4.7 Article

Imidazolylacetophenone oxime-based multifunctional neuroprotective agents: Discovery and structure-activity relationships

Journal

EUROPEAN JOURNAL OF MEDICINAL CHEMISTRY
Volume 228, Issue -, Pages -

Publisher

ELSEVIER FRANCE-EDITIONS SCIENTIFIQUES MEDICALES ELSEVIER
DOI: 10.1016/j.ejmech.2021.114031

Keywords

Acetophenone oxime; Multifunctional; Anti-neuroinflammatory activity; Neuroprotective activity; COX-2; AChE; Metal chelating; Structure-activity relationships

Funding

  1. National Natural Science Foundation of China [82073730]
  2. Science and Technology Department, Shaanxi Province [2020NY-153]
  3. Instrument Shared Platform of Northwest AF University

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This study discovered a novel multitarget agent, imidazolylacetophenone oxime ether (IOE), with potential neuroprotective effects against Alzheimer's disease. IOE exhibited anti-neuroinflammatory, antioxidative damage, metal-chelating, and AChE inhibitory properties.
Alzheimer's disease (AD) possesses a complex pathogenetic mechanism. Nowadays, multitarget agents are considered to have potential in effectively treating AD via triggering molecules in functionally complementary pathways at the same time. Here, based on the screening (~1400 compounds) against neuroinflammation, an imidazolylacetophenone oxime ether (IOE) was discovered as a novel hit. In order to obtain SARs, a series of imidazolylacetophenone oxime derivatives were constructed, and their C1/4N bonds were confirmed as the Z configuration by single crystals. These derivatives exhibited potential multifunctional neuroprotective effects including anti-neuroinflammatory, antioxidative damage, metal-chelating, inhibition of acetylcholinesterase (AChE) properties. Among these derivatives, compound 12i displayed the most potent inhibitory activity against nitric oxide (NO) production with EC50 value of 0.57 mu M 12i can dose-dependently suppress the expression of iNOS and COX-2 but not change the expression of HO-1 protein. Moreover, 12i exhibited evidently neuroprotective effects on H2O2- induced PC12 cells damage and ferroptosis without cytotoxicity at 10 mu M, as well as selectively metal chelating properties via chelating Cu2+. In addition, 12i showed a mixed-type inhibitory effect on AChE in vitro. The structure-activity relationships (SARs) analysis indicated that dioxolane groups on benzene ring and rigid oxime ester can improve the activity. Parallel artificial membrane permeation assay (PAMPA) also verified that 12i can overcome the blood-brain barrier (BBB). Overall, this is the first report on imidazolylacetophenone oxime-based multifunctional neuroprotective effects, suggesting that this type of compounds might be novel multifunctional agents against AD. (c) 2021 Elsevier Masson SAS. All rights reserved.

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