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Saffron as a Source of Novel Acetylcholinesterase Inhibitors: Molecular Docking and in Vitro Enzymatic Studies

机译:藏红花作为新型乙酰胆碱酯酶抑制剂的来源:分子对接和体外酶学研究

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Inhibitors of acetylcholine breakdown by acetylcholinesterase (AChE) constitute the main therapeutic modality for Alzheimer's disease. In the search for natural products with inhibitory action on AChE, this study investigated the activity of saffron extract and its constituents by in vitro enzymatic and molecular docking studies. Saffron has been used in traditional medicine against Alzheimer's disease. Saffron extract showed moderate AChE inhibitory activity (up to 30%), but IC_(50) values of crocetin, dimethylcrocetin, and safranal were 96.33, 107.1, and 21.09 μM, respectively. Kinetic analysis showed mixed-type inhibition, which was verified by in silico docking studies. Safranal interacts only with the binding site of the AChE, but crocetin and dimethylcrocetin bind simultaneously to the catalytic and peripheral anionic sites. These results reinforce previous findings about the beneficial action of saffron against Alzheimer's disease and may be of value for the development of novel therapeutic agents based on carotenoid-based dual binding inhibitors.
机译:乙酰胆碱酯酶(AChE)破坏乙酰胆碱的抑制剂构成阿尔茨海默氏病的主要治疗方式。在寻找对AChE有抑制作用的天然产物时,本研究通过体外酶促和分子对接研究研究了藏红花提取物及其成分的活性。藏红花已被用于抗阿尔茨海默氏病的传统医学中。藏红花提取物表现出中等的AChE抑制活性(高达30%),但藏花红素,二甲基藏花红素和sa的IC_(50)值分别为96.33、107.1和21.09μM。动力学分析显示混合类型的抑制,这已通过计算机对接研究得到证实。 Safranal仅与AChE的结合位点相互作用,但是藏红花素和二甲基藏红花素同时与催化和外围阴离子位点结合。这些结果加强了先前关于藏红花对阿尔茨海默氏病有益作用的发现,对于基于类胡萝卜素的双重结合抑制剂的新型治疗药物的开发可能具有价值。

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