Design, synthesis, in vitro antiproliferative effect and in situ molecular docking studies of a series of new benzoquinoline derivatives

Quinoline derivatives have been reported to possess multi-therapeutic potential owing to the manifestations of different pharmacological effects. The current research work describes about the design and synthesis of a series of novel benzoquinoline analogues with an objective to evaluate their antip...

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Main Authors: Abdulrashid Umar, Hassan M. Faidallah, Qamar Uddin Ahmed, Khalid.A. Alamry, Sayeed Mukhtar, Meshari A. Alsharif, Syed Najmul Hejaz Azmi, Humaira Parveen, Zainul Amiruddin Zakaria, Mostafa A. Hussien
Format: Article
Language:English
English
Published: Elsevier 2022
Subjects:
Online Access:https://eprints.ums.edu.my/id/eprint/38373/1/ABSTRACT.pdf
https://eprints.ums.edu.my/id/eprint/38373/2/FULLTEXT.pdf
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author Abdulrashid Umar
Hassan M. Faidallah
Qamar Uddin Ahmed
Khalid.A. Alamry
Sayeed Mukhtar
Meshari A. Alsharif
Syed Najmul Hejaz Azmi
Humaira Parveen
Zainul Amiruddin Zakaria
Mostafa A. Hussien
author_facet Abdulrashid Umar
Hassan M. Faidallah
Qamar Uddin Ahmed
Khalid.A. Alamry
Sayeed Mukhtar
Meshari A. Alsharif
Syed Najmul Hejaz Azmi
Humaira Parveen
Zainul Amiruddin Zakaria
Mostafa A. Hussien
author_sort Abdulrashid Umar
collection UMS
description Quinoline derivatives have been reported to possess multi-therapeutic potential owing to the manifestations of different pharmacological effects. The current research work describes about the design and synthesis of a series of novel benzoquinoline analogues with an objective to evaluate their antiproliferative structure–activity relationship against colon, breast and hepatocellular cancers. Upon synthesis, all derivatives’ chemical structures were elucidated through FTIR, 1HNMR and 13CNMR spectroscopic analysis. All derivatives were investigated for their in vitro anti-proliferative property against three different cancer cell lines (viz., colon carcinoma HT29, Caucasian breast adenocarcinoma MCF7, hepatocellular carcinoma HepG2) and a normal non-transformed human foreskin fibroblast Hs27 cell line. All derivatives demonstrated varied degrees of strong anticancer effect against all of the cell lines with the 2-Amino-4-(4-nitrophenyl)-5,6-dihydrobenzo[h]quinoline-3-carbonitrile (CNMP, 2) exhibited the most potent antiproliferative effect viz. LC50 21.23 lM for breast, 8.24 lM for colon, and 26.15 lM for the hepatocellular, respectively. Molecular docking studies against all the the target crystal structures of cancer proteins (1HK7, 3EQM, 3IG7 and 4FM9) revealed significant binding affinities via hydrophobic and H-bonding interactions with all the compounds in conformity with the wet lab results. CNMP showed the highest binding energy of 7.55 in the HT29, 6.9 (both in MCF7 HepG2) kcal/mol. Based on the results obtained from wet lab and dry lab experiments, it can be proposed that CNMP might prove to be a potential lead structure for the design and synthesis of more potent anticancer candidates.
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spelling ums.eprints-383732024-02-27T01:55:46Z https://eprints.ums.edu.my/id/eprint/38373/ Design, synthesis, in vitro antiproliferative effect and in situ molecular docking studies of a series of new benzoquinoline derivatives Abdulrashid Umar Hassan M. Faidallah Qamar Uddin Ahmed Khalid.A. Alamry Sayeed Mukhtar Meshari A. Alsharif Syed Najmul Hejaz Azmi Humaira Parveen Zainul Amiruddin Zakaria Mostafa A. Hussien QD1-999 Chemistry Quinoline derivatives have been reported to possess multi-therapeutic potential owing to the manifestations of different pharmacological effects. The current research work describes about the design and synthesis of a series of novel benzoquinoline analogues with an objective to evaluate their antiproliferative structure–activity relationship against colon, breast and hepatocellular cancers. Upon synthesis, all derivatives’ chemical structures were elucidated through FTIR, 1HNMR and 13CNMR spectroscopic analysis. All derivatives were investigated for their in vitro anti-proliferative property against three different cancer cell lines (viz., colon carcinoma HT29, Caucasian breast adenocarcinoma MCF7, hepatocellular carcinoma HepG2) and a normal non-transformed human foreskin fibroblast Hs27 cell line. All derivatives demonstrated varied degrees of strong anticancer effect against all of the cell lines with the 2-Amino-4-(4-nitrophenyl)-5,6-dihydrobenzo[h]quinoline-3-carbonitrile (CNMP, 2) exhibited the most potent antiproliferative effect viz. LC50 21.23 lM for breast, 8.24 lM for colon, and 26.15 lM for the hepatocellular, respectively. Molecular docking studies against all the the target crystal structures of cancer proteins (1HK7, 3EQM, 3IG7 and 4FM9) revealed significant binding affinities via hydrophobic and H-bonding interactions with all the compounds in conformity with the wet lab results. CNMP showed the highest binding energy of 7.55 in the HT29, 6.9 (both in MCF7 HepG2) kcal/mol. Based on the results obtained from wet lab and dry lab experiments, it can be proposed that CNMP might prove to be a potential lead structure for the design and synthesis of more potent anticancer candidates. Elsevier 2022-03-31 Article NonPeerReviewed text en https://eprints.ums.edu.my/id/eprint/38373/1/ABSTRACT.pdf text en https://eprints.ums.edu.my/id/eprint/38373/2/FULLTEXT.pdf Abdulrashid Umar and Hassan M. Faidallah and Qamar Uddin Ahmed and Khalid.A. Alamry and Sayeed Mukhtar and Meshari A. Alsharif and Syed Najmul Hejaz Azmi and Humaira Parveen and Zainul Amiruddin Zakaria and Mostafa A. Hussien (2022) Design, synthesis, in vitro antiproliferative effect and in situ molecular docking studies of a series of new benzoquinoline derivatives. Journal of King Saud University - Science, 34 (102003). ISSN 1018-3647 https://doi.org/10.1016/j.jksus.2022.102003
spellingShingle QD1-999 Chemistry
Abdulrashid Umar
Hassan M. Faidallah
Qamar Uddin Ahmed
Khalid.A. Alamry
Sayeed Mukhtar
Meshari A. Alsharif
Syed Najmul Hejaz Azmi
Humaira Parveen
Zainul Amiruddin Zakaria
Mostafa A. Hussien
Design, synthesis, in vitro antiproliferative effect and in situ molecular docking studies of a series of new benzoquinoline derivatives
title Design, synthesis, in vitro antiproliferative effect and in situ molecular docking studies of a series of new benzoquinoline derivatives
title_full Design, synthesis, in vitro antiproliferative effect and in situ molecular docking studies of a series of new benzoquinoline derivatives
title_fullStr Design, synthesis, in vitro antiproliferative effect and in situ molecular docking studies of a series of new benzoquinoline derivatives
title_full_unstemmed Design, synthesis, in vitro antiproliferative effect and in situ molecular docking studies of a series of new benzoquinoline derivatives
title_short Design, synthesis, in vitro antiproliferative effect and in situ molecular docking studies of a series of new benzoquinoline derivatives
title_sort design synthesis in vitro antiproliferative effect and in situ molecular docking studies of a series of new benzoquinoline derivatives
topic QD1-999 Chemistry
url https://eprints.ums.edu.my/id/eprint/38373/1/ABSTRACT.pdf
https://eprints.ums.edu.my/id/eprint/38373/2/FULLTEXT.pdf
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