Purified populations of cells can be reconstituted into organoids that recapitulate aspects of their in vivo structure and function. These organoids are useful as models of healthy and diseased tissue in the basic sciences, in vitro screens, and regenerative medicine. Existing strategies to reconstitute organoids from purified cells face obstacles with respect to cell-viability, multicellular connectivity, scalability, and compatibility with subsequent experimental or analytical techniques. To address these challenges, we developed a strategy for rapidly casting populations of cells into microtissues of prescribed size and shape. This approach begins by chemically remodeling the adhesive properties of living cells with membrane-anchored ssD...
Organoids have attracted increasing attention because they are simple tissue-engineered cell-based i...
Stem-cell-derived epithelial organoids are routinely used for the biological and biomedical modellin...
In a multicellular organism, tissue structure is a basis of tissue function. The capacity to create ...
Purified populations of cells can be reconstituted into organoids that recapitulate aspects of their...
One of the long-standing goals in the field of tissue engineering is the fabrication of de novo tiss...
During organogenesis, various molecular and physical signals are orchestrated in space and time to s...
International audienceWe highlight the disposition of various cell types to self-organize into compl...
International audienceCompared to cell suspensions or monolayers, 3D cell aggregates provide cellula...
The mammary gland is an important model system for several reasons but principal among them is that ...
Organoids are tiny, self-organized, three-dimensional tissue cultures that are derived from the diff...
International audienceOrganoids have been widely used in fundamental, biomimetic, and therapeutic st...
International audienceTechnical progress in materials science and bioprinting has for the past few d...
Stem-cell-derived epithelial organoids are routinely used for the biological and biomedical modellin...
Recent technical advances in the stem cell field have enabled the in vitro generation of complex str...
Organoid systems leverage the self-organizing properties of stem cells to create diverse multi-cellu...
Organoids have attracted increasing attention because they are simple tissue-engineered cell-based i...
Stem-cell-derived epithelial organoids are routinely used for the biological and biomedical modellin...
In a multicellular organism, tissue structure is a basis of tissue function. The capacity to create ...
Purified populations of cells can be reconstituted into organoids that recapitulate aspects of their...
One of the long-standing goals in the field of tissue engineering is the fabrication of de novo tiss...
During organogenesis, various molecular and physical signals are orchestrated in space and time to s...
International audienceWe highlight the disposition of various cell types to self-organize into compl...
International audienceCompared to cell suspensions or monolayers, 3D cell aggregates provide cellula...
The mammary gland is an important model system for several reasons but principal among them is that ...
Organoids are tiny, self-organized, three-dimensional tissue cultures that are derived from the diff...
International audienceOrganoids have been widely used in fundamental, biomimetic, and therapeutic st...
International audienceTechnical progress in materials science and bioprinting has for the past few d...
Stem-cell-derived epithelial organoids are routinely used for the biological and biomedical modellin...
Recent technical advances in the stem cell field have enabled the in vitro generation of complex str...
Organoid systems leverage the self-organizing properties of stem cells to create diverse multi-cellu...
Organoids have attracted increasing attention because they are simple tissue-engineered cell-based i...
Stem-cell-derived epithelial organoids are routinely used for the biological and biomedical modellin...
In a multicellular organism, tissue structure is a basis of tissue function. The capacity to create ...