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Synthesis Reactivity Functionalization and ADMET Properties of Silicon-Containing Nitrogen Heterocycles

机译:含硅氮杂环的合成反应性功能化和ADMET性质

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摘要

Silicon-containing compounds have been largely ignored in drug design and development, despite their potential to improve not only the potency but also the physicochemical and ADMET (absorption, distribution, metabolism, excretion, toxicity) properties of drug-like candidates because of the unique characteristics of silicon. This deficiency is in large part attributable to a lack of general methods for synthesizing diverse organosilicon structures. Accordingly, a new building block strategy has been developed that diverges from traditional approaches to incorporation of silicon into drug candidates. Flexible, multi-gram-scale syntheses of silicon-containing tetrahydroquinoline and tetrahydroisoquinoline building blocks are described, along with methods by which diversely functionalized silicon-containing nitrogen heterocycles can be rapidly built using common reactions optimized to accommodate the properties of silicon. Furthermore, to better clarify the liabilities and advantages of silicon incorporation, select compounds and their carbon analogues were challenged in ADMET-focused biological studies.
机译:尽管含硅化合物具有独特的独特之处,但它们不仅有可能改善药物样候选物的效力,而且还具有改善其物理化学和ADMET(吸收,分布,代谢,排泄,毒性)特性的潜力,因此在药物设计和开发中一直被忽略。硅的特性。该缺陷在很大程度上归因于缺乏合成各种有机硅结构的通用方法。因此,已经开发出一种新的构建基块策略,该策略不同于传统方法,将硅掺入候选药物中。描述了柔性的,克级的含硅四氢喹啉和四氢异喹啉结构单元的合成方法,以及通过使用能够优化适应硅性能的常见反应可以快速构建各种功能化的含硅氮杂环的方法。此外,为了更好地阐明掺入硅的责任和优势,在以ADMET为重点的生物学研究中,对某些化合物及其碳类似物提出了挑战。

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  • 期刊名称 other
  • 作者单位
  • 年(卷),期 -1(140),21
  • 年度 -1
  • 页码 6668–6684
  • 总页数 67
  • 原文格式 PDF
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