Gouveia Ricardo M, Koudouna Elena, Jester James, Figueiredo Francisco, Connon Che J
Institute of Genetic Medicine, Newcastle University, Newcastle upon Tyne NE1 3BZ, UK.
Gavin Herbert Eye Institute, University of California Irvine, Irvine, CA, 92697, USA.
Adv Biosyst. 2017 Dec;1(12):e1700135. doi: 10.1002/adbi.201700135. Epub 2017 Oct 20.
To accurately create corneal stromal equivalents with native-like structure and composition, a new biofunctionalized, curved template is developed that allows the precise orientation of cells and of their extracellular matrix. This template is the first demonstration that curvature alone is sufficient to induce the alignment of human corneal stromal cells, which in turn are able to biofabricate stromal tissue equivalents with cornea-like shape and composition. Specifically, tissues self-released from curved templates show a highly organized nanostructure, comprised of aligned collagen fibrils, significantly higher expression of corneal stroma-characteristic markers keratocan, lumican, decorin, ALDH3, and CHST6 (p = 0.012, 0.033, 0.029, 0.003, and 0.02, respectively), as well as significantly higher elastic modulus (p = 0.0001) compared with their planar counterparts. Moreover, curved tissues are shown to support the growth, stratification, and differentiation of human corneal epithelial cells in vitro, while maintaining their structural integrity and shape without any supporting carriers, scaffolds, or crosslinking agents. Together, these results demonstrate that corneal stromal cells can align and create highly organized, purposeful tissues by the influence of substrate curvature alone, and without the need of additional topographical cues. These findings can be important to further understand the mechanisms of corneal biosynthesis both in vitro and in vivo.
为了精确创建具有类似天然结构和组成的角膜基质等效物,开发了一种新型生物功能化的弯曲模板,该模板能够使细胞及其细胞外基质实现精确取向。该模板首次证明,仅曲率就足以诱导人角膜基质细胞排列,而这些细胞又能够生物制造出具有角膜样形状和组成的基质组织等效物。具体而言,从弯曲模板自行释放的组织呈现出高度有序的纳米结构,由排列的胶原纤维组成,角膜基质特征性标志物角蛋白聚糖、核心蛋白聚糖、饰胶蛋白聚糖、醛脱氢酶3(ALDH3)和碳水化合物硫酸转移酶6(CHST6)的表达显著更高(p值分别为0.012、0.033、0.029、0.003和0.02),并且与平面对应物相比,弹性模量也显著更高(p = 0.0001)。此外,弯曲组织在体外显示能够支持人角膜上皮细胞的生长、分层和分化,同时在没有任何支撑载体、支架或交联剂的情况下保持其结构完整性和形状。总之,这些结果表明,角膜基质细胞仅通过底物曲率的影响就能排列并创建高度有序、有特定功能的组织,而无需额外的地形线索。这些发现对于进一步理解体外和体内角膜生物合成的机制可能具有重要意义。