点击化学
叠氮化物
化学
环加成
组合化学
化学合成
药物发现
化学生物学
吞吐量
化学图书馆
纳米技术
计算机科学
催化作用
小分子
有机化学
体外
生物化学
材料科学
无线
电信
作者
Rajavel Srinivasan,Lay Pheng Tan,Hao Wu,Pengyu Yang,Karunakaran Kalesh,Shao Q. Yao
摘要
A key challenge in current drug discovery is the development of high-throughput (HT) amenable chemical reactions that allow rapid synthesis of diverse chemical libraries of enzyme inhibitors. The Cu(I)-catalyzed, 1,3-dipolar cycloaddition between an azide and an alkyne, better known as "click chemistry", is one such method that has received the most attention in recent years. Despite its popularity, there is still a lack of robust and efficient chemical strategies that give access to diverse libraries of azide-containing building blocks (key components in click chemistry). We report herein a highly robust and efficient strategy for high-throughput synthesis of a 325-member azide library. The method is highlighted by its simplicity and product purity. The utility of the library is demonstrated with the subsequent "click" synthesis of the corresponding bidentate inhibitors against PTP1B.
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