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Flow and nitric oxide increase hepatic function in co-culturing hepatocytes with hepatic stellate cells and endothelial cells

机译:流动和一氧化氮增加与肝星状细胞和内皮细胞共同培养肝细胞的肝功能

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It is necessary to develop the way how researchers culture hepatocytes (HC) for showing high levels of hepatic functions in vitro, because functions of HC in vitro is only 2-hundredth part of the functions in vivo. Hepatic function increased when HC were cultured within endothelial cells (EC) and hepatic stellate cells (HSC). Nitric oxide (NO) also increased hepatic function. However no study has described the effects of media flow load on a co-culture model of HC, HSC and EC. Furthermore there was no research on NO in co-culture model. Therefore, we developed co-culture models that include three of these cell types, and assayed their hepatic functions under flow. We also measured the NO concentration in each models. All models under load of flow exhibited high hepatic function than in static culture. Under load of flow, HC+HSC model and HC+HSC+EC model showed the highest hepatic function. In almost models NO concentration exhibited the same tendency to increase along with hepatic function. We suggested co-culture and flow influenced hepatic function, and NO related to the improvement of hepatic function. Furthermore, we thought HSC caused other elements of the improvement.
机译:有必要开发研究人员培养肝细胞(HC)在体外显示高水平肝功能的方式,因为HC体外的功能仅为体内函数的二百分之一。当HC在内皮细胞(EC)和肝星状细胞(HSC)中培养HC时,肝功能增加。一氧化氮(NO)也增加了肝功能。然而,没有研究介质流量负荷对HC,HSC和EC的共培养模型的影响。此外,在共培养模型中没有任何研究。因此,我们开发了包括其中三种细胞类型的共培养模型,并在流动下测定其肝功能。我们还测量了每个模型中的浓度。流动负荷下的所有型号都表现出高于静态培养的高肝功能。在流动负荷下,HC + HSC模型和HC + HSC + EC模型显示出最高的肝功能。在几乎模型中,没有浓度表现出相同的增加趋势以及肝功能。我们建议共同培养和流动影响肝功能,没有与肝功能的改善有关。此外,我们认为HSC引起了改进的其他元素。

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