer activity against the MOLT-3 cell li...

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Autores principales: Pingaew, Ratchanok, Mandi, Prasit, Prachayasittikul, Veda, Thongnum, Anusit, Prachayasittikul, Supaluk, Ruchirawat, Somsak, Prachayasittikul, Virapong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2021
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8638007/
https://www.ncbi.nlm.nih.gov/pubmed/34870008
http://dx.doi.org/10.1021/acsomega.1c04552
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author Pingaew, Ratchanok
Mandi, Prasit
Prachayasittikul, Veda
Thongnum, Anusit
Prachayasittikul, Supaluk
Ruchirawat, Somsak
Prachayasittikul, Virapong
author_facet Pingaew, Ratchanok
Mandi, Prasit
Prachayasittikul, Veda
Thongnum, Anusit
Prachayasittikul, Supaluk
Ruchirawat, Somsak
Prachayasittikul, Virapong
author_sort Pingaew, Ratchanok
collection PubMed
description [Image: see text] A library of 44 indole-sulfonamide derivatives (1–44) were investigated for their cytotoxic activities against four cancer cell lines (i.e., HuCCA-1, HepG2, A549, and MOLT-3) and antimalarial effect. Most of the studied indoles exhibit anticancer activity against the MOLT-3 cell line, whereas only hydroxyl-containing bisindoles displayed anticancer activities against the other tested cancer cells as well as antimalarial effect. The most promising anticancer compounds were noted to be CF(3), Cl, and NO(2) derivatives of hydroxyl-bearing bisindoles (30, 31, and 36), while the most promising antimalarial compound was an OCH(3) derivative of non-hydroxyl-containing bisindole 11. Five quantitative structure–activity relationship (QSAR) models were successfully constructed, providing acceptable predictive performance (training set: R = 0.6186–0.9488, RMSE = 0.0938–0.2432; validation set: R = 0.4242–0.9252, RMSE = 0.1100–0.2785). QSAR modeling revealed that mass, charge, polarizability, van der Waals volume, and electronegativity are key properties governing activities of the compounds. QSAR models were further applied to guide the rational design of an additional set of 22 compounds (P1–P22) in which their activities were predicted. The prediction revealed a set of promising virtually constructed compounds (P1, P3, P9, P10, and P16) for further synthesis and development as anticancer and antimalarial agents. Molecular docking was also performed to reveal possible modes of bindings and interactions between the studied compounds and target proteins. Taken together, insightful structure–activity relationship information obtained herein would be beneficial for future screening, design, and structural optimization of the related compounds.
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spelling pubmed-86380072021-12-03 Investigations on Anticancer and Antimalarial Activities of Indole-Sulfonamide Derivatives and In Silico Studies Pingaew, Ratchanok Mandi, Prasit Prachayasittikul, Veda Thongnum, Anusit Prachayasittikul, Supaluk Ruchirawat, Somsak Prachayasittikul, Virapong ACS Omega [Image: see text] A library of 44 indole-sulfonamide derivatives (1–44) were investigated for their cytotoxic activities against four cancer cell lines (i.e., HuCCA-1, HepG2, A549, and MOLT-3) and antimalarial effect. Most of the studied indoles exhibit anticancer activity against the MOLT-3 cell line, whereas only hydroxyl-containing bisindoles displayed anticancer activities against the other tested cancer cells as well as antimalarial effect. The most promising anticancer compounds were noted to be CF(3), Cl, and NO(2) derivatives of hydroxyl-bearing bisindoles (30, 31, and 36), while the most promising antimalarial compound was an OCH(3) derivative of non-hydroxyl-containing bisindole 11. Five quantitative structure–activity relationship (QSAR) models were successfully constructed, providing acceptable predictive performance (training set: R = 0.6186–0.9488, RMSE = 0.0938–0.2432; validation set: R = 0.4242–0.9252, RMSE = 0.1100–0.2785). QSAR modeling revealed that mass, charge, polarizability, van der Waals volume, and electronegativity are key properties governing activities of the compounds. QSAR models were further applied to guide the rational design of an additional set of 22 compounds (P1–P22) in which their activities were predicted. The prediction revealed a set of promising virtually constructed compounds (P1, P3, P9, P10, and P16) for further synthesis and development as anticancer and antimalarial agents. Molecular docking was also performed to reveal possible modes of bindings and interactions between the studied compounds and target proteins. Taken together, insightful structure–activity relationship information obtained herein would be beneficial for future screening, design, and structural optimization of the related compounds. American Chemical Society 2021-11-18 /pmc/articles/PMC8638007/ /pubmed/34870008 http://dx.doi.org/10.1021/acsomega.1c04552 Text en © 2021 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Pingaew, Ratchanok
Mandi, Prasit
Prachayasittikul, Veda
Thongnum, Anusit
Prachayasittikul, Supaluk
Ruchirawat, Somsak
Prachayasittikul, Virapong
Investigations on Anticancer and Antimalarial Activities of Indole-Sulfonamide Derivatives and In Silico Studies
title Investigations on Anticancer and Antimalarial Activities of Indole-Sulfonamide Derivatives and In Silico Studies
title_full Investigations on Anticancer and Antimalarial Activities of Indole-Sulfonamide Derivatives and In Silico Studies
title_fullStr Investigations on Anticancer and Antimalarial Activities of Indole-Sulfonamide Derivatives and In Silico Studies
title_full_unstemmed Investigations on Anticancer and Antimalarial Activities of Indole-Sulfonamide Derivatives and In Silico Studies
title_short Investigations on Anticancer and Antimalarial Activities of Indole-Sulfonamide Derivatives and In Silico Studies
title_sort investigations on anticancer and antimalarial activities of indole-sulfonamide derivatives and in silico studies
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8638007/
https://www.ncbi.nlm.nih.gov/pubmed/34870008
http://dx.doi.org/10.1021/acsomega.1c04552
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