Landi Behnaz, Khoramjouy Mona, Lahij Alireza Ghavami, Fazelkia Sajjad, Amidi Salimeh, Kobarfard Farzad, Faizi Mehrdad
Department of Pharmacology and Toxicology, School of Pharmacy, Shahid Beheshti University of Medical Sciences, 2660 Vali-E-Asr Ave, P.O. Box, Tehran, 6153- 14155, Iran.
Phytochemistry Research Center, Shahid Beheshti University of Medical Sciences, 2660 Vali-E-Asr Ave., P.O. Box, Tehran, 6153- 14155, Iran.
Neurotox Res. 2025 Mar 15;43(2):12. doi: 10.1007/s12640-025-00736-4.
Aminopyrimidine compounds have been gaining traction in the field of drug discovery in recent years due to their emergence as multi-targeted molecules. This makes them perfect candidates as agents for cognitive improvement, as cognitive decline is a multifaceted condition. We aim to evaluate their potential for memory enhancement, specifically through their cholinergic properties. This work examines the properties of seven aminopyrimidine derivatives and their effects on memory acquisition and retention. These compounds were administered to NMRI mice after the induction of amnesia by scopolamine, and memory impairment and improvement were assessed using passive avoidance and spontaneous alternation tests with the drug donepezil as the positive control group. These compounds were also analyzed using docking and ADME prediction studies to determine potential affinity to the acetylcholinesterase enzyme, and characterize pharmacokinetic properties, respectively. Additionally, in vitro inhibition of cholinesterase was evaluated. Results showed that three of the seven compounds significantly increased cognition in both behavioral tests. Software analysis suggested allosteric inhibition or modulation of acetylcholinesterase, signifying the potential of these compounds for further optimization and eventual utilization for treatment of cognitive impairment cases.
近年来,氨基嘧啶化合物作为多靶点分子崭露头角,在药物研发领域越来越受到关注。鉴于认知衰退是一种多方面的状况,这使得它们成为改善认知的理想候选药物。我们旨在评估它们增强记忆的潜力,特别是通过其胆碱能特性来评估。这项工作研究了七种氨基嘧啶衍生物的特性及其对记忆获取和保持的影响。在东莨菪碱诱导失忆后,将这些化合物给予NMRI小鼠,并以药物多奈哌齐作为阳性对照组,通过被动回避和自发交替试验评估记忆损伤和改善情况。还使用对接和ADME预测研究对这些化合物进行分析,以分别确定其对乙酰胆碱酯酶的潜在亲和力,并表征药代动力学特性。此外,还评估了胆碱酯酶的体外抑制作用。结果表明,七种化合物中的三种在两项行为测试中均显著提高了认知能力。软件分析表明这些化合物对乙酰胆碱酯酶具有变构抑制或调节作用,这表明这些化合物有进一步优化并最终用于治疗认知障碍病例的潜力。