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制备模块化透明质酸-PEG 水凝胶以支持在灌注式肝芯片装置中进行 3D 肝细胞培养。

Fabrication of modular hyaluronan-PEG hydrogels to support 3D cultures of hepatocytes in a perfused liver-on-a-chip device.

机构信息

Division of Biotechnology, Department of Physics, Chemistry and Biology (IFM), Linköping University, Sweden.

出版信息

Biofabrication. 2018 Dec 27;11(1):015013. doi: 10.1088/1758-5090/aaf657.

Abstract

Liver cell culture models are attractive in both tissue engineering and for development of assays for drug toxicology research. To retain liver specific cell functions, the use of adequate cell types and culture conditions, such as a 3D orientation of the cells and a proper supply of nutrients and oxygen, are critical. In this article, we show how extracellular matrix mimetic hydrogels can support hepatocyte viability and functionality in a perfused liver-on-a-chip device. A modular hydrogel system based on hyaluronan and poly(ethylene glycol) (HA-PEG), modified with cyclooctyne moieties for bioorthogonal strain-promoted alkyne-azide 1, 3-dipolar cycloaddition (SPAAC), was developed, characterized, and compared for cell compatibility to hydrogels based on agarose and alginate. Hepatoma cells (HepG2) formed spheroids with viable cells in all hydrogels with the highest expression of albumin and urea in alginate hydrogels. By including an excess of cyclooctyne in the HA backbone, azide-modified cell adhesion motifs (linear and cyclic RGD peptides) could be introduced in order to enhance viability and functionality of human induced pluripotent stem cell derived hepatocytes (hiPS-HEPs). In the HA-PEG hydrogels modified with cyclic RGD peptides hiPS-HEPs migrated and grew in 3D and showed an increased viability and higher albumin production compared to when cultured in the other hydrogels. This flexible SPAAC crosslinked hydrogel system enabled fabrication of perfused 3D cell culture of hiPS-HEPs and is a promising material for further development and optimization of liver-on-a-chip devices.

摘要

肝细胞培养模型在组织工程和药物毒理学研究中具有吸引力。为了保留肝脏特异性细胞功能,使用适当的细胞类型和培养条件至关重要,例如细胞的 3D 取向以及适当的营养物质和氧气供应。在本文中,我们展示了细胞外基质模拟水凝胶如何在灌注式肝芯片设备中支持肝细胞的活力和功能。我们开发了一种基于透明质酸和聚乙二醇(HA-PEG)的模块化水凝胶系统,该系统通过环辛炔部分进行了修饰,用于生物正交应变促进的叠氮-炔 1,3-偶极环加成(SPAAC),并对其进行了表征,并与基于琼脂糖和海藻酸盐的水凝胶进行了细胞相容性比较。肝癌细胞(HepG2)在所有水凝胶中形成了具有活力细胞的球体,其中在海藻酸盐水凝胶中白蛋白和尿素的表达最高。通过在 HA 主链中包含过量的环辛炔,可以引入叠氮修饰的细胞黏附基序(线性和环状 RGD 肽),以提高人诱导多能干细胞衍生的肝细胞(hiPS-HEPs)的活力和功能。在修饰有环状 RGD 肽的 HA-PEG 水凝胶中,hiPS-HEPs 迁移并在 3D 中生长,与在其他水凝胶中培养相比,其活力更高,白蛋白产量更高。这种灵活的 SPAAC 交联水凝胶系统可用于 hiPS-HEPs 的灌注 3D 细胞培养,是进一步开发和优化肝芯片设备的有前途的材料。

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