Organoids have been widely used in fundamental, biomimetic, and therapeutic studies. These multicellular systems form via cell-autonomous self-organization where a cohort of stem cells undergoes in vivo-like proliferation, differentiation, and morphogenesis. They also recapitulate a series of physiological cell organization, complexity and functions that are untouchable by conventional bio-model systems using immortal cell lines. However, the development of organoids is often not easily controlled and their shape and size are yet fully physiological. Recent research has demonstrated that multiple bioengineering tools could be harnessed to control important internal and external cues that dictate stem cell behavior and stem-cell based organo...
In recent years considerable progress has been made in the development of faithful procedures for th...
Conventional 2-dimensional cell culture poorly mimics human-relevant models, which is considered a m...
Multicellular organisms of various complexities self-organize in nature. Organoids are in vitro 3D s...
International audienceOrganoids have been widely used in fundamental, biomimetic, and therapeutic st...
Over the previous decade, one of the most exciting advancements in stem cell technology has been the...
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...
In vitro miniaturized organoids are innovative tools with varying applications in biomedical enginee...
The capacity of the 3D-organoid cultures to resemble a near-physiological tissue organization and to...
During organogenesis, various molecular and physical signals are orchestrated in space and time to s...
Organoids are 3D in vitro culture systems derived from self-organizing stem cells. They can recapitu...
One of the long-standing goals in the field of tissue engineering is the fabrication of de novo tiss...
Organoids have attracted increasing attention because they are simple tissue-engineered cell-based i...
Human morphogenesis is a complex process involving distinct microenvironmental and physical signals ...
3D culture has allowed the initiation and expansion of organ-like structures, called organoids, from...
In recent years considerable progress has been made in the development of faithful procedures for th...
Conventional 2-dimensional cell culture poorly mimics human-relevant models, which is considered a m...
Multicellular organisms of various complexities self-organize in nature. Organoids are in vitro 3D s...
International audienceOrganoids have been widely used in fundamental, biomimetic, and therapeutic st...
Over the previous decade, one of the most exciting advancements in stem cell technology has been the...
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...
In vitro miniaturized organoids are innovative tools with varying applications in biomedical enginee...
The capacity of the 3D-organoid cultures to resemble a near-physiological tissue organization and to...
During organogenesis, various molecular and physical signals are orchestrated in space and time to s...
Organoids are 3D in vitro culture systems derived from self-organizing stem cells. They can recapitu...
One of the long-standing goals in the field of tissue engineering is the fabrication of de novo tiss...
Organoids have attracted increasing attention because they are simple tissue-engineered cell-based i...
Human morphogenesis is a complex process involving distinct microenvironmental and physical signals ...
3D culture has allowed the initiation and expansion of organ-like structures, called organoids, from...
In recent years considerable progress has been made in the development of faithful procedures for th...
Conventional 2-dimensional cell culture poorly mimics human-relevant models, which is considered a m...
Multicellular organisms of various complexities self-organize in nature. Organoids are in vitro 3D s...