Department of Chemistry, University of Zurich, Winterthurerstrasse 190, CH-8057 Zurich; Prievidza Chemical Society, M. Hodžu 10/16, 971 01 Prievidza, Slovakia;, Email:
Department of Chemistry, Biochemistry and Pharmaceutical Sciences, University of Bern, Freiestrasse 3, CH-3012 Bern, Switzerland; Prievidza Chemical Society, M. Hodžu 10/16, 971 01 Prievidza, Slovakia;, Email:
Chimia (Aarau). 2021 Oct 27;75(10):873-881. doi: 10.2533/chimia.2021.873.
We discuss the past decade of progress in the field of photoremovable protecting groups that allowed the development of photocages activatable by near-IR light and highlight the individual conceptual advancements that lead to general guidelines to design new such photoremovable protecting groups. We emphasize the importance of understanding the individual photochemical reaction mechanisms that was necessary to achieve this progress and provide an outlook of the subsequent steps to facilitate a swift translation of this research into clinical praxis. Since this issue of CHIMIA is dedicated to the late Prof. Thomas Bally, we decided to provide a personal perspective on the field to which he contributed himself. We tried to write this review with the general readership of CHIMIA in mind in a hope to pay a tribute to the extraordinary dedication and clarity with which Thomas Bally used to explain abstract chemical concepts to his students or colleagues. We are uncertain whether we matched such challenge but we believe that he would have liked such approach very much.
我们讨论了过去十年光致保护基团领域的进展,这些进展使得可以开发可通过近红外光激活的光笼,并强调了导致设计新的光致保护基团的一般指导方针的各个概念上的进步。我们强调了理解实现这一进展所必需的各个光化学反应机制的重要性,并对随后的步骤进行了展望,以促进将该研究迅速转化为临床实践。由于本期《CHIMIA》专刊是献给已故的 Thomas Bally 教授的,因此我们决定从他本人做出贡献的角度来提供该领域的个人视角。我们试图以《CHIMIA》的一般读者为对象撰写这篇综述,希望向 Thomas Bally 教授向学生或同事解释抽象化学概念时所表现出的非凡奉献精神和清晰性致敬。我们不确定是否达到了这样的要求,但我们相信他会非常喜欢这种方式。