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Large-scale high-density culture of hepatocytes in a liver microsystem with mimicked sinusoid blood flow

机译:肝脏微系统中肝细胞大规模高密度培养,模仿正弦血流

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In vitro engineering of liver tissue is a rapidly developing field for various biomedical applications. However, liver tissue culture is currently performed on only a small scale with a low density of hepatocytes. In this study, a simple design was introduced in a liver microsystem to enhance the transport of nutrients (e.g., oxygen and glucose) for the three-dimensional large-scale, high-density culture of hepatocytes. In this design, convection across the cell culture zone was generated to mimic sinusoid blood flow (SBF) based on the pressure difference between two fluids flowing in a countercurrent manner on either side of the cell culture zone. First, the distributions of living and dead cells in different culture subzones under various perfusion flow rates were observed, analysed, and compared. Then, the enhanced transport of nutrients was experimentally validated in relation to the viability of cells and theoretically explained by comparing the fluid velocity and oxygen concentration distribution in the cell culture zone in counterflow and coflow modes. Finally, the functions of the SBF-mimicked liver microsystem were assessed on the basis of specific metabolites, synthesized proteins, and bilirubin detoxification of hepatocytes, with collagen and alginate as extracellular matrices. Under this design, the density of hepatocytes cultured at the 3-mm-thickness scale reached similar to 7 x 10(7) cells/ml on Day 7, and the metabolism and detoxification functions of the cells worked well. In addition, a liver rope-like structure and sphere-like clusters of cells were observed. This work provides insight for the design of a bionic liver microsystem.
机译:肝组织的体外工程是各种生物医学应用的快速发展领域。然而,目前仅具有低密度的肝细胞密度的小规模进行肝组织培养物。在本研究中,在肝脏微系统中引入了一种简单的设计,以增强肝细胞三维大型高密度培养的营养素(例如,氧气和葡萄糖)的运输。在这种设计中,基于在细胞培养区的任一侧流动的两个流体之间流动的两个流体之间的压力差产生细胞培养区的对流以模拟正弦血流(SBF)。首先,观察到不同培养率下的生活和死细胞的分布,分析,并进行比较。然后,通过将细胞培养区中的流体速度和氧浓度分布与逆流和共同方式的细胞培养区中的流体速度和氧浓度分布进行比较,实验地验证了营养素的增强的营养素传输。最后,基于特异性代谢物,合成的蛋白质和肝细胞的肝细胞的特异性代谢物,合成蛋白质和胆红素排毒评估了SBF模仿肝脏微系统的功能,用胶原蛋白和藻酸盐作为细胞外基质。在这种设计下,在第7天达到3mm厚度尺度以3mm厚度培养的肝细胞的密度达到与7×10(7)个细胞/ mL相似,并且细胞的代谢和排毒功能良好。另外,观察到肝绳状结构和球形细胞簇。这项工作为仿生肝脏微系统的设计提供了洞察力。

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