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生物材料的曲率和形貌对角膜内皮细胞行为的时间依赖性影响。

The time dependent influence of curvature and topography of biomaterials in the behavior of corneal endothelial cells.

作者信息

Bosch Begoña M, Delgado Luis M, Rodríguez-González Raquel, Perez Roman A

机构信息

Bioengineering Institute of Technology, Universitat Internacional de Catalunya, Barcelona, Spain.

Bioengineering Department, Universitat Internacional de Catalunya, Barcelona, Spain.

出版信息

Front Bioeng Biotechnol. 2024 Sep 25;12:1454675. doi: 10.3389/fbioe.2024.1454675. eCollection 2024.

Abstract

Among the different layers of the cornea, the corneal endothelium, which is composed of corneal endothelial cells (CEC), plays a key role in the maintenance of cornea transparency. Based on the donor shortages and the limitations associated with transplantation, in this work we have developed collagen hydrogels with different patterned structures on the surface to provide topographies in ranges similar to the natural environment that CEC sense. This aimed at stimulating cells to maintain a typical CEC phenotype and provide alternatives to corneal transplantation. In this sense, we have elaborated curved collagen hydrogels (concave and convex) with three different topographies (50, 200 and 300 µm grooves), with the help of 3D printed mold and replicating the mold with the collagen hydrogel, onto which CEC were cultured in order to analyze its behavior. Flat hydrogels were used as controls. Cell morphology, cell circularity and gene expression of ATP1A1 and ZO-1 genes were analyzed after 3 and 6 days. Results showed an effect of the curvature and the topography compared to flat collagen hydrogels, showing higher expression of ZO-1 and ATP1A1 in curved non-patterned hydrogels at day 3. The patterned hydrogels did not have such a significant effect on gene expression compared to flat hydrogels, showing stronger effect of the curvature compared to the topography. The effect was opposite at day 6, showing higher gene expression at days 6 on the patterned hydrogels, especially for the ZO-1 gene. The gene expression results were in accordance with the cell morphology observed at the different time points, showing circularities closer to hexagon like morphology at shorter time points. Overall, this platform can serve as a system to culture cell under proper environment to further be able to transplant a CEC monolayer or to allow transplantation of thin collagen layers with cultured CEC.

摘要

在角膜的不同层中,由角膜内皮细胞(CEC)组成的角膜内皮在维持角膜透明度方面起着关键作用。基于供体短缺以及与移植相关的局限性,在本研究中,我们制备了表面具有不同图案结构的胶原水凝胶,以提供与CEC所感知的自然环境范围相似的地形。这旨在刺激细胞维持典型的CEC表型,并为角膜移植提供替代方案。从这个意义上说,我们借助3D打印模具制备了具有三种不同地形(50、200和300 µm凹槽)的弯曲胶原水凝胶(凹面和凸面),并用胶原水凝胶复制模具,在其上培养CEC以分析其行为。使用扁平水凝胶作为对照。在3天和6天后分析细胞形态、细胞圆形度以及ATP1A1和ZO-1基因的表达。结果表明,与扁平胶原水凝胶相比,曲率和地形有影响,在第3天,弯曲的无图案水凝胶中ZO-1和ATP1A1的表达更高。与扁平水凝胶相比,图案化水凝胶对基因表达没有如此显著的影响,与地形相比,曲率的影响更强。在第6天效果相反,在图案化水凝胶上第6天基因表达更高,尤其是ZO-1基因。基因表达结果与在不同时间点观察到的细胞形态一致,在较短时间点显示出更接近六边形形态的圆形度。总体而言,该平台可作为一个在适当环境下培养细胞的系统,以便进一步能够移植CEC单层或允许移植带有培养CEC的薄胶原层。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/25d7/11461339/0e47d14069cb/fbioe-12-1454675-g001.jpg

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