Synthesis and biological evaluation of C-4 substituted phenoxazine-bearing hydroxamic acids with potent class II histone deacetylase inhibitory activities

Class II histone deacetylases (HDACs) are considered as potential targets to treat Alzheimer's disease (AD). Previously, C-3 substituted phenothiazine-containing compounds with class II HDAC-inhibiting activities was found to promote neurite outgrowth. This study replaced phenothiazine moiety w...

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Veröffentlicht in:Journal of enzyme inhibition and medicinal chemistry 2023-12, Vol.38 (1), p.2212326-2212326
Hauptverfasser: Chu, Jung-Chun, Tseng, Hui-Ju, Lee, Sung-Bau, Hsu, Kai-Cheng, Hsin, Ling-Wei, Liang, Ru-Hao, Lin, Tony Eight, Gao, Nain-Chu, Chen, Liang-Chieh, Lu, Wan-Hsun, Wang, Andrew H.-J, Huang, Wei-Jan
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Sprache:eng
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Zusammenfassung:Class II histone deacetylases (HDACs) are considered as potential targets to treat Alzheimer's disease (AD). Previously, C-3 substituted phenothiazine-containing compounds with class II HDAC-inhibiting activities was found to promote neurite outgrowth. This study replaced phenothiazine moiety with phenoxazine that contains many C-3 and C-4 substituents. Some resulting compounds bearing the C-4 substituent on a phenoxazine ring displayed potent class II HDAC inhibitory activities. Structure-activity relationship (SAR) of these compounds that inhibited HDAC isoenzymes was disclosed. Molecular modelling analysis demonstrates that the potent activities of C-4 substituted compounds probably arise from π-π stacked interactions between these compounds and class IIa HDAC enzymes. One of these, compound 7d exhibited the most potent class II HDAC inhibition (IC 50 = 3-870 nM). Notably, it protected neuron cells from H 2 O 2 -induced neuron damage at sub-μM concentrations, but with no significant cytotoxicity. These findings show that compound 7d is a lead compound for further development of anti-neurodegenerative agents.
ISSN:1475-6366
1475-6374
DOI:10.1080/14756366.2023.2212326