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首页> 外文期刊>Journal of the Royal Society Interface >Cheaper faster drug development validated by the repositioning of drugs against neglected tropical diseases
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Cheaper faster drug development validated by the repositioning of drugs against neglected tropical diseases

机译:更便宜,更快速的药物开发通过重新定位针对被忽视的热带病的药物得到了验证

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摘要

There is an urgent need to make drug discovery cheaper and faster. This will enable the development of treatments for diseases currently neglected for economic reasons, such as tropical and orphan diseases, and generally increase the supply of new drugs. Here, we report the Robot Scientist 'Eve' designed to make drug discovery more economical. A Robot Scientist is a laboratory automation system that uses artificial intelligence (AI) techniques to discover scientific knowledge through cycles of experimentation. Eve integrates and automates library-screening, hit-confirmation, and lead generation through cycles of quantitative structure activity relationship learning and testing. Using econometric modelling we demonstrate that the use of AI to select compounds economically outperforms standard drug screening. For further efficiency Eve uses a standardized form of assay to compute Boolean functions of compound properties. These assays can be quickly and cheaply engineered using synthetic biology, enabling more targets to be assayed for a given budget. Eve has repositioned several drugs against specific targets in parasites that cause tropical diseases. One validated discovery is that the anti-cancer compound TNP-470 is a potent inhibitor of dihydrofolate reductase from the malaria-causing parasite Plasmodium vivax.
机译:迫切需要使药物开发更便宜,更快捷。这将使针对目前由于经济原因而被忽视的疾病(如热带病和孤儿疾病)的治疗方法的开发成为可能,并且通常会增加新药的供应。在这里,我们报道了旨在使发现药物更加经济的机器人科学家“夏娃”。机器人科学家是使用人工智能(AI)技术通过实验周期发现科学知识的实验室自动化系统。 Eve通过定量结构活动关系学习和测试的周期来集成和自动化库筛选,命中确认和线索生成。使用计量经济学模型,我们证明了使用AI在经济上选择化合物要优于标准药物筛选。为了进一步提高效率,Eve使用标准化的测定形式来计算化合物特性的布尔函数。使用合成生物学可以快速,廉价地设计这些测定法,从而在给定的预算内可以测定更多的靶标。夏娃在引起热带病的寄生虫中针对特定目标重新定位了几种药物。一个经过验证的发现是,抗癌化合物TNP-470是一种有效的抑制疟疾的间日疟原虫疟原虫中二氢叶酸还原酶的抑制剂。

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