首页> 美国卫生研究院文献>Biomolecules >Morphological and Functional Analysis of Hepatocyte Spheroids Generated on Poly-HEMA-Treated Surfaces under the Influence of Fetal Calf Serum and Nonparenchymal Cells
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Morphological and Functional Analysis of Hepatocyte Spheroids Generated on Poly-HEMA-Treated Surfaces under the Influence of Fetal Calf Serum and Nonparenchymal Cells

机译:胎牛血清和非实质细胞影响下在多HEMA处理过的表面上产生的肝细胞球体的形态和功能分析

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摘要

Poly (2-hydroxyethyl methacrylate) (HEMA) has been used as a clinical material, in the form of a soft hydrogel, for various surgical procedures, including endovascular surgery of liver. It is a clear liquid compound and, as a soft, flexible, water-absorbing material, has been used to make soft contact lenses from small, concave, spinning molds. Primary rat hepatocyte spheroids were created on a poly-HEMA-coated surface with the intention of inducing hepatic tissue formation and improving liver functions. We investigated spheroid formation of primary adult rat hepatocyte cells and characterized hepatic-specific functions under the special influence of fetal calf serum (FCS) and nonparencymal cells (NPC) up to six days in different culture systems (e.g., hepatocytes + FCS, hepatocytes – FCS, NPC + FCS, NPC – FCS, co-culture + FCS, co-culture – FCS) in both the spheroid model and sandwich model. Immunohistologically, we detected gap junctions, Ito cell/Kupffer cells, sinusoidal endothelial cells and an extracellular matrix in the spheroid model. FCS has no positive effect in the sandwich model, but has a negative effect in the spheroid model on albumin production, and no influence in urea production in either model. We found more cell viability in smaller diameter spheroids than larger ones by using the apoptosis test. Furthermore, there is no positive influence of the serum or NPC on spheroid formation, suggesting that it may only depend on the physical condition of the culture system. Since the sandwich culture has been considered a “gold standard” in vitro culture model, the hepatocyte spheroids generated on the poly-HEMA-coated surface were compared with those in the sandwich model. Major liver-specific functions, such as albumin secretion and urea synthesis, were evaluated in both the spheroid and sandwich model. The synthesis performance in the spheroid compared to the sandwich culture increases approximately by a factor of 1.5. Disintegration of plasma membranes in both models was measured by lactate dehydrogenase (LDH) release in both models. Additionally, diazepam was used as a substrate in drug metabolism studies to characterize the differences in the biotransformation potential with metabolite profiles in both models. It showed that the diazepam metabolism activities in the spheroid model is about 10-fold lower than the sandwich model. The poly-HEMA-based hepatocyte spheroid is a promising new platform towards hepatic tissue engineering leading to in vitro hepatic tissue formation.
机译:聚(甲基丙烯酸2-羟乙酯)(HEMA)已经以软水凝胶的形式用作临床材料,用于各种外科手术程序,包括肝脏的血管内手术。它是一种透明的液体化合物,作为一种柔软,柔软,吸水的材料,已被用于从小型凹形旋转模具中制造软性隐形眼镜。在聚-HEMA涂层表面上产生大鼠原代肝细胞球体,目的是诱导肝组织形成并改善肝功能。我们研究了成年大鼠原代肝细胞的球状形成,并在不同培养系统(例如,肝细胞+ FCS,肝细胞–球体模型和三明治模型中的FCS,NPC + FCS,NPC – FCS,共培养+ FCS,共培养– FCS)。免疫组织学上,我们检测了球状模型中的缝隙连接,Ito细胞/ Kupffer细胞,正弦内皮细胞和细胞外基质。 FCS在三明治模型中没有正面影响,但在球体模型中对白蛋白产生具有负面影响,在这两种模型中均未对尿素产生产生影响。通过使用凋亡测试,我们发现直径较小的球体比较大的球体具有更高的细胞活力。此外,血清或NPC对球体的形成没有积极影响,这表明它可能仅取决于培养系统的物理条件。由于三明治培养已被视为“金标准”体外培养模型,因此将在聚HEMA涂层表面上产生的肝细胞球体与三明治模型进行了比较。在球体和三明治模型中都评估了主要的肝脏特异性功能,例如白蛋白分泌和尿素合成。与三明治培养相比,球体的合成性能提高了约1.5倍。通过两个模型中的乳酸脱氢酶(LDH)释放来测量两个模型中质膜的崩解。此外,地西epa在药物代谢研究中被用作底物,以表征两种模型中代谢物谱在生物转化潜能方面的差异。结果表明,球形模型中地西epa的代谢活性比夹心模型低约10倍。基于聚HEMA的肝细胞球体是有希望的新平台,可用于导致体外肝组织形成的肝组织工程。

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