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新型单胺氧化酶(MAO)抑制剂的治疗、分子及计算方面

Therapeutic, Molecular and Computational Aspects of Novel Monoamine Oxidase (MAO) Inhibitors.

作者信息

Ramesh Muthusamy, Dokurugu Yussif M, Thompson Michael D, Soliman Mahmoud E

机构信息

Discipline of Pharmaceutical Sciences, School of Health Sciences, University of KwaZulu-Natal, Westville, Durban- 4001. South Africa.

Molecular Modeling and Drug Design Research Group, College of Pharmacy and Pharmaceutical Science Research Center, Florida Agricultural and Mechanical University (FAMU), Tallahassee, Florida 32307. United States.

出版信息

Comb Chem High Throughput Screen. 2017;20(6):492-509. doi: 10.2174/1386207320666170310121337.

Abstract

UNLABELLED

Background Due to the limited number of MAO inhibitors in the clinics, several research efforts are aimed at the discovery of novel MAO inhibitors. At present, a high specificity and a reversible mode of inhibition of MAO-A/B are cited as desirable traits in drug discovery process. This will help to reduce the probability of causing target disruption and may increase the duration of action of drug.

AIM

Most of the existing MAO inhibitors lead to side effects due to the lack of affinity and selectivity. Therefore, there is an urgent need to design novel, potent, reversible and selective inhibitors for MAO-A/B. Selective inhibition of MAO-A results in the elevated level of serotonin and noradrenaline. Hence, MAO-A inhibitors can be used for improving the symptoms of depression. The selective MAO-B inhibitors are used with L-DOPA and/or dopamine agonists in the symptomatic treatment of Parkinson's disease. The present study was aimed to describe the recently developed hits of MAO inhibitors.

METHOD

At present, CADD techniques are gaining an attention in rationale drug discovery of MAO inhibitors, and several research groups employed CADD approaches on various chemical scaffolds to identify novel MAO inhibitors. These computational techniques assisted in the development of lead molecules with improved pharmacodynamics / pharmacokinetic properties toward MAOs. Further, CADD techniques provided a better understanding of structural aspects of molecular targets and lead molecules.

CONCLUSIONS

The present review describes the importance of structural features of potential chemical scaffolds as well as the role of computational approaches like ligand docking, molecular dynamics, QSAR and pharmacophore modeling in the development of novel MAO inhibitors.

摘要

未标注

背景 由于临床中可用的单胺氧化酶(MAO)抑制剂数量有限,多项研究致力于发现新型MAO抑制剂。目前,在药物研发过程中,高特异性和可逆性的MAO-A/B抑制模式被视为理想特性。这将有助于降低导致靶点破坏的可能性,并可能延长药物的作用时间。

目的

现有的大多数MAO抑制剂由于缺乏亲和力和选择性而导致副作用。因此,迫切需要设计新型、高效、可逆且具有选择性的MAO-A/B抑制剂。对MAO-A的选择性抑制会导致血清素和去甲肾上腺素水平升高。因此,MAO-A抑制剂可用于改善抑郁症症状。选择性MAO-B抑制剂与左旋多巴和/或多巴胺激动剂联合用于帕金森病的对症治疗。本研究旨在描述最近开发的MAO抑制剂的有效成分。

方法

目前,计算机辅助药物设计(CADD)技术在MAO抑制剂的合理药物研发中受到关注,多个研究小组在各种化学支架上采用CADD方法来鉴定新型MAO抑制剂。这些计算技术有助于开发对MAO具有改善的药效学/药代动力学特性的先导分子。此外,CADD技术能更好地理解分子靶点和先导分子的结构特征。

结论

本综述描述了潜在化学支架结构特征的重要性,以及配体对接、分子动力学、定量构效关系(QSAR)和药效团建模等计算方法在新型MAO抑制剂开发中的作用。

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