Faculty of Medicine and Health Technology, Tampere University, Tampere, 33520, Finland.
Department of Bioproducts and Biosystems, School of Chemical Engineering, Aalto University, Espoo, 02150, Finland.
Adv Healthc Mater. 2023 Nov;12(29):e2301396. doi: 10.1002/adhm.202301396. Epub 2023 Jul 21.
A functional limbal epithelial stem cells (LSC) niche is a vital element in the regular renewal of the corneal epithelium by LSCs and maintenance of good vision. However, little is known about its unique structure and mechanical properties on LSC regulation, creating a significant gap in development of LSC-based therapies. Herein, the effect of mechanical and architectural elements of the niche on human pluripotent derived LSCs (hPSC-LSC) phenotype and growth is investigated in vitro. Specifically, three formulations of polyacrylamide gels with different controlled stiffnesses are used for culture and characterization of hPSC-LSCs from different stages of differentiation. In addition, limbal mimicking topography in polydimethylsiloxane is utilized for culturing hPSC-LSCs at early time point of differentiation. For comparison, the expression of selected key proteins of the corneal cells is analyzed in their native environment through whole mount staining of human donor corneas. The results suggest that mechanical response and substrate preference of the cells is highly dependent on their developmental stage. In addition, data indicate that cells may carry possible mechanical memory from previous culture matrix, both highlighting the importance of mechanical design of a functional in vitro limbus model.
功能性角膜缘上皮干细胞(LSC)龛是由 LSCs 定期更新角膜上皮和维持良好视力的重要因素。然而,人们对其在 LSC 调节中的独特结构和力学特性知之甚少,这在 LSC 为基础的治疗方法的发展中造成了重大空白。在此,研究了龛的力学和结构元素对人多能干细胞衍生的 LSCs(hPSC-LSC)表型和生长的影响。具体而言,使用三种不同硬度控制的聚丙烯酰胺凝胶配方来培养和表征来自不同分化阶段的 hPSC-LSCs。此外,利用聚二甲基硅氧烷模拟角膜缘的形貌,在分化的早期阶段培养 hPSC-LSCs。为了进行比较,通过对人供体角膜进行全组织染色,在其天然环境中分析了选定的角膜细胞关键蛋白的表达。结果表明,细胞的力学响应和基质偏好高度依赖于其发育阶段。此外,数据表明细胞可能从前一个培养基质中携带可能的力学记忆,这突出了功能性体外角膜缘模型的力学设计的重要性。