Title of article :
Design, synthesis, and SAR study of isopropoxy allylbenzene derivatives as 15-lipoxygenase inhibitors
Author/Authors :
Mousavian, Mina Department of Biology - Faculty of Science - Payame Noor University, Mashhad , Alavi, Jamal Department of Laboratory Sciences - School of Paramedical Sciences - Mashhad University of Medical Sciences, Mashhad , Rahbarian, Raheleh Department of Biology - Faculty of Science - Payame Noor University, Mashhad , Rajabian, Majid Department of Biology - Faculty of Science - Payame Noor University, Mashhad , Orafai, Hossein M Department of Pharmaceutics - Faculty of Pharmacy - University of Al-Zahraa for Women - Karbala, Iraq , Sadeghian, Hamid Department of Laboratory Sciences - School of Paramedical Sciences - Mashhad University of Medical Sciences, Mashhad
Abstract :
Objective(s): Allylbenzenes have been recently developed as inhibitors of lipoxygenases. They decrease
peroxidation activity via mimicking 1,4-unsaturated bonds of fatty acids by their allyl portion. We
designed and synthesized new derivatives of allyl benzenes (6a-f) with isopropoxy and amide
substituents at ortho and meta positions towards allyl group, respectively. The inhibitory potency of
the synthetized allylbenzenes against soybean 15-lipoxygenase (SLO) and subsequently structureactivity
relationships was assessed.
Materials and Methods: 3-allyl-4-isopropoxybenzenamine (5) as starting material was synthesized by
coupling of 4-nitropheol with allyl bromide, performing Claisen rearrangement and finally reduction
of the nitro moiety. Final products 6a-f were prepared via amidation of 5 with the desired acyl chloride.
Results: Among the compounds, N-(3-allyl-4-isopropoxyphenyl)adamantan carboxamide (6f)
potentially showed best inhibition (IC50 = 1.35 μM) while 6a with cyclopropyl carboxamide moiety
was the weakest inhibitor and 6e with phenyl carboxamide moiety showed no effect. Energy
minimized 3D structures of the compounds were docked into the active site pocket of SLO. For the
aliphatic amides, docking results showed compatibility between inhibitory potency and average Ki of
the cluster conformers, in which their allyl moiety oriented towards SLO iron core. For the aliphatic
analogs, by enlargement of the amide moiety size the inhibitory potency was increased.
Conclusion: Docking results showed that orientation of the amide and allyl moieties of the inhibitors
in the active site pocket is the major factor in inhibitory potency variation. Based on the mentioned
orientation, for cycloaliphatic amides, by enlargement of the amide moiety both inhibition potency
and calculated binding energy increases.
Keywords :
15-lipoxygenase , Allylbenzene , DMAB , Kinetic , MBTH
Journal title :
Iranian Journal of Basic Medical Sciences