Toward Corneal Limbus In Vitro Model: Regulation of hPSC‐LSC Phenotype by Matrix Stiffness and Topography During Cell Differentiation Process

Author:

Kauppila Maija1,Mörö Anni1ORCID,Valle‐Delgado Juan José2,Ihalainen Teemu1,Sukki Lassi1,Puistola Paula1,Kallio Pasi1,Ilmarinen Tanja1,Österberg Monika2,Skottman Heli1ORCID

Affiliation:

1. Faculty of Medicine and Health Technology Tampere University Tampere 33520 Finland

2. Department of Bioproducts and Biosystems School of Chemical Engineering Aalto University Espoo 02150 Finland

Abstract

AbstractA 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.

Funder

Academy of Finland

Suomen Kulttuurirahasto

Publisher

Wiley

Subject

Pharmaceutical Science,Biomedical Engineering,Biomaterials

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