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Density Functional Theory, Molecular Interaction Fields, Pharmacophore, Virtual Screening and Physical Chemistry of the Interactions of Novel Acetylcholinesterase Inhibitors in Alzheimer's Disease

机译:新型乙酰胆碱酯酶抑制剂与阿尔茨海默病相互作用的密度泛函理论,分子相互作用场,药理学,虚拟筛选和物理化学

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摘要

Alzheimer's disease (AD) is the most important cause of mental disease in elderly people. The progress of the symptoms of the disease are associated with structural modifications of cholinergic synapses in determined regions of the brain, and consequently the reduction of cholinergic neurotransmission potential. The research on acetylcholinesterase (AChE) has increased due to discoveries indicating the involvement of the enzyme in the formation of the (β-amiloid peptide during the pathogenesis of AD. It has been noted that this enzyme plays a key role in acceleration of the senile plaques of β-amiloid peptide which is toxic for the neurons. For the development of new potential inhibitors of the enzyme AChE, different techniques of molecular modeling were used as a strategy for the rational design of pharmaceuticals, having as basis the AChE inhibitors described in the literature in addition to those deposited in the PDB, including some which have been already used for the treatment of AD. The objective is to design and test new potential inhibitors of this therapeutical target, with the aim of obtaining and future optimizing new pharmaceutical candidates for Alzheimer. The objectives extend to proposals of new potential leads, selected from data basis of commercial compounds with properties of pharmaceuticals. The virtual screening tend towards structures of inhibitors already reported in the literature as well as pharmacophoric patterns common to them, to be modeled.
机译:阿尔茨海默氏病(AD)是老年人精神疾病的最重要原因。疾病症状的进展与大脑确定区域的胆碱能突触的结构修饰有关,因此胆碱能神经传递潜能降低。乙酰胆碱酯酶(AChE)的研究由于发现表明该酶在AD发病过程中参与了β-淀粉样肽的形成而增加。已注意到该酶在加速衰老中起关键作用为了开发新的潜在的AChE酶抑制剂,采用了多种分子建模技术作为合理设计药物的策略,并以AChE抑制剂为基础,对神经元具有毒性。除了保存在PDB中的文献外,包括已经用于AD治疗的文献,目的是设计和测试该治疗靶标的新型潜在抑制剂,以期获得和将来优化新的候选药物该目标扩展到了新的潜在潜在客户的建议,该建议是从具有以下特性的商品化合物的数据库中选择的:药品。虚拟筛选趋向于已经在文献中报道的抑制剂的结构以及将要建模的它们共同的药效学模式。

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