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Fine-scale visualizing the hierarchical structure of mouse biliary tree with fluorescence microscopy method

机译:荧光显微镜法精细可视化小鼠胆树的层次结构

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摘要

The liver is a vital organ and the hepatic lobule serves as the most basic structural and functional unit which is mainly assembled with parenchymal cells including hepatocytes and biliary epithelial cells. The continuous tubular arrangement of biliary cells which constitutes the biliary tracts is critical for liver function, however, the biliary tracts are often disrupted in many liver diseases such as cirrhosis and some congenital disorders. Visualization of the biliary tracts in fine-scale and three-dimension will help to understanding the structure basis of these liver diseases. In the present study, we established several biliary tract injury mouse models by diet feeding, surgery or genetic modification. The cytoplasm and nuclei of the parenchymal cells were marked by active uptake of fluorescent dyes Rhodamine B (red) and Hoechst (blue), respectively. After the removal of liver , the biliary tracts were retrogradely perfused with green fluorescent dye, fluorescein isothiocyanate (FITC). The liver was then observed under confocal microscopy. The fine-scale and three-dimensional (3D) structure of the whole biliary tree, particularly the network of the end-terminal bile canaliculi and neighboring hepatocytes were clearly visualized. The biliary tracts displayed clear distinct characteristics in normal liver and diseased liver models. Taken together, we have developed a simple and repeatable imaging method to visualize the fine-scale and hierarchical architecture of the biliary tracts spreading in the mouse liver.
机译:肝脏是重要的器官,肝小叶是最基本的结构和功能单元,主要与包括肝细胞和胆道上皮细胞在内的实质细胞组装在一起。构成胆道的胆管细胞的连续管状排列对于肝功能至关重要,但是,在许多肝病如肝硬化和某些先天性疾病中,胆道经常被破坏。精细和三维地可视化胆道将有助于理解这些肝脏疾病的结构基础。在本研究中,我们通过饮食喂养,手术或基因改造建立了几种胆道损伤小鼠模型。实质细胞的细胞质和细胞核分别被主动摄取荧光染料若丹明B(红色)和Hoechst(蓝色)标记。取出肝脏后,向胆道逆行灌注绿色荧光染料异硫氰酸荧光素(FITC)。然后在共聚焦显微镜下观察肝脏。整个胆管树的精细尺度和三维(3D)结构,特别是末端胆汁小管和邻近肝细胞的网络清晰可见。在正常肝脏和患病的肝脏模型中,胆道表现出明显的明显特征。综上所述,我们已经开发出一种简单且可重复的成像方法,以可视化在小鼠肝脏中传播的胆道的精细规模和层次结构。

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