A 3D bioprinting approach has been developed to facilitate tissue morphogenesis by directly depositing organoid-forming stem cells in an extracellular matrix, with the ability to generate intestinal epithelia and branched vascular tissue constructs.Bioprinting promises enormous control over the spatial deposition of cells in three dimensions(1-7), but current approaches have had limited success at reproducing the intricate micro-architecture, cell-type diversity and function of native tissues formed through cellular self-organization. We introduce a three-dimensional bioprinting concept that uses organoid-forming stem cells as building blocks that can be deposited directly into extracellular matrices conducive to spontaneous self-organizati...
Microfabrication technologies have been proposed as methods to create vascularized tissues. However,...
A new bioprinting method is reported for fabricating 3D tissue constructs replete with vasculature, ...
Over the last decades, the fabrication of 3D tissues has become commonplace in tissue engineering an...
One of the long-standing goals in the field of tissue engineering is the fabrication of de novo tiss...
Organ- and tissue-level biological functions are intimately linked to microscale cell–cell interacti...
Regenerative medicine and tissue engineering have seen unprecedented growth in the past decade, driv...
In spite of being a new field, three-dimensional (3D) bioprinting has undergone rapid growth in the ...
The most remarkable attractiveness of tissue engineering technology relies on its capability of rege...
In living tissues, cells express their functions following complex signals from their surrounding mi...
Compared to 2D monolayer of cells, arranged 3D cell spheroids represents higher tissue specific func...
International audienceThe small intestine is a complex tissue with a crypt/villus architecture and h...
Epithelial organoids, such as those derived from stem cells of the intestine, have great potential f...
Abstract only availableEmbryonic development represents a sequence of spectacular morphogenetic tran...
Microfabrication technologies have been proposed as methods to create vascularized tissues. However,...
Abstract The native tissues are complex structures consisting of different cell types, extracellula...
Microfabrication technologies have been proposed as methods to create vascularized tissues. However,...
A new bioprinting method is reported for fabricating 3D tissue constructs replete with vasculature, ...
Over the last decades, the fabrication of 3D tissues has become commonplace in tissue engineering an...
One of the long-standing goals in the field of tissue engineering is the fabrication of de novo tiss...
Organ- and tissue-level biological functions are intimately linked to microscale cell–cell interacti...
Regenerative medicine and tissue engineering have seen unprecedented growth in the past decade, driv...
In spite of being a new field, three-dimensional (3D) bioprinting has undergone rapid growth in the ...
The most remarkable attractiveness of tissue engineering technology relies on its capability of rege...
In living tissues, cells express their functions following complex signals from their surrounding mi...
Compared to 2D monolayer of cells, arranged 3D cell spheroids represents higher tissue specific func...
International audienceThe small intestine is a complex tissue with a crypt/villus architecture and h...
Epithelial organoids, such as those derived from stem cells of the intestine, have great potential f...
Abstract only availableEmbryonic development represents a sequence of spectacular morphogenetic tran...
Microfabrication technologies have been proposed as methods to create vascularized tissues. However,...
Abstract The native tissues are complex structures consisting of different cell types, extracellula...
Microfabrication technologies have been proposed as methods to create vascularized tissues. However,...
A new bioprinting method is reported for fabricating 3D tissue constructs replete with vasculature, ...
Over the last decades, the fabrication of 3D tissues has become commonplace in tissue engineering an...