Abstract Organoids hold inestimable therapeutic potential in regenerative medicine and are increasingly serving as an in vitro research platform. Still, their expanding applications are critically restricted by the canonical culture matrix and system. Synthesis of a suitable bioink of bioactivity, biosecurity, tunable stiffness, and printability to replace conventional matrices and fabricate customized culture systems remains challenging. Here, we envisaged a novel bioink formulation based on decellularized extracellular matrix (dECM) from porcine small intestinal submucosa for organoids bioprinting, which provides intestinal stem cells (ISCs) with niche‐specific ECM content and biomimetic microstructure. Intestinal organoids cultured in th...
The generation of a tissue-specific intestinal hydrogel using small intestinal extracellular matrix ...
Organoids show great potential in clinical translational research owing to their intriguing properti...
As organoids offer a promising tool to study cell biology and model diseases, organoid technology ha...
Epithelial organoids recapitulate multiple aspects of real organs, making them promising models of o...
© 2021 The Korean Society of Industrial and Engineering ChemistryIntestinal organoids are emerging t...
© 2020 Epithelial organoids derived from human donor tissues are important tools in fields ranging f...
Advances in our understanding of the biology of stem cells and their niches have provided the necess...
Organoids have extensive therapeutic potential and are increasingly opening up new avenues within re...
The relationship between intestinal stem cells (ISCs) and the surrounding niche environment is compl...
© 2022, The Author(s).Matrigel, a mouse tumor extracellular matrix protein mixture, is an indispensa...
The field of intestinal biology is thirstily searching for different culture methods that complement...
Recent advances in intestinal organoid technologies have paved the way for in vitro recapitulation o...
Epithelial organoids, such as those derived from stem cells of the intestine, have great potential f...
3D bioprinting brings new aspirations to the tissue engineering and regenerative medicine research c...
© 2017 Elsevier Ltd Current ISC culture systems face significant challenges such as animal-derived o...
The generation of a tissue-specific intestinal hydrogel using small intestinal extracellular matrix ...
Organoids show great potential in clinical translational research owing to their intriguing properti...
As organoids offer a promising tool to study cell biology and model diseases, organoid technology ha...
Epithelial organoids recapitulate multiple aspects of real organs, making them promising models of o...
© 2021 The Korean Society of Industrial and Engineering ChemistryIntestinal organoids are emerging t...
© 2020 Epithelial organoids derived from human donor tissues are important tools in fields ranging f...
Advances in our understanding of the biology of stem cells and their niches have provided the necess...
Organoids have extensive therapeutic potential and are increasingly opening up new avenues within re...
The relationship between intestinal stem cells (ISCs) and the surrounding niche environment is compl...
© 2022, The Author(s).Matrigel, a mouse tumor extracellular matrix protein mixture, is an indispensa...
The field of intestinal biology is thirstily searching for different culture methods that complement...
Recent advances in intestinal organoid technologies have paved the way for in vitro recapitulation o...
Epithelial organoids, such as those derived from stem cells of the intestine, have great potential f...
3D bioprinting brings new aspirations to the tissue engineering and regenerative medicine research c...
© 2017 Elsevier Ltd Current ISC culture systems face significant challenges such as animal-derived o...
The generation of a tissue-specific intestinal hydrogel using small intestinal extracellular matrix ...
Organoids show great potential in clinical translational research owing to their intriguing properti...
As organoids offer a promising tool to study cell biology and model diseases, organoid technology ha...