Department of Biochemistry and Molecular Pharmacology, University of Massachusetts Medical School, Worcester, MA, USA.
Nat Commun. 2021 Jan 5;12(1):122. doi: 10.1038/s41467-020-20326-6.
Photolysis has enabled the occurrence of numerous discoveries in chemistry, drug discovery and biology. However, there is a dearth of efficient long wavelength light mediated photolysis. Here, we report general and efficient long wavelength single photon method for a wide array of photolytic molecules via triplet-triplet annihilation photolysis. This method is versatile and "LEGO"-like. The light partners (the photosensitizers and the photolytic molecules) can be energetically matched to adapt to an extensive range of electromagnetic spectrum wavelengths and the diversified chemical structures of photoremovable protecting groups, photolabile linkages, as well as a broad array of targeted molecules. Compared to the existing photolysis methods, our strategy of triplet-triplet annihilation photolysis not only exhibits superior reaction yields, but also resolves the photodamage problem, regardless of whether they are single photon or multiple photon associated. Furthermore, the biological promise of this "LEGO" system was illustrated via developing ambient air-stable nanoparticles capable of triplet-triplet annihilation photolysis.
光解作用使得化学、药物发现和生物学领域出现了大量的发现。然而,目前缺乏有效的长波长光介导光解作用。在这里,我们通过三重态-三重态湮灭光解作用报道了一种通用且高效的长波长单光子方法,用于广泛的光解分子。该方法具有多功能性和“乐高”式的特点。光伴侣(光敏剂和光解分子)可以进行能量匹配,以适应广泛的电磁光谱波长和各种光解保护基团、光不稳定键以及广泛的靶向分子的化学结构。与现有的光解方法相比,我们的三重态-三重态湮灭光解作用策略不仅表现出更高的反应产率,而且解决了光损伤问题,无论涉及单光子还是多光子。此外,通过开发能够进行三重态-三重态湮灭光解作用的环境空气稳定的纳米粒子,展示了该“乐高”系统的生物学应用前景。