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Self-assembled 3D spheroids and hollow-fibre bioreactors improve MSC-derived hepatocyte-like cell maturation in vitro

机译:自组装的3D球形和空心纤维生物反应器在体外改善MSC衍生的肝细胞样细胞成熟

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3D cultures of human stem cell-derived hepatocyte-like cells (HLCs) have emerged as promising models for short- and long-term maintenance of hepatocyte phenotype in vitro cultures by better resembling the in vivo environment of the liver and consequently increase the translational value of the resulting data. In this study, the first stage of hepatic differentiation of human neonatal mesenchymal stem cells (hnMSCs) was performed in 2D monolayer cultures for 17 days. The second stage was performed by either maintaining cells in 2D cultures for an extra 10 days, as control, or alternatively cultured in 3D as self-assembled spheroids or in multicompartment membrane bioreactor system. All systems enabled hnMSC differentiation into HLCs as shown by positive immune staining of hepatic markers CK-18, HNF-4 alpha, albumin, the hepatic transporters OATP-C and MRP-2 as well as drug-metabolizing enzymes like CYP1A2 and CYP3A4. Similarly, all models also displayed relevant glucose, phase I and phase II metabolism, the ability to produce albumin and to convert ammonia into urea. However, EROD activity and urea production were increased in both 3D systems. Moreover, the spheroids revealed higher bupropion conversion, whereas bioreactor showed increased albumin production and capacity to biotransform diclofenac. Additionally, diclofenac resulted in an IC50 value of 1.51 +/- 0.05 and 0.98 +/- 0.03 in 2D and spheroid cultures, respectively. These data suggest that the 3D models tested improved HLC maturation showing a relevant biotransformation capacity and thus provide more appropriate reliable models for mechanistic studies and more predictive systems for in vitro toxicology applications.
机译:人干细胞衍生的肝细胞样细胞(HLC)的3D培养物作为有前途的模型,用于通过更好地类似于肝脏的体内培养物的肝细胞表型的短期和长期维持,因此增加了平移价值结果数据。在该研究中,在2D单层培养物中进行17天,在2D单层培养物中进行人新生间充质干细胞(HNMSCs)的第一阶段。第二阶段通过将细胞在2D培养物中维持额外10天,作为控制,或者在3D中以自组装的球状体或多组分膜生物反应器系统培养。所有系统使HNMSC分化为HLC,如肝标记物CK-18,HNF-4α,白蛋白,肝脏转运蛋白oATP-C和MRP-2的阳性免疫染色和CYP1A2和CYP3A4等药物代谢酶。类似地,所有模型也显示出相关的葡萄糖,I相和II期代谢,生产白蛋白的能力并将氨转化为尿素。然而,在3D系统中增加了EROD活性和尿素产量。此外,球状体揭示了更高的缓和转化率,而生物反应器显示出增加的白蛋白产生和对生物转移的能力Diclofenac。另外,双氯芬酸分别导致2D和球状培养物中的IC 50值为1.51 +/- 0.05和0.98 +/- 0.03。这些数据表明,3D模型测试了改进的HLC成熟,显示出相关的生物转换能力,从而为机械研究提供更合适的可靠模型以及用于体外毒理学应用的更高预测系统。

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