Tomal Wiktoria, Ortyl Joanna
Cracow University of Technology, Faculty of Chemical Engineering and Technology, Warszawska 24, 31-155 Cracow, Poland.
Photo HiTech Ltd., Bobrzyńskiego 14, 30-348 Cracow, Poland.
Polymers (Basel). 2020 May 7;12(5):1073. doi: 10.3390/polym12051073.
Light-initiated polymerization processes are currently an important tool in various industrial fields. The advancement of technology has resulted in the use of photopolymerization in various biomedical applications, such as the production of 3D hydrogel structures, the encapsulation of cells, and in drug delivery systems. The use of photopolymerization processes requires an appropriate initiating system that, in biomedical applications, must meet additional criteria such as high water solubility, non-toxicity to cells, and compatibility with visible low-power light sources. This article is a literature review on those compounds that act as photoinitiators of photopolymerization processes in biomedical applications. The division of initiators according to the method of photoinitiation was described and the related mechanisms were discussed. Examples from each group of photoinitiators are presented, and their benefits, limitations, and applications are outlined.
光引发聚合过程目前是各个工业领域中的一项重要工具。技术的进步使得光聚合在各种生物医学应用中得到了应用,例如三维水凝胶结构的生产、细胞封装以及药物递送系统。光聚合过程的应用需要合适的引发体系,在生物医学应用中,该引发体系必须满足额外的标准,如高水溶性、对细胞无毒以及与可见低功率光源兼容。本文是一篇关于在生物医学应用中作为光聚合过程光引发剂的那些化合物的文献综述。描述了根据光引发方法对引发剂的分类,并讨论了相关机制。给出了每组光引发剂的示例,并概述了它们的优点、局限性和应用。