Synthesis, biological evaluation, and in silico study of novel library sulfonates containing quinazolin-4(3H)-one derivatives as potential aldose reductase inhibitors

被引:81
作者
Tokali, Feyzi Sinan [1 ]
Demir, Yeliz [2 ]
Demircioglu, Ibrahim Hakki [3 ]
Turkes, Cuneyt [4 ]
Kalay, Erbay [1 ]
Sendil, Kivilcim [5 ]
Beydemir, Sukru [6 ,7 ]
机构
[1] Kafkas Univ, Kars Vocat Sch, Dept Mat & Mat Proc Technol, TR-36100 Kars, Turkey
[2] Ardahan Univ, Dept Pharm Serv, Nihat Delibalta Gole Vocat High Sch, TR-75700 Ardahan, Turkey
[3] Ataturk Univ, Dept Chem, Fac Sci, Erzurum, Turkey
[4] Erzincan Binali Yildirim Univ, Fac Pharm, Dept Biochem, Erzincan, Turkey
[5] Kafkas Univ, Fac Arts & Sci, Dept Chem, Kars, Turkey
[6] Anadolu Univ, Fac Pharm, Dept Biochem, Eskisehir, Turkey
[7] Rectorate Bilecik Seyh Edebali Univ, Bilecik, Turkey
关键词
ADME-Tox; aldose reductase; epalrestat; in silico study; molecular docking; quinazolinones; CALCIUM-CHANNEL BLOCKERS; CARBONIC-ANHYDRASE; MOLECULAR DOCKING; ACETYLCHOLINESTERASE; DESIGN; VITRO; ANTICONVULSANT; ANTITUMOR; PROTEIN; BUTYRYLCHOLINESTERASE;
D O I
10.1002/ddr.21887
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
A series of novel sulfonates containing quinazolin-4(3H)-one ring derivatives was designed to inhibit aldose reductase (ALR2, EC 1.1.1.21). Novel quinazolinone derivatives (1-21) were synthesized from the reaction of sulfonated aldehydes with 3-amino-2-alkylquinazolin-4(3H)-ones in glacial acetic acid with good yields (85%-94%). The structures of the novel molecules were characterized using IR, H-1-NMR, C-13-NMR, and HRMS. All the novel quinazolinones (1-21) demonstrated nanomolar levels of inhibitory activity against ALR2 (K(I)s are in the range of 101.50-2066.00 nM). Besides, 4-[(2-isopropyl-4-oxoquinazolin-3[4H]-ylimino)methyl]phenyl benzenesulfonate (15) showed higher inhibitor activity inhibited ALR2 up to 7.7-fold compared to epalrestat, a standard inhibitor. Binding interactions between ALR2 and quinazolinones have been investigated using Schrodinger Small-Molecule Drug Discovery Suite 2021-1, reported possible inhibitor-ALR2 interactions. Both in vitro and in silico study results suggest that these quinazolin-4(3H)-one ring derivatives (1-21) require further molecular modification to improve their drug nominee potency as an ALR2 inhibitor.
引用
收藏
页码:586 / 604
页数:19
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