体内
生物正交化学
点击化学
临床前影像学
活体显微镜检查
化学
荧光团
荧光显微镜
生物物理学
染色
细胞生物学
生物
病理
荧光
医学
组合化学
光学
物理
生物技术
作者
Jina Ko,Kilean Lucas,Rainer H. Köhler,Elias A. Halabi,Martin Wilkovitsch,Jonathan C. Carlson,Ralph Weissleder
标识
DOI:10.1002/advs.202200064
摘要
The ability to observe cells in live organisms is essential for understanding their function in complex in vivo milieus. A major challenge today has been the limited ability to perform higher multiplexing beyond four to six colors to define cell subtypes in vivo. Here, a click chemistry-based strategy is presented for higher multiplexed in vivo imaging in mouse models. The method uses a scission-accelerated fluorophore exchange (SAFE), which exploits a highly efficient bioorthogonal mechanism to completely remove fluorescent signal from antibody-labeled cells in vivo. It is shown that the SAFE-intravital microscopy imaging method allows 1) in vivo staining of specific cell types in dorsal and cranial window chambers of mice, 2) complete un-staining in minutes, 3) in vivo click chemistries at lower (µm) and thus non-toxic concentrations, and 4) the ability to perform in vivo cyclic imaging. The potential utility of the method is demonstrated by 12 color imaging of immune cells in live mice.
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