In the last decade, organoid technology has developed as a primary research tool in basic biological and clinical research. The reliance on poorly defined animal-derived extracellular matrix, however, severely limits its application in regenerative and translational medicine. Here, a well-defined, synthetic biomimetic matrix based on polyisocyanide (PIC) hydrogels that support efficient and reproducible formation of mammary gland organoids (MGOs) in vitro is presented. Only decorated with the adhesive peptide RGD for cell binding, PIC hydrogels allow MGO formation from mammary fragments or from purified single mammary epithelial cells. The cystic organoids maintain their capacity to branch for over two months, which is a fundamental and com...
Studies on the stem cell niche and the efficacy of cancer therapeutics require complex multicellular...
Advances in our understanding of the biology of stem cells and their niches have provided the necess...
Epithelial organoids recapitulate multiple aspects of real organs, making them promising models of o...
One of the promises of synthetic materials in cell culturing is that control over their molecular st...
End-stage liver diseases are an increasing health burden, and liver transplantations are currently t...
End-stage liver diseases are an increasing health burden, and liver transplantations are currently t...
Synthetic hydrogels from polyisocyanides (PIC) are a type of novel thermoreversible biomaterials, wh...
Molecular and mechanical interactions with the 3D extracellular matrix are essential for cell functi...
One of the promises of synthetic materials in cell culturing is that control over their molecular st...
Molecular and mechanical interactions with the 3D extracellular matrix are essential for cell functi...
Epithelial organoids are simplified models of organs grown in vitro from embryonic and adult stem ce...
For creating functional tissue analogues in tissue engineering, stem cells require very specific 3D ...
Over the past decade, methods to culture stem cells in three dimensions have opened up a plethora of...
Organoids are an emerging technology with great potential in human disease modelling, drug developme...
Abstract: Organoids have stepped into the limelight as unique in vitro systems for modeling organ de...
Studies on the stem cell niche and the efficacy of cancer therapeutics require complex multicellular...
Advances in our understanding of the biology of stem cells and their niches have provided the necess...
Epithelial organoids recapitulate multiple aspects of real organs, making them promising models of o...
One of the promises of synthetic materials in cell culturing is that control over their molecular st...
End-stage liver diseases are an increasing health burden, and liver transplantations are currently t...
End-stage liver diseases are an increasing health burden, and liver transplantations are currently t...
Synthetic hydrogels from polyisocyanides (PIC) are a type of novel thermoreversible biomaterials, wh...
Molecular and mechanical interactions with the 3D extracellular matrix are essential for cell functi...
One of the promises of synthetic materials in cell culturing is that control over their molecular st...
Molecular and mechanical interactions with the 3D extracellular matrix are essential for cell functi...
Epithelial organoids are simplified models of organs grown in vitro from embryonic and adult stem ce...
For creating functional tissue analogues in tissue engineering, stem cells require very specific 3D ...
Over the past decade, methods to culture stem cells in three dimensions have opened up a plethora of...
Organoids are an emerging technology with great potential in human disease modelling, drug developme...
Abstract: Organoids have stepped into the limelight as unique in vitro systems for modeling organ de...
Studies on the stem cell niche and the efficacy of cancer therapeutics require complex multicellular...
Advances in our understanding of the biology of stem cells and their niches have provided the necess...
Epithelial organoids recapitulate multiple aspects of real organs, making them promising models of o...