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评估果蝇在药物发现中的转化相关性。

An assessment of the translational relevance of Drosophila in drug discovery.

机构信息

a Division of Neuroscience , Biomedical Sciences Research Centre "Alexander Fleming" , Vari , Greece.

b Centre for Biological Sciences , University of Southampton , Southampton , UK.

出版信息

Expert Opin Drug Discov. 2019 Mar;14(3):303-313. doi: 10.1080/17460441.2019.1569624. Epub 2019 Jan 21.

Abstract

Drosophila melanogaster offers a powerful expedient and economical system with facile genetics. Because of the high sequence and functional conservation with human disease-associated genes, it has been cardinal in deciphering disease mechanisms at the genetic and molecular level. Drosophila are amenable to and respond well to pharmaceutical treatment which coupled to their genetic tractability has led to discovery, repositioning, and validation of a number of compounds. Areas covered: This review summarizes the generation of fly models of human diseases, their advantages and use in elucidation of human disease mechanisms. Representative studies provide examples of the utility of this system in modeling diseases and the discovery, repositioning and testing on pharmaceuticals to ameliorate them. Expert opinion: Drosophila offers a facile and economical whole animal system with many homologous organs to humans, high functional conservation and established methods of generating and validating human disease models. Nevertheless, it remains relatively underused as a drug discovery tool probably because its relevance to mammalian systems remains under question. However, recent exciting success stories using Drosophila disease models for drug screening, repositioning and validation strongly suggest that fly models should figure prominently in the drug discovery pipeline from bench to bedside.

摘要

黑腹果蝇提供了一个强大的、经济的系统,具有简单的遗传学。由于与人类疾病相关基因具有高度的序列和功能保守性,它在遗传和分子水平上解析疾病机制方面一直是至关重要的。果蝇对药物治疗反应良好,加上其遗传可操作性,已经导致了许多化合物的发现、重新定位和验证。

涵盖领域

本文综述了人类疾病果蝇模型的产生,及其在阐明人类疾病机制中的优势和应用。代表性研究提供了利用该系统建模疾病以及发现、重新定位和测试药物以改善疾病的实例。

专家意见

果蝇提供了一个简单而经济的整体动物系统,具有许多与人类同源的器官、高度的功能保守性以及生成和验证人类疾病模型的成熟方法。然而,由于其与哺乳动物系统的相关性仍存在疑问,因此它的应用仍然相对较少。然而,最近使用果蝇疾病模型进行药物筛选、重新定位和验证的令人兴奋的成功案例强烈表明,果蝇模型应该在从实验室到临床的药物发现管道中占据重要地位。

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