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Current Strategies and Applications for Precision Drug Design

机译:精密药物设计的当前策略和应用

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摘要

Since Human Genome Project (HGP) revealed the heterogeneity of individuals, precision medicine that proposes the customized healthcare has become an intractable and hot research. Meanwhile, as the Precision Medicine Initiative launched, precision drug design which aims at maximizing therapeutic effects while minimizing undesired side effects for an individual patient has entered a new stage. One of the key strategies of precision drug design is target based drug design. Once a key pathogenic target is identified, rational drug design which constitutes the major part of precision drug design can be performed. Examples of rational drug design on novel druggable targets and protein–protein interaction surfaces are summarized in this review. Besides, various kinds of computational modeling and simulation approaches increasingly benefit for the drug discovery progress. Molecular dynamic simulation, drug target prediction and in silico clinical trials are discussed. Moreover, due to the powerful ability in handling high-dimensional data and complex system, deep learning has efficiently promoted the applications of artificial intelligence in drug discovery and design. In this review, deep learning methods that tailor to precision drug design are carefully discussed. When a drug molecule is discovered, the development of specific targeted drug delivery system becomes another key aspect of precision drug design. Therefore, state-of-the-art techniques of drug delivery system including antibody-drug conjugates (ADCs), and ligand-targeted conjugates are also included in this review.
机译:自人类基因组计划(HGP)揭示了个体的异质性以来,提出个性化医疗保健的精密医学已成为一项棘手且热门的研究。同时,随着“精确医学计划”的启动,旨在最大程度地提高治疗效果,同时将单个患者的不良副作用降至最低的精确药物设计进入了一个新阶段。精准药物设计的关键策略之一是基于目标的药物设计。一旦确定了关键的致病靶标,就可以进行构成精确药物设计主要部分的合理药物设计。本综述总结了在新型药物靶向和蛋白质-蛋白质相互作用表面上进行合理药物设计的实例。此外,各种计算建模和仿真方法也越来越有利于药物发现的进步。讨论了分子动力学模拟,药物靶标预测和计算机模拟临床试验。而且,由于强大的处理高维数据和复杂系统的能力,深度学习有效地促进了人工智能在药物发现和设计中的应用。在这篇评论中,仔细讨论了适合精密药物设计的深度学习方法。当发现一种药物分子时,特定靶向药物递送系统的开发就成为精密药物设计的另一个关键方面。因此,本综述还包括包括抗体-药物偶联物(ADC)和靶向配体的偶联物在内的药物输送系统的最新技术。

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