神经保护
胆碱能的
抗氧化剂
阿切
药理学
胆碱能神经元
化学
医学
胆碱酯酶
乙酰胆碱酯酶抑制剂
神经毒性
塔克林
乙酰胆碱酯酶
胆碱能系统
类黄酮
氧化应激
乙酰胆碱
药品
抑制性突触后电位
多奈哌齐
效力
斑马鱼
氧化损伤
IC50型
脂质过氧化
作者
Alsiddig Osama,Miaomiao Ji,JianGuo Fang,Haiyu Zhao,Baoxin Zhang
标识
DOI:10.1021/acsmedchemlett.5c00524
摘要
Oxidative damage and cholinergic dysfunction are common pathological features of Alzheimer's disease (AD). Maintaining the redox balance of neurons and cholinergic signaling through antioxidants and acetylcholinesterase (AChE) inhibition may provide therapeutic benefits for AD. In this regard, we discovered three AChE inhibitors with more potency than the positive control (rivastigmine; IC50 = 24.5 μM). Among these active compounds, C5 (a flavonoid derivative) was the most potent AChE inhibitor with an IC50 of 5.02 μM, followed by C1, C6, and C2 with IC50 values of 7.94 μM, 8.13 μM, and 27.52 μM, respectively. Compound C5 also demonstrated strong neuroprotective activity, rescuing PC12 cells from H2O2-induced damage and scavenging various ROS models. Interestingly, C5 also prevented memory impairments in the scopolamine-induced cognitive dysfunction zebrafish model. Our findings suggest that C5 is a potential drug lead for cholinergic dysfunction-related disorders such as AD.
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