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Cited 15 time in webofscience Cited 15 time in scopus
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4-Anilinoquinazoline-based benzenesulfonamides as nanomolar inhibitors of carbonic anhydrase isoforms I, II, IX, and XII: design, synthesis, in-vitro, and in-silico biological studiesopen access

Authors
Nada, HossamElkamhawy, AhmedAbdellattif, Magda H.Angeli, AndreaLee, Chang HoonSupuran, Claudiu T.Lee, Kyeong
Issue Date
Dec-2022
Publisher
Taylor & Francis
Keywords
Quinazoline-benzenesulfonamide hybrids; Suzuki coupling; Carbonic anhydrase inhibitors; Molecular docking
Citation
Journal of Enzyme Inhibition and Medicinal Chemistry, v.37, no.1, pp 994 - 1004
Pages
11
Indexed
SCIE
SCOPUS
Journal Title
Journal of Enzyme Inhibition and Medicinal Chemistry
Volume
37
Number
1
Start Page
994
End Page
1004
URI
https://scholarworks.dongguk.edu/handle/sw.dongguk/2135
DOI
10.1080/14756366.2022.2055553
ISSN
1475-6366
1475-6374
Abstract
Human carbonic anhydrase inhibitors (hCAIs) are a key therapeutic class with a multitude of novel applications such as anticonvulsants, topically acting antiglaucoma, and anticancer drugs. Herein, a new series of 4-anilinoquinazoline-based benzenesulfonamides were designed, synthesised, and biologically assessed as potential hCAIs. The target compounds are based on the well-tolerated kinase scaffold (4-anilinoquinazoline). Compounds 3a (89.4 nM), 4e (91.2 nM), and 4f (60.9 nM) exhibited 2.8, 2.7, and 4 folds higher potency against hCA I when compared to the standard (AAZ, V), respectively. A single digit nanomolar activity was elicited by compounds 3a (8.7 nM), 4a (2.4 nM), and 4e (4.6 nM) with 1.4, 5, and 2.6 folds of potency compared to AAZ (12.1 nM) against isoform hCA II, respectively. Structure-activity relationship (SAR) and molecular docking studies validated our design approach that revealed highly potent hCAIs.
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