Abstract

Human pluripotent stem cells (hPSCs) can be expanded and differentiated in vitro into almost any adult tissue cell type, and thus have great potential as a source for cell therapies with biomedical application. In this study, a fully-defined polymer synthetic substrate is identified for hPSC culture in completely defined, xenogenic (xeno)-free conditions. This system can overcome the cost, scalability, and reproducibility limitations of current hPSC culture strategies, and facilitate large-scale production. A high-throughput, multi-generational polymer microarray platform approach is used to test over 600 unique polymers and rapidly assess hPSC-polymer interactions in combination with the fully defined xeno-free medium, Essential 8 (E8). This study identifies a novel nanoscale phase separated blend of poly(tricyclodecane-dimethanol diacrylate) and poly(butyl acrylate) (2:1 v/v), which supports long-term expansion of hPSCs and can be readily coated onto standard cultureware. Analysis of cell-polymer interface interactions through mass spectrometry and integrin blocking studies provides novel mechanistic insight into the role of the E8 proteins in promoting integrin-mediated hPSC attachment and maintaining hPSC signaling, including ability to undergo multi-lineage differentiation. This study therefore identifies a novel substrate for long-term serial passaging of hPSCs in serum-free, commercial chemically-defined E8, which provides a promising and economic hPSC expansion platform for clinical-scale application.

Highlights

  • To improve application of adherent human pluripotent stem cell culture, vitro into almost any adult tissue cell type, and have great potential as a there has been a shift from the use of source for cell therapies with biomedical application

  • A high-throughput, media formulations still rely on a broad multi-generational polymer microarray platform approach is used to test over range of proteins, lipids, small molecules, 600 unique polymers and rapidly assess human pluripotent stem cell (hPSC)-polymer interactions in combination with the fully defined xeno-free medium, Essential 8 (E8)

  • Analysis of cell-polymer interface interactions through batch-batch variability during cell processmass spectrometry and integrin blocking studies provides novel mechanistic insight into the role of the E8 proteins in promoting integrin-mediated hPSC attachment and maintaining hPSC signaling, including ability to undergo ing and reduce costs, which limit large-scale production.[20]

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Summary

Introduction

To improve application of adherent human pluripotent stem cell (hPSC) culture, vitro into almost any adult tissue cell type, and have great potential as a there has been a shift from the use of source for cell therapies with biomedical application. Division of Cancer & Stem Cells Biodiscovery Institute University of Nottingham Nottingham NG7 2RD, UK E-mail: chris.denning@nottingham.ac.uk throughput microarray screening strategies (previously used by us and others) to identify novel materials capable of supporting hPSCs in a culture system simplified by using the xeno-free, commercial, chemically-defined Essential 8 (E8) medium.[26,27,28,29]

Results
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