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基于灌注的微流控装置,用于在不存在生物或合成基质或凝固剂的情况下进行三维动态原代人肝细胞培养。

Perfusion-based microfluidic device for three-dimensional dynamic primary human hepatocyte cell culture in the absence of biological or synthetic matrices or coagulants.

机构信息

Science & Technology, Corning Incorporated, Corning, New York 14831-0001, USA.

出版信息

Lab Chip. 2010 Dec 21;10(24):3380-6. doi: 10.1039/c0lc00135j. Epub 2010 Nov 8.

Abstract

We describe a perfusion-based microfluidic device for three-dimensional (3D) dynamic primary human hepatocyte cell culture. The microfluidic device was used to promote and maintain 3D tissue-like cellular morphology and cell-specific functionality of primary human hepatocytes by restoring membrane polarity and hepatocyte transport function in vitro without the addition of biological or synthetic matrices or coagulants. A unique feature of our dynamic cell culture device is the creation of a microenvironment, without the addition of biological or synthetic matrices or coagulants, that promotes the 3D organization of hepatocytes into cord-like structures that exhibit functional membrane polarity as evidenced by the expression of gap junctions and the formation of an extended, functionally active, bile canalicular network.

摘要

我们描述了一种基于灌注的微流控设备,用于三维(3D)动态原代人肝细胞培养。该微流控设备用于通过恢复体外细胞膜极性和肝细胞转运功能来促进和维持原代人肝细胞的 3D 组织样细胞形态和细胞特异性功能,而无需添加生物或合成基质或凝结剂。我们的动态细胞培养设备的一个独特特点是创建了一个微环境,无需添加生物或合成基质或凝结剂,即可促进肝细胞 3D 组织成索状结构,这些结构表现出功能性膜极性,证据是缝隙连接的表达和扩展的、功能活跃的、胆小管网络的形成。

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