The transcriptional landscape of a hepatoma cell line grown on scaffolds of extracellular matrix proteins

2020 
The behavior of cells in vivo is complex and highly dynamic, as it results from an interplay between components of the intercellular matrix proteins with surface receptor and other microenvironmental cues. Although the effects of the cellular niche have been investigated for a number of cell types using different molecular approaches, comprehensive assessments of how the global transcriptome responds to 3D scaffolds composed of various extracellular matrix (ECM) constituents are still lacking. In this study, we explored the effect of the biomechanical parameters of Collagen I and Matrigel (ECM) on transcriptional gene regulation in a cell culture system. Using Huh-7 cells cultured on traditional cell culture plates or on the components of the ECM at different concentrations to modulate microenvironment properties, we have generated transcriptome sequencing data that may be further explored to understand the differentiation and growth potential of this cell for the development of 3D cultures. Assessment of the hepatocyte phenotype in relation to our transcriptomic data set would be very useful for the development of systems mimicking the in vivo structure and function of liver cells which still remains a challenge.
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