基于微孔膜的肝脏组织工程,用于体外重建三维功能性肝脏组织。

Biomatter Pub Date : 2012-10-01 DOI:10.4161/biom.22481
Junichi Kasuya, Kazuo Tanishita
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引用次数: 0

摘要

为满足日益增长的肝脏组织工程需求,人们开发了各种三维(3D)肝细胞培养技术。然而,传统的肝细胞培养技术包括将细胞悬浮在细胞外基质(ECM)成分中,以及将细胞播种到三维可生物降解支架中,这些技术都有一个固有的缺陷,即细胞与支架的比例较低。我们开发了一种基于微孔膜的肝细胞培养技术。细胞行为和组织结构可由膜的几何形状控制,通过在可生物降解的微孔膜上分层培养细胞,可重建细胞密集的厚组织。应用范围从肝实质细胞单培养到多细胞类型培养,以重建三维功能性肝组织。本综述主要介绍微孔膜在肝组织工程中不断扩大的作用,主要来自我们的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Microporous membrane-based liver tissue engineering for the reconstruction of three-dimensional functional liver tissues in vitro.

To meet the increasing demand for liver tissue engineering, various three-dimensional (3D) liver cell culture techniques have been developed. Nevertheless, conventional liver cell culture techniques involving the suspending cells in extracellular matrix (ECM) components and the seeding of cells into 3D biodegradable scaffolds have an intrinsic shortcoming, low cell-scaffold ratios. We have developed a microporous membrane-based liver cell culture technique. Cell behaviors and tissue organization can be controlled by membrane geometry, and cell-dense thick tissues can be reconstructed by layering cells cultured on biodegradable microporous membranes. Applications extend from liver parenchymal cell monoculture to multi-cell type cultures for the reconstruction of 3D functional liver tissue. This review focuses on the expanding role for microporous membranes in liver tissue engineering, primarily from our research.

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