Epithelial organoids recapitulate multiple aspects of real organs, making them promising models of organ development, function and disease. However, the full potential of organoids in research and therapy has remained unrealized, owing to the poorly defined animal-derived matrices in which they are grown. Here we used modular synthetic hydrogel networks to define the key extracellular matrix (ECM) parameters that govern intestinal stem cell (ISC) expansion and organoid formation, and show that separate stages of the process require different mechanical environments and ECM components. In particular, fibronectin-based adhesion was sufficient for ISC survival and proliferation. High matrix stiffness significantly enhanced ISC expansion throug...
Recent advances in intestinal organoid technologies have paved the way for in vitro recapitulation o...
© 2022, The Author(s).Matrigel, a mouse tumor extracellular matrix protein mixture, is an indispensa...
Epithelial organoids, such as those derived from stem cells of the intestine, have great potential f...
Epithelial organoids recapitulate multiple aspects of real organs, making them promising models of o...
Epithelial organoids are simplified models of organs grown in vitro from embryonic and adult stem ce...
Over the past decade, methods to culture stem cells in three dimensions have opened up a plethora of...
Advances in our understanding of the biology of stem cells and their niches have provided the necess...
Organoids show great potential in clinical translational research owing to their intriguing properti...
© 2021 The Korean Society of Industrial and Engineering ChemistryIntestinal organoids are emerging t...
Abstract Organoids hold inestimable therapeutic potential in regenerative medicine and are increasin...
© 2020 Epithelial organoids derived from human donor tissues are important tools in fields ranging f...
Abstract: Organoids have stepped into the limelight as unique in vitro systems for modeling organ de...
The field of intestinal biology is thirstily searching for different culture methods that complement...
Introduction: The animal model and the traditional two-dimensional (2D) cell culture have long been ...
Epithelial organoids are simplified models of organs grown in vitro from embryonic and adult stem ce...
Recent advances in intestinal organoid technologies have paved the way for in vitro recapitulation o...
© 2022, The Author(s).Matrigel, a mouse tumor extracellular matrix protein mixture, is an indispensa...
Epithelial organoids, such as those derived from stem cells of the intestine, have great potential f...
Epithelial organoids recapitulate multiple aspects of real organs, making them promising models of o...
Epithelial organoids are simplified models of organs grown in vitro from embryonic and adult stem ce...
Over the past decade, methods to culture stem cells in three dimensions have opened up a plethora of...
Advances in our understanding of the biology of stem cells and their niches have provided the necess...
Organoids show great potential in clinical translational research owing to their intriguing properti...
© 2021 The Korean Society of Industrial and Engineering ChemistryIntestinal organoids are emerging t...
Abstract Organoids hold inestimable therapeutic potential in regenerative medicine and are increasin...
© 2020 Epithelial organoids derived from human donor tissues are important tools in fields ranging f...
Abstract: Organoids have stepped into the limelight as unique in vitro systems for modeling organ de...
The field of intestinal biology is thirstily searching for different culture methods that complement...
Introduction: The animal model and the traditional two-dimensional (2D) cell culture have long been ...
Epithelial organoids are simplified models of organs grown in vitro from embryonic and adult stem ce...
Recent advances in intestinal organoid technologies have paved the way for in vitro recapitulation o...
© 2022, The Author(s).Matrigel, a mouse tumor extracellular matrix protein mixture, is an indispensa...
Epithelial organoids, such as those derived from stem cells of the intestine, have great potential f...