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功能性极化胆管上皮囊肿的生成与定量表征

Generation and Quantitative Characterization of Functional and Polarized Biliary Epithelial Cysts.

作者信息

Bouzhir Latifa, Gontran Emilie, Loarca Lorena, Collado-Hilly Mauricette, Dupuis-Williams Pascale

机构信息

Physiopathogénèse et traitement des maladies du foie, Université Paris-Saclay, Inserm U1193.

Physiopathogénèse et traitement des maladies du foie, Université Paris-Saclay, Inserm U1193; ESPCI Paris, Université PSL;

出版信息

J Vis Exp. 2020 May 16(159). doi: 10.3791/61404.

Abstract

Cholangiocytes, the epithelial cells that line up the bile ducts in the liver, oversee bile formation and modification. In the last twenty years, in the context of liver diseases, 3-dimensional (3D) models based on cholangiocytes have emerged such as cysts, spheroids, or tube-like structures to mimic tissue topology for organogenesis, disease modeling, and drug screening studies. These structures have been mainly obtained by embedding cholangiocytes in a hydrogel. The main purpose was to study self-organization by addressing epithelial polarity, functional, and morphological properties. However, very few studies focus on cyst formation efficiency. When this is the case, the efficiency is often quantified from images of a single plane. Functional assays and structural analysis are performed without representing the potential heterogeneity of cyst distribution arising from hydrogel polymerization heterogeneities and side effects. Therefore, the quantitative analysis, when done, cannot be used for comparison from one article to another. Moreover, this methodology does not allow comparisons of 3D growth potential of different matrices and cell types. Additionally, there is no mention of the experimental troubleshooting for immunostaining cysts. In this article, we provide a reliable and universal method to show that the initial cell distribution is related to the heterogeneous vertical distribution of cyst formation. Cholangiocyte cells embedded in hydrogel are followed with Z-stacks analysis along the hydrogel depth over the time course of 10 days. With this method, a robust kinetics of cyst formation efficiency and growth is obtained. We also present methods to evaluate cyst polarity and secretory function. Finally, additional tips for optimizing immunostaining protocols are provided in order to limit cyst collapse for imaging. This approach can be applied to other 3D cell culture studies, thus opening the possibilities to compare one system to another.

摘要

胆管细胞是排列在肝脏胆管内的上皮细胞,负责胆汁的形成和修饰。在过去二十年中,在肝脏疾病的背景下,基于胆管细胞的三维(3D)模型如囊肿、球体或管状结构应运而生,用于模拟组织拓扑结构以进行器官发生、疾病建模和药物筛选研究。这些结构主要通过将胆管细胞嵌入水凝胶中获得。其主要目的是通过研究上皮极性、功能和形态特性来探讨自组织现象。然而,很少有研究关注囊肿形成效率。即便有相关研究,其效率通常也只是从单个平面的图像中进行量化。在进行功能测定和结构分析时,并未考虑到水凝胶聚合不均一性和副作用所导致的囊肿分布潜在异质性。因此,即便进行了定量分析,所得结果也无法在不同文章之间进行比较。此外,这种方法无法比较不同基质和细胞类型的3D生长潜力。另外,也没有提及对囊肿进行免疫染色时的实验故障排除方法。在本文中,我们提供了一种可靠且通用的方法,以表明初始细胞分布与囊肿形成的异质垂直分布有关。通过沿水凝胶深度进行Z轴堆叠分析,在10天的时间进程中跟踪嵌入水凝胶中的胆管细胞。通过这种方法,可以获得囊肿形成效率和生长的稳健动力学数据。我们还介绍了评估囊肿极性和分泌功能的方法。最后,提供了优化免疫染色方案的额外提示,以减少成像时囊肿塌陷的情况。这种方法可应用于其他3D细胞培养研究,从而为不同系统之间的比较开辟了可能性。

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