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Engineering the Extracellular Matrix for Organoid Culture

Jeong Hyun Heo, Dongyun Kang, Seung Ju Seo, Yoonhee Jin

2022International Journal of Stem Cells116 citationsDOIOpen Access PDF

Abstract

Organoids show great potential in clinical translational research owing to their intriguing properties to represent a near physiological model for native tissues. However, the dependency of organoid generation on the use of poorly defined matrices has hampered their clinical application. Current organoid culture systems mostly reply on biochemical signals provided by medium compositions and cell-cell interactions to control growth. Recent studies have highlighted the importance of the extracellular matrix (ECM) composition, cell-ECM interactions, and mechanical signals for organoid expansion and differentiation. Thus, several hydrogel systems prepared using natural or synthetic-based materials have been designed to recreate the stem cell niche in vitro, providing biochemical, biophysical, and mechanical signals. In this review, we discuss how recapitulating multiple aspects of the tissue-specific environment through designing and applying matrices could contribute to accelerating the translation of organoid technology from the laboratory to therapeutic and pharmaceutical applications.

Topics & Concepts

OrganoidExtracellular matrixTissue engineeringStem cellCell biologyMatrix (chemical analysis)Cell cultureStem cell nicheComputational biologyComputer scienceChemistryNanotechnologyBiologyBiomedical engineeringProgenitor cellMaterials scienceMedicineChromatographyGenetics3D Printing in Biomedical ResearchPluripotent Stem Cells ResearchCancer Cells and Metastasis
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