Title of article :
Phthalimide analogs as probable 15- lipoxygenase-1 inhibitors: synthesis, biological evaluation and docking studies
Author/Authors :
Aliabadi, Alireza Pharmaceutical Sciences Research Center - School of Pharmacy - Kermanshah University of Medical Sciences, Kermanshah - Department of Medicinal Chemistry - Faculty of Pharmacy - Kermanshah University of Medical Sciences , Mohammadi-Farani, Ahmad Department of Pharmacology - Toxicology and Medical Services - Faculty of Pharmacy - Kermanshah University of Medical Sciences , Hosseinzadeh, Zeinab Department of Medicinal Chemistry - Faculty of Pharmacy - Kermanshah University of Medical Sciences - Students Research Committee - Kermanshah University of Medical Sciencesh , Nadri, Hamid Neurobiomedical Research Center - Yazd Shahid Sadoughi University of Medical Sciences, Yazd , Moradi, Alireza Neurobiomedical Research Center - Yazd Shahid Sadoughi University of Medical Sciences, Yazd , Ahmadi, Farahnaz Pharmaceutical Sciences Research Center - School of Pharmacy - Kermanshah University of Medical Sciences, Kermanshah - Department of Pharmacology - Toxicology and Medical Services - Faculty of Pharmacy - Kermanshah University of Medical Sciences
Abstract :
Background: Recent studies have been explained the role of lipoxygenases (LOX) in the origin of cancer. Among the
lipoxygenases, the 5-LOX, 12-LOX and 15-LOX are more important in the cause of neoplastic disorders. In the present
investigation, a new series of anticancer agents with 1,3,4-thiadiazole and phthalimide substructures were synthesized and
their in vitro cytotoxicity was evaluated by MTT assay. Moreover, enzyme inhibitory potency was also assessed by enzymatic
protocol towards 15-LOX-1. Molecular docking was performed to explore in silico binding mode of the target compounds.
Results: Tested compounds showed a better cytotoxic activity against HT29 cell line (colorectal cancer) in comparison
with other cell lines (PC3: prostate carcinoma; SKNMC: neuroblastoma). Unfortunately, all of the tested derivatives
rendered lower inhibitory potency than quercetin towards 15-LOX-1. Four hydrogen bonds were detected in docking
studies for compound 4d as the most potent derivative in enzymatic assay.
Conclusions: The biological results of reported compounds in this research were not so satisfactory. But, further
structural modifications are necessary to improve the bioactivity of these derivatives.
Keywords :
Synthesis , Phthalimide , 1,3,4-Thiadiazole , Lipoxygenase , Anticancer
Journal title :
Daru:Journal of Pharmaceutical Sciences