Kano J, Noguchi M, Kodama M, Tokiwa T
Department of Pathology, University of Tsukuba, Tokyo, Japan.
Am J Pathol. 2000 Jun;156(6):2033-43. doi: 10.1016/S0002-9440(10)65075-4.
Specific nonparenchymal epithelial cell (NPEC) clusters derived from normal adult porcine livers demonstrate a characteristic developmental pattern in the presence of other types of nonparenchymal cells in vitro. This pattern includes scattering, colonial growth, and an emergence of duct-like structures (DLSs) in the colonies. It has been confirmed that 96% of the scattered cell clusters in these cultures develop into colonies containing DLSs. In this study, we examine the differentiation of NPEC clusters using the scattered formation as a marker of the DLS-emerged colonies. We report that the NPECs expressed albumin, alpha-fetoprotein, transferrin, cytokeratin (CK) 18, CK7, and c-met, but not alpha-1-antitrypsin (AAT), at the scattering stage. In addition, at the same stage, NPECs expressed oval-cell-related markers such as OV6, but not biliary epithelial cell (BEC) markers such as gamma-glutamyltransferase, CK19, and CK14. At the DLS emerging stage, hepatocyte markers, including AAT, were detectable in the cells either at the periphery of colonies or in the cells surrounded by the DLSs. On the other hand, the cells constituting DLSs expressed BEC markers, suggesting a bile duct nature of the DLSs. Furthermore, the cells in the colonies possessed an ultrastructural appearance of differentiated hepatocytes and BECs. These results suggest that certain NPECs are bipotent, and that, in culture, they mimic hepatoblast development in vivo.
源自正常成年猪肝脏的特定非实质上皮细胞(NPEC)簇在体外与其他类型的非实质细胞共存时呈现出一种特征性的发育模式。这种模式包括细胞散射、集落生长以及集落中出现管状结构(DLS)。已经证实,这些培养物中96%的散射细胞簇会发育成含有DLS的集落。在本研究中,我们以散射形成作为DLS出现集落的标志物来研究NPEC簇的分化。我们报告称,在散射阶段,NPEC表达白蛋白、甲胎蛋白、转铁蛋白、细胞角蛋白(CK)18、CK7和c - met,但不表达α-1抗胰蛋白酶(AAT)。此外,在同一阶段,NPEC表达诸如OV6等卵圆细胞相关标志物,但不表达诸如γ-谷氨酰转移酶、CK19和CK14等胆管上皮细胞(BEC)标志物。在DLS出现阶段,包括AAT在内的肝细胞标志物在集落周边的细胞或被DLS包围的细胞中可检测到。另一方面,构成DLS的细胞表达BEC标志物,表明DLS具有胆管性质。此外,集落中的细胞具有分化肝细胞和BEC的超微结构外观。这些结果表明某些NPEC具有双向分化能力,并且在培养中,它们模拟了体内肝母细胞的发育。