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用于先天性代谢缺陷的底物减少疗法。

Substrate reduction therapy for inborn errors of metabolism.

作者信息

Yue Wyatt W, Mackinnon Sabrina, Bezerra Gustavo A

机构信息

Structural Genomics Consortium, Nuffield Department of Clinical Medicine, University of Oxford, Oxford OX3 7DQ, U.K.

出版信息

Emerg Top Life Sci. 2019 Mar 29;3(1):63-73. doi: 10.1042/ETLS20180058.

Abstract

Inborn errors of metabolism (IEM) represent a growing group of monogenic disorders each associated with inherited defects in a metabolic enzyme or regulatory protein, leading to biochemical abnormalities arising from a metabolic block. Despite the well-established genetic linkage, pathophysiology and clinical manifestations for many IEMs, there remains a lack of transformative therapy. The available treatment and management options for a few IEMs are often ineffective or expensive, incurring a significant burden to individual, family, and society. The lack of IEM therapies, in large part, relates to the conceptual challenge that IEMs are loss-of-function defects arising from the defective enzyme, rendering pharmacologic rescue difficult. An emerging approach that holds promise and is the subject of a flurry of pre-/clinical applications, is substrate reduction therapy (SRT). SRT addresses a common IEM phenotype associated with toxic accumulation of substrate from the defective enzyme, by inhibiting the formation of the substrate instead of directly repairing the defective enzyme. This minireview will summarize recent highlights towards the development of emerging SRT, with focussed attention towards repurposing of currently approved drugs, approaches to validate novel targets and screen for hit molecules, as well as emerging advances in gene silencing as a therapeutic modality.

摘要

先天性代谢缺陷(IEM)是一类日益增多的单基因疾病,每一种都与代谢酶或调节蛋白的遗传性缺陷相关,导致代谢阻滞引起生化异常。尽管许多IEM的遗传联系、病理生理学和临床表现已得到充分确立,但仍然缺乏变革性疗法。少数IEM现有的治疗和管理选择往往无效或昂贵,给个人、家庭和社会带来巨大负担。IEM疗法的缺乏在很大程度上与概念上的挑战有关,即IEM是由缺陷酶引起的功能丧失性缺陷,使得药物挽救变得困难。一种有前景且正处于一系列临床前/临床应用中的新兴方法是底物减少疗法(SRT)。SRT通过抑制底物的形成而非直接修复缺陷酶,来解决与缺陷酶底物毒性积累相关的常见IEM表型。本综述将总结新兴SRT发展的近期亮点,重点关注现有批准药物的重新利用、验证新靶点和筛选命中分子的方法,以及作为治疗方式的基因沉默方面的新进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/05d9/7289018/1eaec9338a12/ETLS-3-63-g0001.jpg

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