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首页> 外文期刊>Journal of Medicinal Chemistry >Big Data from Pharmaceutical Patents: A Computational Analysis of Medicinal Chemists' Bread and Butter
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Big Data from Pharmaceutical Patents: A Computational Analysis of Medicinal Chemists' Bread and Butter

机译:药品专利中的大数据:药用化学家的黄油的计算分析

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Multiple recent studies have focused on unraveling the content of the medicinal chemist's toolbox. Here, we present an investigation of chemical reactions and molecules retrieved from U.S. patents over the past 40 years (1976-2015). We used a sophisticated text-mining pipeline to extract 1.15 million unique whole reaction schemes, including reaction roles and yields, from pharmaceutical patents. The reactions were assigned to well-known reaction types such as Wittig olefination or Buchwald-Hartwig amination using an expert system. Analyzing the evolution of reaction types over time, we observe the previously reported bias toward reaction classes like amide bond formations or Suzuki couplings. Our study also shows a steady increase in the number of different reaction types used in pharmaceutical patents but a trend toward lower median yield for some of the reaction classes. Finally, we found that today's typical product molecule is larger, more hydrophobic, and more rigid than 40 years ago.
机译:最近的多项研究集中在阐明药物化学家工具箱的内容上。在这里,我们对过去40年(1976-2015年)从美国专利中检索到的化学反应和分子进行了研究。我们使用了一条复杂的文本挖掘管道,从制药专利中提取了115万种独特的整体反应方案,包括反应作用和产率。使用专家系统将反应分配给众所周知的反应类型,例如维蒂希烯化反应或布赫瓦尔德-哈特维希胺化反应。分析反应类型随时间的演变,我们观察到先前报道的对反应类别(如酰胺键形成或Suzuki偶联)的偏见。我们的研究还表明,制药专利中使用的不同反应类型的数量稳步增加,但某些反应类别的中位数收率却呈下降趋势。最后,我们发现今天的典型产品分子比40年前更大,更疏水且更坚固。

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