Stable two- and three-dimensional cholangiocyte culture systems from extrahepatic bile ducts of biliary atresia patients: use of structural and functional bile duct epithelium models for in vitro analyses

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Ai Shimamura, Mayumi Higashi, Kazuya Nagayabu, Shigeru Ono
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Abstract

We herein report two- (2D) and three-dimensional (3D) culture methods of cholangiocytes originating from extrahepatic bile ducts of biliary atresia (BA) patients. Cells were stabilized for in vitro analyses, and 3D culture by two different methods showed the structural and functional features of cholangiocytes in the gel scaffold. First, cells were obtained from gallbladder contents or resected tissues of patients at surgery and then cultured in our original conditioned medium with a cocktail of signaling inhibitors that maintains the immaturity and amplification of cells. Cells were immortalized by inducing SV40T and hTERT genes using lentivirus systems. Immunostaining with CK19 and Sox9 antibodies confirmed the cells as cholangiocytes. 3D organoids were formed in Matrigel in two different ways: by forming spheroids or via vertical growth from 2D cell sheets (2 + 1D culture). Organoids generated with both methods showed the uptake and excretion of rhodamine-123, and duct-like structures were also found. Our culture methods are simpler than previously reported methods and still show the structural and functional characteristics of cholangiocytes. Thus, this system is expected to be useful for the in vitro investigation of cholangiocyte damage or regeneration in BA patients.

Abstract Image

来自胆道闭锁患者肝外胆管的稳定二维和三维胆管细胞培养系统:利用胆管上皮结构和功能模型进行体外分析
我们在此报告胆道闭锁(BA)患者肝外胆管胆管细胞的二维(2D)和三维(3D)培养方法。通过两种不同方法进行的三维培养显示了凝胶支架中胆管细胞的结构和功能特征。首先,从患者的胆囊内容物或手术切除的组织中获取细胞,然后用我们的原始条件培养基和鸡尾酒信号抑制剂进行培养,以保持细胞的不成熟性和扩增性。利用慢病毒系统诱导 SV40T 和 hTERT 基因,使细胞永生。用 CK19 和 Sox9 抗体进行免疫染色确认细胞为胆管细胞。在 Matrigel 中形成三维器官组织有两种不同的方法:形成球体或从二维细胞片垂直生长(2 + 1D 培养)。用这两种方法生成的器官组织都能吸收和排泄罗丹明-123,而且还发现了类似导管的结构。我们的培养方法比以前报道的方法简单,但仍能显示胆管细胞的结构和功能特征。因此,该系统有望用于体外研究 BA 患者的胆管细胞损伤或再生。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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