Ling Jing, Liu Yitong, Dumoulin Alexandre, Sheng Danli, Fu Yunzhe, Liu Shuzhang, Ding Ling, Huang Lulu, Xi Peng, Tang Hongyun, Stoeckli Esther T, Chen Zhixing
Peking-Tsinghua Center for Life Science, Academy for Advanced Interdisciplinary Studies, Peking University, Beijing 100871, China.
College of Future Technology, Institute of Molecular Medicine, National Biomedical Imaging Center, Beijing Key Laboratory of Cardiometabolic Molecular Medicine, Peking University, Beijing 100871, China.
Proc Natl Acad Sci U S A. 2025 Jul 22;122(29):e2504879122. doi: 10.1073/pnas.2504879122. Epub 2025 Jul 15.
Plasma membrane (PM) stains are important organelle markers for monitoring membrane morphology and dynamics. The state-of-the-art PM stains are bright, specific, fluorogenic, and compatible with superresolution imaging. However, when recording membrane dynamics using advanced fluorescence microscopes, PM is prone to photodynamic damage introduced by dyes due to its phospholipid bilayer nature. Here, we introduce PK Mem dyes tailored for time-lapse fluorescence imaging. By integrating triplet-state quenchers into the MemBright dyes featuring cyanine chromophores and amphiphilic zwitterion anchors, PK Mem dyes exhibited a three-fold reduction in phototoxicity and a more than four-fold improvement in photostability in imaging experiments compared to MemBright prototypes. These dyes enable 2D and 3D imaging of live or fixed cancer cell lines and a wide range of primary cells, at the same time pair well with various fluorescent markers. PK Mem dyes can be applied to neuronal imaging in brain slices and in vivo two-photon imaging. The gentle nature of PK Mem palette enables ultralong-term recording of cell migration, cardiomyocyte beating, spermiogenesis, and axonal growth cone dynamics, which are prohibitively challenging using traditional PM dyes. Notably, PK Mem dyes are optically compatible with STED/SIM imaging, which can handily upgrade the routine of time-lapse neuronal imaging, such as growth cone tracking and mitochondrial transportations, into nanoscopic resolutions.
质膜(PM)染色剂是监测膜形态和动力学的重要细胞器标记物。目前最先进的PM染色剂明亮、特异、具有荧光性,并且与超分辨率成像兼容。然而,当使用先进的荧光显微镜记录膜动力学时,由于其磷脂双分子层的性质,PM容易受到染料引入的光动力损伤。在这里,我们介绍了专为延时荧光成像量身定制的PK Mem染料。通过将三线态猝灭剂整合到具有花菁发色团和两亲性两性离子锚定基团的MemBright染料中,与MemBright原型相比,PK Mem染料在成像实验中表现出光毒性降低了三倍,光稳定性提高了四倍多。这些染料能够对活的或固定的癌细胞系以及多种原代细胞进行二维和三维成像,同时能与各种荧光标记物很好地配对。PK Mem染料可应用于脑片的神经元成像和体内双光子成像。PK Mem染料的温和特性使得能够对细胞迁移、心肌细胞跳动、精子发生和轴突生长锥动力学进行超长期记录,而使用传统的PM染料进行这些记录极具挑战性。值得注意的是,PK Mem染料在光学上与受激发射损耗显微镜(STED)/结构照明显微镜(SIM)成像兼容,这可以轻松地将延时神经元成像的常规操作,如生长锥追踪和线粒体运输,提升到纳米分辨率。