Truschel S T, Ruiz W G, Shulman T, Pilewski J, Sun T T, Zeidel M L, Apodaca G
Renal-Electrolyte Division of the Department of Medicine and Laboratory of Epithelial Cell Biology, University of Pittsburgh, Pittsburgh, Pennsylvania 15261, USA.
J Biol Chem. 1999 May 21;274(21):15020-9. doi: 10.1074/jbc.274.21.15020.
Despite almost 25 years of effort, the development of a highly differentiated and functionally equivalent cell culture model of uroepithelial cells has eluded investigators. We have developed a primary cell culture model of rabbit uroepithelium that consists of an underlying cell layer that interacts with a collagen substratum, an intermediate cell layer, and an upper cell layer of large (25-100 micrometer) superficial cells. When examined at the ultrastructural level, the superficial cells formed junctional complexes and had an asymmetric unit membrane, a hallmark of terminal differentiation in bladder umbrella cells. These cultured "umbrella" cells expressed uroplakins and a 27-kDa uroepithelial specific antigen that assembled into detergent-resistant asymmetric unit membrane particles. The cultures had low diffusive permeabilities for water (2.8 x 10(-4) cm/s) and urea (3.0 x 10(-7) cm/s) and high transepithelial resistance (>8000 Omega cm2) was achieved when 1 mM CaCl2 was included in the culture medium. The cell cultures expressed an amiloride-sensitive sodium transport pathway and increases in apical membrane capacitance were observed when the cultures were osmotically stretched. The described primary rabbit cell culture model mimics many of the characteristics of uroepithelium found in vivo and should serve as a useful tool to explore normal uroepithelial function as well as dysfunction as a result of disease.
尽管经过了近25年的努力,研究人员仍未成功开发出一种高度分化且功能等效的尿上皮细胞培养模型。我们已经建立了一种兔尿上皮原代细胞培养模型,该模型由与胶原基质相互作用的底层细胞层、中间细胞层和由大的(25 - 100微米)表层细胞组成的上层细胞层构成。在超微结构水平上观察时,表层细胞形成连接复合体,并具有不对称单位膜,这是膀胱伞细胞终末分化的标志。这些培养的“伞”细胞表达尿血小板溶素和一种27 kDa的尿上皮特异性抗原,它们组装成抗去污剂的不对称单位膜颗粒。这些培养物对水(2.8×10⁻⁴厘米/秒)和尿素(3.0×10⁻⁷厘米/秒)的扩散通透性较低,当培养基中含有1 mM氯化钙时,可实现高跨上皮电阻(>8000欧姆·厘米²)。细胞培养物表达一种对氨氯地平敏感的钠转运途径,当培养物受到渗透拉伸时,可观察到顶膜电容增加。所描述的兔原代细胞培养模型模拟了体内尿上皮的许多特征,应作为探索正常尿上皮功能以及疾病导致的功能障碍的有用工具。