Two-dimensional (2D) histopathology based on the observation of thin tissue slides is the current paradigm in diagnosis and prognosis. However, labeling strategies in conventional histopathology are limited in compatibility with 3D imaging combined with tissue clearing techniques. Here, we present a rapid and efficient volumetric imaging technique of pathological tissues called 3D tissue imaging through de novo formation of fluorophores, or 3DNFC, which is the integration of citrate-based fluorogenic reaction DNFC and tissue clearing techniques. 3DNFC markedly increases the fluorescence intensity of tissues by generating fluorophores on nonfluorescent amino-terminal cysteine and visualizes the 3D structure of the tissues to provide their anatomical morphology and volumetric information. Furthermore, the application of 3DNFC to pathological tissue achieves the 3D reconstruction for the unbiased analysis of diverse features of the disorders in their natural context. We suggest that 3DNFC is a promising volumetric imaging method for the prognosis and diagnosis of pathological tissues.
Three-dimensional imaging and analysis of pathological tissue samples with de novo generation of citrate-based fluorophores
利用柠檬酸盐基荧光团对病理组织样本进行三维成像和分析
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作者:Jinyoung Pac, Dong-Jun Koo, Hyeongjun Cho, Dongwook Jung, Min-Ha Choi, Yunjung Choi, Bohyun Kim, Ji-Ung Park, Sung-Yon Kim, Yan Lee
| 期刊: | Science Advances | 影响因子: | 12.500 |
| 时间: | 2022 | 起止号: | 2022 Nov 18;8(46):eadd9419. |
| doi: | 10.1126/sciadv.add9419 | 研究方向: | 信号转导 |
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