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Cited 6 time in webofscience Cited 5 time in scopus
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2-(3-Bromophenyl)-8-fluoroquinazoline-4-carboxylic Acid as a Novel and Selective Aurora A Kinase Inhibitory Lead with Apoptosis Properties: Design, Synthesis, In Vitro and In Silico Biological Evaluationopen access

Authors
Elsherbeny, Mohamed H.Ammar, Usama M.Abdellattif, Magda H.Abourehab, Mohammed A. S.Abdeen, AhmedIbrahim, Samah F.Abdelrahaman, DoaaMady, WessamRoh, Eun JooElkamhawy, Ahmed
Issue Date
Jun-2022
Publisher
MDPI
Keywords
quinazoline; Aurora A; kinases; anticancer; molecular docking; cell cycle; apoptosis
Citation
Life, v.12, no.6, pp 1 - 16
Pages
16
Indexed
SCIE
SCOPUS
Journal Title
Life
Volume
12
Number
6
Start Page
1
End Page
16
URI
https://scholarworks.dongguk.edu/handle/sw.dongguk/3088
DOI
10.3390/life12060876
ISSN
2075-1729
2075-1729
Abstract
New quinazoline derivatives were designed based on the structural modification of the reported inhibitors to enhance their selectivity toward Aurora A. The synthesized compounds were tested over Aurora A, and a cytotoxicity assay was performed over NCI cell lines to select the best candidate for further evaluation. Compound 6e (2-(3-bromophenyl)-8-fluoroquinazoline-4-carboxylic acid) was the most potent compound among the tested derivatives. A Kinase panel assay was conducted for compound 6e over 14 kinases to evaluate its selectivity profile. Further cell cycle and apoptosis analysis were evaluated for compound 6e over the MCF-7 cell line at its IC50 of 168.78 mu M. It arrested the cell cycle at the G1 phase and induced apoptosis. Molecular docking was performed to explore the possible binding mode of compound 6e into the active site. It showed significant binding into the main pocket in addition to potential binding interactions with the key amino acid residues. Accordingly, compound 6e can be considered a potential lead for further structural and molecular optimization of the quinazoline-based carboxylic acid scaffold for Aurora A kinase selective inhibition with apoptosis properties.
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