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重新利用二甲双胍:一种在其结合口袋中有新用途的老药。

Repurposing metformin: an old drug with new tricks in its binding pockets.

作者信息

Pryor Rosina, Cabreiro Filipe

机构信息

Institute of Structural and Molecular Biology, University College London, Gower Street, London WC1E 6BT, U.K.

出版信息

Biochem J. 2015 Nov 1;471(3):307-22. doi: 10.1042/BJ20150497.

Abstract

Improvements in healthcare and nutrition have generated remarkable increases in life expectancy worldwide. This is one of the greatest achievements of the modern world yet it also presents a grave challenge: as more people survive into later life, more also experience the diseases of old age, including type 2 diabetes (T2D), cardiovascular disease (CVD) and cancer. Developing new ways to improve health in the elderly is therefore a top priority for biomedical research. Although our understanding of the molecular basis of these morbidities has advanced rapidly, effective novel treatments are still lacking. Alternative drug development strategies are now being explored, such as the repurposing of existing drugs used to treat other diseases. This can save a considerable amount of time and money since the pharmacokinetics, pharmacodynamics and safety profiles of these drugs are already established, effectively enabling preclinical studies to be bypassed. Metformin is one such drug currently being investigated for novel applications. The present review provides a thorough and detailed account of our current understanding of the molecular pharmacology and signalling mechanisms underlying biguanide-protein interactions. It also focuses on the key role of the microbiota in regulating age-associated morbidities and a potential role for metformin to modulate its function. Research in this area holds the key to solving many of the mysteries of our current understanding of drug action and concerted effects to provide sustained and long-life health.

摘要

医疗保健和营养方面的改善已使全球预期寿命显著提高。这是现代世界最伟大的成就之一,但它也带来了严峻挑战:随着越来越多的人活到晚年,更多的人也患上了老年疾病,包括2型糖尿病(T2D)、心血管疾病(CVD)和癌症。因此,开发改善老年人健康的新方法是生物医学研究的首要任务。尽管我们对这些疾病分子基础的理解迅速进步,但仍然缺乏有效的新型治疗方法。目前正在探索替代药物开发策略,例如将用于治疗其他疾病的现有药物重新用于新用途。这可以节省大量时间和金钱,因为这些药物的药代动力学、药效学和安全性已经确定,有效地绕过了临床前研究。二甲双胍就是目前正在研究其新用途的一种药物。本综述全面而详细地阐述了我们目前对双胍类药物与蛋白质相互作用的分子药理学和信号传导机制的理解。它还关注微生物群在调节与年龄相关疾病中的关键作用以及二甲双胍调节其功能的潜在作用。该领域的研究是解决我们目前对药物作用和协同效应理解中许多谜团的关键,以提供持续和长寿健康。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/39ba/4613459/e6ea28c50f84/bj4710307fig1.jpg

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