Prestigiacomo Vincenzo, Weston Anna, Suter-Dick Laura
University of Applied Sciences Northwestern Switzerland, School of Life Sciences, Muttenz, Switzerland; University of Basel, Department of Biomedicine, 4058 Basel, Switzerland.
University of Applied Sciences Northwestern Switzerland, School of Life Sciences, Muttenz, Switzerland.
J Pharmacol Toxicol Methods. 2020 Jan-Feb;101:106650. doi: 10.1016/j.vascn.2019.106650. Epub 2019 Nov 13.
Chronic liver damage can lead to fibrosis, encompassing hepatocellular injury, activation of Kupffer cells (KC), and activation of hepatic stellate cells (HSC). Inflammation and TGF-β1 are known mediators in the liver fibrosis adverse outcome pathway (AOP). The aim of this project was to develop a suitable rodent cell culture model for the investigation of key events involved in the development of liver fibrosis, specifically the responses to pathophysiological stimuli such as TGF-β1 and LPS-triggered inflammation. We optimized a single step protocol to purify rat primary hepatocytes (Hep), HSC and KC cells to generate 3D co-cultures based on the hanging drop method. This primary multicellular model responded to the profibrotic cytokine TGF-β1 (1 ng/mL) with signs of hepatocellular damage, inflammation and ultimately HSC activation (increase in αSMA expression). LPS elicited an inflammatory response characterized by increased expression of cytokines. 3D-monocultures comprising only Hep displayed different responses, underlying that parenchymal and non-parenchymal cells need to be present in the system to recapitulate fibrosis. The data also suggest that pre-activated HSC may reverse to a quiescent phenotype in 3D, probably due to the more physiological conditions.
慢性肝损伤可导致纤维化,包括肝细胞损伤、库普弗细胞(KC)激活和肝星状细胞(HSC)激活。炎症和转化生长因子-β1(TGF-β1)是肝纤维化不良结局途径(AOP)中已知的介质。本项目的目的是建立一种合适的啮齿动物细胞培养模型,用于研究肝纤维化发展过程中的关键事件,特别是对TGF-β1和脂多糖(LPS)引发的炎症等病理生理刺激的反应。我们优化了一个单步方案,以纯化大鼠原代肝细胞(Hep)、HSC和KC细胞,基于悬滴法生成三维共培养物。这种原代多细胞模型对促纤维化细胞因子TGF-β1(1 ng/mL)产生反应,出现肝细胞损伤、炎症迹象,并最终导致HSC激活(α平滑肌肌动蛋白(αSMA)表达增加)。LPS引发了以细胞因子表达增加为特征的炎症反应。仅由Hep组成的三维单培养物表现出不同的反应,这表明系统中需要存在实质细胞和非实质细胞才能重现纤维化。数据还表明,预激活的HSC在三维环境中可能会恢复到静止表型,这可能是由于更接近生理条件的缘故。