Kontra Bence, Mucsi Zoltán, Ilaš Janez, Dunkel Petra
Institute of Organic Chemistry, Semmelweis University, Budapest, Hungary.
Department of Biological Chemistry, BrainVision Center, Budapest, Hungary.
Med Res Rev. 2025 Sep;45(5):1423-1451. doi: 10.1002/med.22111. Epub 2025 Apr 12.
Photoremovable protecting groups (PPGs) offer a straightforward solution for the temporary inactivation of biologically active substrates and their subsequent controlled release by light irradiation. Their relatively easy design and mode of application have made them useful tools for studying dynamic biological processes in vitro and in vivo. Recently, there has been a growing body of data investigating their potential application in the development of drug delivery systems. Of the various PPG scaffolds in use, quinoline photocages have a history of about 20 years. The structure-property relationships of quinoline PPGs, as well as alternative multibranch designs based on quinoline monomers have been thoroughly studied both experimentally and theoretically. Therefore, quinoline PPGs serve as a representative study of PPG development, showing how the various applications of quinoline photocages followed the chemical optimization or how the applications drove the chemical design. Since the raison d'être of PPGs lies in their application for light-activated release of various substrates or performing light-activated structural changes in materials, it is crucial to understand how PPGs are selected and utilized by their end-users, who are often not chemists themselves. Therefore, we discuss whether the conclusions drawn from the selected quinoline PPG family could lead to more general insights for the field as whole. As PPG-related applications still rely heavily on a limited number of chemical scaffolds, it is worth considering, what could be the reasons for the slow uptake of novel chemical scaffolds.
光可去除保护基团(PPGs)为生物活性底物的暂时失活及其随后通过光照射的可控释放提供了一种直接的解决方案。它们相对简单的设计和应用方式使其成为研究体外和体内动态生物过程的有用工具。最近,有越来越多的数据研究它们在药物递送系统开发中的潜在应用。在使用的各种PPG支架中,喹啉光笼已有约20年的历史。喹啉PPGs的结构-性质关系以及基于喹啉单体的替代多分支设计已在实验和理论上得到了深入研究。因此,喹啉PPGs作为PPG开发的代表性研究,展示了喹啉光笼的各种应用是如何遵循化学优化的,或者这些应用是如何推动化学设计的。由于PPGs的存在意义在于它们用于光激活释放各种底物或在材料中进行光激活结构变化,了解终端用户(他们通常本身不是化学家)如何选择和使用PPGs至关重要。因此,我们讨论从所选的喹啉PPG家族得出的结论是否能为整个领域带来更普遍的见解。由于与PPG相关的应用仍然严重依赖于有限数量的化学支架,值得考虑新型化学支架采用缓慢的原因可能是什么。