Li Xin, Xiong Yuzhu
Department of Polymer Materials and Engineering, Guizhou University, Guiyang 550025, P. R. China.
ACS Omega. 2022 Oct 12;7(42):36918-36928. doi: 10.1021/acsomega.2c03931. eCollection 2022 Oct 25.
Since "click" chemistry was first reported in 2001, it has remained a popular research topic in the field of chemistry due to its high yield without byproducts, fast reaction rate, simple reaction, and biocompatibility. It has achieved good applications in various fields, especially for the preparation of hydrogels. The development of biomedicine presents new challenges and opportunities for hydrogels, and "click" chemistry provides a library of chemical tools for the preparation of various innovative hydrogels, including cell culture, 3D bioprinting, and drug release. This article summarizes several common "click" reactions, including copper-catalyzed azide-alkyne cycloaddition reactions, strain-promoted azide-alkyne cycloaddition (SPAAC) reaction, thiol-ene reaction, the Diels-Alder reaction, and the inverse electron demand Diels-Alder (IEDDA) reaction. We introduce the "click" reaction in the nucleic acid field to expand the concept of "click" chemistry. This article focuses on the application of "click" chemistry for preparing various types of biomedical hydrogels and highlights the advantages of "click" reactions for cross-linking to obtain hydrogels. This review also discusses applications of "click" chemistry outside the field of hydrogels, such as drug synthesis, targeted delivery, and surface modification, hydrogels have great application potential in these fields in the future and hopefully inspire other applications of hydrogels.
自2001年首次报道“点击”化学以来,由于其高产率、无副产物、反应速率快、反应简单且具有生物相容性,它一直是化学领域中一个热门的研究课题。它在各个领域都取得了良好的应用,特别是在水凝胶的制备方面。生物医学的发展给水凝胶带来了新的挑战和机遇,而“点击”化学为制备各种创新水凝胶提供了一系列化学工具,包括细胞培养、3D生物打印和药物释放。本文总结了几种常见的“点击”反应,包括铜催化的叠氮化物-炔烃环加成反应、应变促进的叠氮化物-炔烃环加成(SPAAC)反应、硫醇-烯反应、狄尔斯-阿尔德反应和逆电子需求狄尔斯-阿尔德(IEDDA)反应。我们介绍了核酸领域中的“点击”反应,以拓展“点击”化学的概念。本文重点介绍了“点击”化学在制备各种类型生物医学水凝胶方面的应用,并强调了“点击”反应在交联以获得水凝胶方面的优势。这篇综述还讨论了“点击”化学在水凝胶领域之外的应用,如药物合成、靶向递送和表面改性,水凝胶在这些领域未来具有巨大的应用潜力,并有望激发水凝胶的其他应用。