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首页> 外文期刊>Analytical and Bioanalytical Chemistry >Beta-secretase as a target for Alzheimer’s disease drug discovery: an overview of in vitro methods for characterization of inhibitors
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Beta-secretase as a target for Alzheimer’s disease drug discovery: an overview of in vitro methods for characterization of inhibitors

机译:β-分泌酶作为阿尔茨海默氏病药物发现的靶标:表征抑制剂的体外方法概述

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摘要

β-Secretase 1 (BACE1) is the enzyme involved in the abnormal production of the amyloidogenic peptide Aβ42, one of the major causes of histological hallmarks of Alzheimer's disease. Thus, BACE1 represents a key target protein in the development of new potential drugs for the non-symptomatic treatment of Alzheimer’s disease. Since the discovery of BACE1 one decade ago, both in the pharmaceutical industry and in academia there has been an intense search for novel inhibitors to be developed as new effective drugs. There is a great deal of interest in the discovery of selective non-peptide BACE1 inhibitors with a new chemical skeleton, suited for central nervous system penetration and endowed with more appropriate pharmacokinetic properties. Therefore, the selection of appropriate methods for screening and characterization of BACE1 inhibitors is crucial. This review focuses on the description of the in vitro methods to test BACE1 activity and inhibition, with particular emphasis on fluorescence resonance energy transfer (FRET) methods, aiming at critically highlighting advantages and drawbacks. An overview of BACE1 inhibitors is given, underlying the variability of the FRET methods reported in the literature, and the structure evolution of inhibitors active in cellular cultures and in vivo, from peptide to small synthetic and natural structures.
机译:β-秘密酶1(BACE1)是与淀粉样蛋白生成肽Aβ42异常产生有关的酶,该酶是阿尔茨海默氏病组织学标志的主要原因之一。因此,BACE1代表了开发用于非症状性阿尔茨海默氏病新药的关键靶蛋白。自从十年前发现BACE1以来,无论是在制药行业还是在学术界,都在大力寻求将新型抑制剂开发为新的有效药物。对具有新化学骨架的选择性非肽BACE1抑制剂的发现引起了极大兴趣,该抑制剂适合中枢神经系统的渗透并具有更合适的药代动力学特性。因此,选择合适的方法筛选和表征BACE1抑制剂至关重要。这篇综述着重于测试BACE1活性和抑制作用的体外方法的描述,特别着重于荧光共振能量转移(FRET)方法,旨在关键地突出优点和缺点。概述了BACE1抑制剂,这是文献报道的FRET方法的可变性以及在细胞培养物中和体内活性的抑制剂(从肽到小的合成和天然结构)的结构演变的基础。

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