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用于应用研究的毛细血管化基质上的工程化类肝组织。

Engineered liver-like tissue on a capillarized matrix for applied research.

作者信息

Linke Kirstin, Schanz Johanna, Hansmann Jan, Walles Thorsten, Brunner Herwig, Mertsching Heike

机构信息

Fraunhofer Institute for Interfacial Engineering and Biotechnology, Stuttgart, Germany.

出版信息

Tissue Eng. 2007 Nov;13(11):2699-707. doi: 10.1089/ten.2006.0388.

Abstract

Liver tissue that is functional and viable for several weeks in vitro represents an auspicious test system for basic and applied research. In this study, a coculture system for hepatocytes (HCs) and microvascular endothelial cells (mECs) was generated applying tissue-engineering techniques, establishing the basis for a new bioartificial liver in vitro model. Porcine mECs were seeded on a decellularized porcine jejunal segment with preserved vascular structures. Porcine HCs were seeded onto this vascularized scaffold, and the resulting coculture was maintained for 3 weeks in vitro. Tissue morphology and differentiation was monitored using histology and immunohistochemistry. Tissue metabolism was monitored using daily assessment of urea and lactate production. HC monolayer cultures served as controls. The 2-stage seeding procedure resulted in a 3-dimensional coculture system harboring HC cell clusters in multiple cell layers lining the generated mEC-seeded capillary structures. It was viable for 3 weeks, and HCs maintained their morphology and differentiation. Biochemical testing revealed stable metabolic activity of the tissue culture. In contrast, HCs cultured in monolayer showed morphological dedifferentiation and an unfavorable metabolic state. Our mEC-HC coculture represents a new approach toward a functional bioartificial liver-like tissue applicable as a test system for basic and applied research.

摘要

在体外可保持数周功能和活力的肝组织,是基础研究和应用研究的理想测试系统。在本研究中,应用组织工程技术构建了肝细胞(HCs)和微血管内皮细胞(mECs)的共培养系统,为新型体外生物人工肝模型奠定了基础。将猪mECs接种到保留血管结构的去细胞猪空肠段上。将猪HCs接种到这个血管化支架上,所得共培养物在体外维持3周。使用组织学和免疫组织化学监测组织形态和分化。通过每日评估尿素和乳酸生成来监测组织代谢。HC单层培养用作对照。两阶段接种程序产生了一个三维共培养系统,在生成的接种mEC的毛细血管结构内衬的多个细胞层中含有HC细胞簇。它存活了3周,HCs保持了它们的形态和分化。生化测试显示组织培养具有稳定的代谢活性。相比之下,单层培养的HCs表现出形态去分化和不良的代谢状态。我们的mEC-HC共培养代表了一种构建功能性生物人工肝样组织的新方法,可作为基础研究和应用研究的测试系统。

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