WM Keck Professor, Department of Chemistry and the Skaggs Institute of Chemical Biology, The Scripps Research Institute, 10550 North Torrey Pines Road, BCC-315 La Jolla, CA 92037, USA.
Expert Opin Drug Discov. 2006 Nov;1(6):525-38. doi: 10.1517/17460441.1.6.525.
Combinatorial chemistry and parallel synthesis are important and regularly applied tools for lead identification and optimisation, although they are often accompanied by challenges related to the efficiency of library synthesis and the purity of the compound library. In the last decade, novel means of lead discovery approaches have been investigated where the biological target is actively involved in the synthesis of its own inhibitory compound. These fragment-based approaches, also termed target-guided synthesis (TGS), show great promise in lead discovery applications by combining the synthesis and screening of libraries of low molecular weight compounds in a single step. Of all the TGS methods, the kinetically controlled variant is the least well known, but it has the potential to emerge as a reliable lead discovery method. The kinetically controlled TGS approach, termed in situ click chemistry, is discussed in this article.
组合化学和并行合成是识别和优化先导化合物的重要且常用的工具,尽管它们通常伴随着与库合成效率和化合物库纯度相关的挑战。在过去的十年中,人们研究了新的先导化合物发现方法,其中生物靶标积极参与其自身抑制化合物的合成。这些基于片段的方法,也称为靶向导向合成(TGS),通过在单个步骤中组合小分子化合物库的合成和筛选,在先导化合物发现应用中显示出巨大的前景。在所有的 TGS 方法中,动力学控制变体是最不为人知的,但它有可能成为一种可靠的先导化合物发现方法。本文讨论了动力学控制 TGS 方法,称为原位点击化学。