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首页> 外文期刊>In Vitro Cellular and Developmental Biology. Animal: Journal of the Tissues Culture Association >Elevated expression of hormone-regulated rat hepatocyte functions in a new serum-free hepatocyte-stromal cell coculture model
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Elevated expression of hormone-regulated rat hepatocyte functions in a new serum-free hepatocyte-stromal cell coculture model

机译:在新的无血清肝细胞-基质细胞共培养模型中激素调节的大鼠肝细胞功能的表达升高

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摘要

The specific performance of the adult hepatic parenchymal cell is maintained and controlled by factors deriving from the stromal bed; the chemical nature of these factors is unknown. This study aimed to develop a serum-free hierarchial hepatocyte-nonparenchymal (stromal) cell coculture system. Hepatic stromal cells proliferated on crosslinked collagen in serum-free medium with epidermal growth factor, basic fibroblast growth factor, and hepatocyte-conditioned medium; cell type composition changed during the 2-wk culture period. During the first wk, the culture consisted of proliferating sinusoidal endothelial cells with well-preserved sieve plates, proliferating hepatic stellate cells, and partially activated Kupffer cells. The number of endothelial cells declined thereafter; stellate cells and Kupffer cells became the prominent cell types after 8 d. Hepatocytes were seeded onto stromal cells precultured for 4-14 d; they adhered to stellate and Kupffer cells, but spared the islands of endothelial cells. Stellate cells spread out on top of the hepatocytes; Kupffer cell extensions established multiple contacts to hepatocytes and stellated out on top of the hepatocytes; Kupffer cell extensions established multiple contacts to hepatocytes and stellate cells. Hepatocyte viability was maintained by coculture; the positive influence of stromal cell signals on hepatocyte differentiation became evident after 48 h; a strong improvement of cell responsiveness toward hormones could be observed in cocultured hepatocytes. Hierarchial hepatocyte coculture enhanced the glucagon-dependent increases in phosphoenolpyruvate carboxykinase activity and messenger ribonucleic acid (mRNA) content three- and twofold, respectively; glucagon-activated urea production was elevated two-fold. Coculturing also stimulated glycogen deposition; basal synthesis was increased by 30% and the responsiveness toward insulin and glucose was elevated by 100 and 55%, respectively. The insulin-dependent rise in the glucokinase mRNA content was increased twofold in cocultured hepatocytes. It can be concluded that long-term signals from stromal cells maintain hepatocyte differentiation. This coculture model should, therefore, provide the technical basis for the investigation of stroma-derived differentiation factos.
机译:成年肝实质细胞的特定性能由基质床衍生的因子维持和控制。这些因素的化学性质未知。这项研究旨在开发无血清的肝细胞-非实质细胞(基质)细胞共培养系统。在具有表皮生长因子,碱性成纤维细胞生长因子和肝细胞条件培养基的无血清培养基中,肝基质细胞在交联胶原上增殖。在2周的培养期间,细胞类型组成发生了变化。在第一个星期,培养物由增殖良好的筛板的正弦血管内皮细胞,增殖的肝星状细胞和部分活化的库普弗细胞组成。此后,内皮细胞的数量减少了。 8 d后星状细胞和Kupffer细胞成为突出的细胞类型。将肝细胞接种到预培养4-14 d的基质细胞上;他们黏附在星状和库普弗细胞上,但保留了内皮细胞岛。星状细胞分布在肝细胞的顶部;枯否细胞的延伸建立了与肝细胞的多次接触,并在肝细胞的顶部星状突出。库普弗细胞的延伸建立了与肝细胞和星状细胞的多种接触。通过共培养维持肝细胞活力; 48h后,基质细胞信号对肝细胞分化的积极影响变得明显。在共培养的肝细胞中可以观察到细胞对激素的反应性大大改善。分层肝细胞共培养分别增强了胰高血糖素依赖性磷酸烯醇丙酮酸羧激酶活性和信使核糖核酸(mRNA)含量的三倍和两倍。胰高血糖素激活的尿素产量提高了两倍。共培养还刺激了糖原的沉积。基础合成增加了30%,对胰岛素和葡萄糖的反应性分别提高了100和55%。共培养的肝细胞中,葡萄糖激酶mRNA含量的胰岛素依赖性增加增加了两倍。可以得出结论,来自基质细胞的长期信号维持肝细胞分化。因此,这种共培养模型应该为基质衍生分化因子的研究提供技术基础。

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