Lutz Jean-François, Zarafshani Zoya
Research Group Nanotechnology for Life Science, Fraunhofer Institute for Applied Polymer Research, Geiselbergstrasse 69, Potsdam 14476, Germany.
Adv Drug Deliv Rev. 2008 Jun 10;60(9):958-70. doi: 10.1016/j.addr.2008.02.004. Epub 2008 Mar 4.
The concept of "click" chemistry, introduced by Sharpless and coworkers a couple of years ago, promotes the use of efficient, selective and versatile chemical reactions in synthetic chemistry. For instance, the copper(I)-catalyzed azide-alkyne cycloaddition (CuAAC) is regarded as a prime example of "click" chemistry. This reaction is regioselective, chemoselective and moreover can be performed in aqueous medium at room or physiological temperature. Thus, CuAAC became lately a very popular ligation tool in biological and medical sciences. Several hundred of articles exploring the synthetic possibilities of CuAAC in biosciences have been published within the last four years. The aim of the present review is to give an overall--non exhaustive--picture of this emerging field of research. The advantages and versatility of CuAAC in scientific disciplines as diverse as drug discovery, biochemistry, bioconjugates synthesis, drug-delivery, gene therapy, bioseparation or diagnostics are presented and discussed in detail.
“点击化学”的概念是由夏普莱斯及其同事在几年前提出的,它推动了高效、选择性和通用性化学反应在合成化学中的应用。例如,铜(I)催化的叠氮化物-炔烃环加成反应(CuAAC)被视为“点击化学”的一个典型例子。该反应具有区域选择性、化学选择性,而且可以在室温或生理温度的水性介质中进行。因此,CuAAC最近成为生物和医学领域非常流行的连接工具。在过去四年里,已经发表了几百篇探索CuAAC在生物科学中合成可能性的文章。本综述的目的是对这个新兴的研究领域给出一个全面(但非详尽无遗)的描述。详细介绍并讨论了CuAAC在药物发现、生物化学、生物共轭物合成、药物递送、基因治疗、生物分离或诊断等不同科学领域中的优势和通用性。