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Identifying targets for drug discovery using bioinformatics.

机译:使用生物信息学确定药物发现的目标。

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BACKGROUNd: Drug discovery is the process of discovering and designing drugs, which includes target identification, target validation, lead identification, lead optimization and introduction of the new drugs to the public. This process is very important, involving analyzing the causes of the diseases and finding ways to tackle them. OBJECTIVE: The problems we must face include: i) that this process is so long and expensive that it might cost millions of dollars and take a dozen years; and ii) the accuracy of identification of targets is not good enough, which in turn delays the process. Introducing bioinformatics into the drug discovery process could contribute much to it. Bioinformatics is a booming subject combining biology with computer science. It can explore the causes of diseases at the molecular level, explain the phenomena of the diseases from the angle of the gene and make use of computer techniques, such as data mining, machine learning and so on, to decrease the scope of analysis and enhance the accuracy of the results so as to reduce the cost and time. METHODS: Here we describe recent studies about how to apply bioinformatics techniques in the four phases of drug discovery, how these techniques improve the drug discovery process and some possible difficulties that should be dealt with. Results: We conclude that combining bioinformatics with drug discovery is a very promising method although it faces many problems currently.
机译:背景:药物发现是发现和设计药物的过程,包括目标识别,目标确认,线索识别,线索优化以及将新药向公众介绍。这个过程非常重要,涉及分析疾病的原因并找到解决方法。目的:我们必须面对的问题包括:i)这个过程是如此漫长和昂贵,以至于可能花费数百万美元并花费十几年; ii)识别目标的准确性不够好,从而拖延了这一过程。将生物信息学引入药物发现过程可能对此有很大贡献。生物信息学是一门新兴的学科,将生物学与计算机科学相结合。它可以在分子水平上探究疾病的原因,从基因的角度解释疾病的现象,并利用数据挖掘,机器学习等计算机技术来减少分析范围并增强结果的准确性,从而减少了成本和时间。方法:在这里,我们描述了有关如何在药物发现的四个阶段中应用生物信息学技术,这些技术如何改善药物发现过程以及应该解决的一些可能困难的最新研究。结果:我们得出结论,虽然目前面临许多问题,但将生物信息学与药物发现相结合是一种非常有前途的方法。

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