Synthesis and tyrosinase inhibitory activities of novel isopropylquinazolinones

被引:0
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作者
Arshia Hashemi
Milad Noori
Navid Dastyafteh
Seyed Esmaeil Sadat-Ebrahimi
Negin Fazelzadeh Haghighi
Katayoun Mehrpour
Elahe Sattarinezhad
Fatemeh Jalali Zafrei
Cambyz Irajie
Mohammad Ali Daneshmehr
Majid Heydari
Bagher Larijani
Aida Iraji
Mohammad Mahdavi
机构
[1] Tehran University of Medical Sciences,Department of Medicinal Chemistry, Faculty of Pharmacy and Pharmaceutical Sciences Research Center
[2] Tehran University of Medical Sciences,Endocrinology and Metabolism Research Center, Endocrinology and Metabolism Clinical Sciences Institute
[3] Shiraz University of Medical Sciences,Molecular Dermatology Research Center and Department of Dermatology
[4] Shiraz University of Medical Sciences,Stem Cells Technology Research Center
[5] Shiraz University of Medical Sciences,Central Research Laboratory
[6] Shiraz University of Medical Sciences,Department of Pharmacology, School of Medicine
[7] Guilan University of Medical Sciences,Cardiovascular Diseases Research Center, Department of Cardiology, Heshmat Hospital, School of Medicine
[8] Shiraz University of Medical Sciences,Department of Medical Biotechnology, School of Advanced Medical Sciences and Technologies
[9] Shiraz University of Medical Sciences,Student Research Committee
来源
BMC Chemistry | / 17卷
关键词
Isopropylquinazolinone; Synthesise; Tyrosinase; Enzyme inhibition; Kinetic evaluation; In silico studies;
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摘要
To find new anti-browning and whitening agents in this study, new series of isopropylquinazolinone derivatives were designed and synthesized. All derivatives were evaluated as possible tyrosinase inhibitors and compound 9q bearing 4-fluorobenzyl moieties at the R position exhibited the best potencies with an IC50 value of 34.67 ± 3.68 µM. The kinetic evaluations of 9q as the most potent derivatives recorded mix-type inhibition. Compounds 9o and 9q also exhibited potent antioxidant capacity with IC50 values of 38.81 and 40.73 µM, respectively confirming their antioxidant potential. Molecular docking studies of 9q as the most potent derivative were exacuated and it was shown that quinazolinone and acetamide moieties of compound 9q participated in interaction with critical His residues of the binding site. The obtained results demonstrated that the 9q can be considered a suitable pharmacophore to develop potent tyrosinase inhibitors.
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