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体外仿生平台采用灌注系统和 3D 球体培养方法可促进组织工程角膜内皮层的构建。

In vitro biomimetic platforms featuring a perfusion system and 3D spheroid culture promote the construction of tissue-engineered corneal endothelial layers.

机构信息

Key Laboratory for Regenerative Medicine, Ministry of Education, Jinan University, Guangzhou, 510632, P.R. China.

The Department of Ophthalmology, the First Clinical Medical College, Jinan University, Guangzhou, 510632, P.R. China.

出版信息

Sci Rep. 2017 Apr 10;7(1):777. doi: 10.1038/s41598-017-00914-1.

Abstract

Corneal endothelial cells (CECs) are very important for the maintenance of corneal transparency. However, in vitro, CECs display limited proliferation and loss of phenotype via endothelial to mesenchymal transformation (EMT) and cellular senescence. In this study, we demonstrate that continuous supplementary nutrition using a perfusion culture bioreactor and three-dimensional (3D) spheroid culture can be used to improve CEC expansion in culture and to construct a tissue-engineered CEC layer. Compared with static culture, perfusion-derived CECs exhibited an increased proliferative ability as well as formed close cell-cell contact junctions and numerous surface microvilli. We also demonstrated that the CEC spheroid culture significantly down-regulated gene expression of the proliferation marker Ki67 and EMT-related markers Vimentin and α-SMA, whereas the gene expression level of the CEC marker ATP1A1 was significantly up-regulated. Furthermore, use of the perfusion system in conjunction with a spheroid culture on decellularized corneal scaffolds and collagen sheets promoted the generation of CEC monolayers as well as neo-synthesized ECM formation. This study also confirmed that a CEC spheroid culture on a curved collagen sheet with controlled physiological intraocular pressure could generate a CEC monolayer. Thus, our results show that the use of a perfusion system and 3D spheroid culture can promote CEC expansion and the construction of tissue-engineered corneal endothelial layers in vitro.

摘要

角膜内皮细胞(CEC)对于维持角膜透明性非常重要。然而,在体外,CEC 通过内皮细胞向间充质转化(EMT)和细胞衰老,显示出有限的增殖能力和表型丧失。在这项研究中,我们证明了使用灌注培养生物反应器和三维(3D)球体培养进行持续补充营养可以改善培养中的 CEC 扩增,并构建组织工程化的 CEC 层。与静态培养相比,灌注衍生的 CEC 表现出增强的增殖能力,形成紧密的细胞-细胞接触连接和许多表面微绒毛。我们还证明,CEC 球体培养显著下调了增殖标志物 Ki67 和 EMT 相关标志物波形蛋白和α-SMA 的基因表达,而 CEC 标志物 ATP1A1 的基因表达水平显著上调。此外,在脱细胞角膜支架和胶原片上使用灌注系统结合球体培养促进了 CEC 单层以及新合成的细胞外基质的形成。本研究还证实,在具有受控生理眼内压的弯曲胶原片上进行 CEC 球体培养可以生成 CEC 单层。因此,我们的结果表明,使用灌注系统和 3D 球体培养可以促进 CEC 扩增和体外构建组织工程化角膜内皮层。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3a81/5429708/3fc07fae6204/41598_2017_914_Fig1_HTML.jpg

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