Synthesis, Evaluation of Cytotoxicity and Molecular Docking Studies of the 7-Acetamido Substituted 2-Aryl-5-bromo-3-trifluoroacetylindoles as Potential Inhibitors of Tubulin Polymerization

The 3-trifluoroacetyl–substituted 7-acetamido-2-aryl-5-bromoindoles 5a–h were prepared and evaluated for potential antigrowth effect in vitro against human lung cancer (A549) and cervical cancer (HeLa) cells and for the potential to inhibit tubulin polymerization. The correspondi...

Full description

Bibliographic Details
Main Authors: Malose J. Mphahlele, Nishal Parbhoo
Format: Article
Language:English
Published: MDPI AG 2018-06-01
Series:Pharmaceuticals
Subjects:
Online Access:http://www.mdpi.com/1424-8247/11/2/59
id doaj-1dd76f389fd24a2db81a048f824dc2fc
record_format Article
spelling doaj-1dd76f389fd24a2db81a048f824dc2fc2020-11-25T03:55:11ZengMDPI AGPharmaceuticals1424-82472018-06-011125910.3390/ph11020059ph11020059Synthesis, Evaluation of Cytotoxicity and Molecular Docking Studies of the 7-Acetamido Substituted 2-Aryl-5-bromo-3-trifluoroacetylindoles as Potential Inhibitors of Tubulin PolymerizationMalose J. Mphahlele0Nishal Parbhoo1Department of Chemistry, College of Science, Engineering and Technology, University of South Africa, Private Bag X06, Florida 1710, South AfricaDepartment of Life & Consumer Sciences, College of Agriculture and Environmental Sciences, University of South Africa, Private Bag X06, Florida 1710, South AfricaThe 3-trifluoroacetyl–substituted 7-acetamido-2-aryl-5-bromoindoles 5a–h were prepared and evaluated for potential antigrowth effect in vitro against human lung cancer (A549) and cervical cancer (HeLa) cells and for the potential to inhibit tubulin polymerization. The corresponding intermediates, namely, the 3-unsubstituted 7-acetyl-2-aryl-5-bromoindole 2a–d and 7-acetamido-2-aryl-5-bromoindole 4a–d were included in the assays in order to correlate both structural variations and cytotoxicity. No cytotoxicity was observed for compounds 2a–d and their 3-trifluoroacetyl–substituted derivatives 5a–d against both cell lines. The 7-acetamido derivatives 4–d exhibited modest cytotoxicity against both cell lines. All of the 3-trifluoroacetyl–substituted 7-acetamido-2-aryl-5-bromoindoles 5e–h were found to be more active against both cell lines when compared to the chemotherapeutic drug, Melphalan. The most active compound, 5g, induced programmed cell death (apoptosis) in a caspase-dependent manner for both A549 and HeLa cells. Compounds 5e–h were found to significantly inhibit tubulin polymerization against indole-3-carbinol and colchicine as reference standards. Molecular docking of 5g into the colchicine-binding site suggests that the compounds bind to tubulin by different type of interactions including pi-alkyl, amide-pi stacked and alkyl interactions as well as hydrogen bonding with the protein residues to elicit anticancer activity.http://www.mdpi.com/1424-8247/11/2/597-acetamido-2-aryl-5-bromoindolestrifluoroacetylationcytotoxicityapoptosistubulin polymerizationmolecular docking
collection DOAJ
language English
format Article
sources DOAJ
author Malose J. Mphahlele
Nishal Parbhoo
spellingShingle Malose J. Mphahlele
Nishal Parbhoo
Synthesis, Evaluation of Cytotoxicity and Molecular Docking Studies of the 7-Acetamido Substituted 2-Aryl-5-bromo-3-trifluoroacetylindoles as Potential Inhibitors of Tubulin Polymerization
Pharmaceuticals
7-acetamido-2-aryl-5-bromoindoles
trifluoroacetylation
cytotoxicity
apoptosis
tubulin polymerization
molecular docking
author_facet Malose J. Mphahlele
Nishal Parbhoo
author_sort Malose J. Mphahlele
title Synthesis, Evaluation of Cytotoxicity and Molecular Docking Studies of the 7-Acetamido Substituted 2-Aryl-5-bromo-3-trifluoroacetylindoles as Potential Inhibitors of Tubulin Polymerization
title_short Synthesis, Evaluation of Cytotoxicity and Molecular Docking Studies of the 7-Acetamido Substituted 2-Aryl-5-bromo-3-trifluoroacetylindoles as Potential Inhibitors of Tubulin Polymerization
title_full Synthesis, Evaluation of Cytotoxicity and Molecular Docking Studies of the 7-Acetamido Substituted 2-Aryl-5-bromo-3-trifluoroacetylindoles as Potential Inhibitors of Tubulin Polymerization
title_fullStr Synthesis, Evaluation of Cytotoxicity and Molecular Docking Studies of the 7-Acetamido Substituted 2-Aryl-5-bromo-3-trifluoroacetylindoles as Potential Inhibitors of Tubulin Polymerization
title_full_unstemmed Synthesis, Evaluation of Cytotoxicity and Molecular Docking Studies of the 7-Acetamido Substituted 2-Aryl-5-bromo-3-trifluoroacetylindoles as Potential Inhibitors of Tubulin Polymerization
title_sort synthesis, evaluation of cytotoxicity and molecular docking studies of the 7-acetamido substituted 2-aryl-5-bromo-3-trifluoroacetylindoles as potential inhibitors of tubulin polymerization
publisher MDPI AG
series Pharmaceuticals
issn 1424-8247
publishDate 2018-06-01
description The 3-trifluoroacetyl–substituted 7-acetamido-2-aryl-5-bromoindoles 5a–h were prepared and evaluated for potential antigrowth effect in vitro against human lung cancer (A549) and cervical cancer (HeLa) cells and for the potential to inhibit tubulin polymerization. The corresponding intermediates, namely, the 3-unsubstituted 7-acetyl-2-aryl-5-bromoindole 2a–d and 7-acetamido-2-aryl-5-bromoindole 4a–d were included in the assays in order to correlate both structural variations and cytotoxicity. No cytotoxicity was observed for compounds 2a–d and their 3-trifluoroacetyl–substituted derivatives 5a–d against both cell lines. The 7-acetamido derivatives 4–d exhibited modest cytotoxicity against both cell lines. All of the 3-trifluoroacetyl–substituted 7-acetamido-2-aryl-5-bromoindoles 5e–h were found to be more active against both cell lines when compared to the chemotherapeutic drug, Melphalan. The most active compound, 5g, induced programmed cell death (apoptosis) in a caspase-dependent manner for both A549 and HeLa cells. Compounds 5e–h were found to significantly inhibit tubulin polymerization against indole-3-carbinol and colchicine as reference standards. Molecular docking of 5g into the colchicine-binding site suggests that the compounds bind to tubulin by different type of interactions including pi-alkyl, amide-pi stacked and alkyl interactions as well as hydrogen bonding with the protein residues to elicit anticancer activity.
topic 7-acetamido-2-aryl-5-bromoindoles
trifluoroacetylation
cytotoxicity
apoptosis
tubulin polymerization
molecular docking
url http://www.mdpi.com/1424-8247/11/2/59
work_keys_str_mv AT malosejmphahlele synthesisevaluationofcytotoxicityandmoleculardockingstudiesofthe7acetamidosubstituted2aryl5bromo3trifluoroacetylindolesaspotentialinhibitorsoftubulinpolymerization
AT nishalparbhoo synthesisevaluationofcytotoxicityandmoleculardockingstudiesofthe7acetamidosubstituted2aryl5bromo3trifluoroacetylindolesaspotentialinhibitorsoftubulinpolymerization
_version_ 1724470239892078592