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Nitrogen-containing flavonoid and their analogs with diverse B-ring in acetylcholinesterase and butyrylcholinesterase inhibition
Authors:Qiao-Qiao Lu  Ya-Ming Chen  Hao-Ran Liu  Jian-Ye Yan  Pei-Wu Cui  Qian-Fan Zhang  Xiao-Hui Gao  Xing Feng  Ying-Zi Liu
Affiliation:1. Department of Chemical Biology, College of Chemistry and Chemical Engineering, Hu'nan University, Changsha, China;2. Department of Pharmacy, College of Pharmacy, Hu'nan University of Chinese Medicine, Changsha, China;3. Department of Pharmacy, College of Pharmacy, Changsha Medical University, Changsha, China;4. Department of Pharmacy, College of Medicine, Hu'nan Normal University, Changsha, China
Abstract:In this study, a series of new flavones (2-phenyl-chromone), 2-naphthyl chromone, 2-anthryl-chromone, or 2-biphenyl-chromone derivatives containing 6 or 7-substituted tertiary amine side chain were designed, synthesized, and evaluated in acetylcholinesterase (AChE) and butyrylcholinesterase (BChE) inhibition. The results indicated that the alteration of aromatic ring connecting to chromone scaffold brings about a significant impact on biological activity. Compared with flavones, the inhibitory activity of 2-naphthyl chromone, 2-anthryl-chromone derivatives against AChE significantly decreased, while that of 2-biphenyl chromone derivatives with 7-substituted tertiary amine side chain is better than relative flavones derivatives. For all new synthesized compounds, the position of tertiary amine side chain obviously influenced the activity of inhibiting AChE. The results above provide great worthy information for the further development of new AChE inhibitors. Among the newly synthesized compounds, compound 5a is potent in AChE inhibition (IC50 = 1.29 ± 0.10 μmol/L) with high selectivity for AChE over BChE (selectivity ratio: 27.96). An enzyme kinetic study of compound 5a suggests that it produces a mixed-type inhibitory effect against AChE.
Keywords:cholinesterase inhibitors  flavonoid analog  structure–activity relationship
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