College of Future Technology, Institute of Molecular Medicine, National Biomedical Imaging Center, Beijing Key Laboratory of Cardiometabolic Molecular Medicine, Peking University, Beijing 100871, China.
Peking-Tsinghua Center for Life Science, Academy for Advanced Interdisciplinary Studies, Peking University, Beijing 100871, China.
Curr Opin Chem Biol. 2024 Apr;79:102439. doi: 10.1016/j.cbpa.2024.102439. Epub 2024 Mar 2.
Fluorescent dyes synergize with advanced microscopy for researchers to investigate the location and dynamic processes of biomacromolecules with high spatial and temporal resolution. However, the instability of fluorescent dyes, including photobleaching and photoconversion, represent fundamental limits for super-resolution and time-lapse imaging. In this review, we discuss the latest advances in improving the photostability of fluorescent dyes. We summarize the primary photobleaching processes of cyanine and rhodamine dyes and highlight a range of strategies developed in recent years to strengthen these fluorophores. Additionally, we discuss the influence of protein microenvironments and labeling methods on the photostability of fluorophores. We aim to inspire next-generation robust and bright fluorophores that ultimately enable the routine practice of time-lapse super-resolution imaging of live cells.
荧光染料与先进的显微镜技术协同作用,可让研究人员以高时空分辨率研究生物大分子的位置和动态过程。然而,荧光染料的不稳定性,包括光漂白和光转化,是超分辨率和延时成像的基本限制。在这篇综述中,我们讨论了提高荧光染料光稳定性的最新进展。我们总结了菁染料和罗丹明染料的主要光漂白过程,并重点介绍了近年来为增强这些荧光团而开发的一系列策略。此外,我们还讨论了蛋白质微环境和标记方法对荧光染料光稳定性的影响。我们的目标是激发下一代强大而明亮的荧光染料,最终实现活细胞延时超分辨率成像的常规实践。