Multicellular organisms of various complexities self-organize in nature. Organoids are in vitro 3D structures that display important aspects of the anatomy and physiology of their in vivo counterparts and that develop from pluripotent or tissue-specific stem cells through a self-organization process. In this review, we describe the multidisciplinary concept of "synthetic developmental biology"where engineering approaches are employed to guide multicellular organization in an experimental setting. We introduce a novel classification of engineering approaches based on the extent of microenvironmental manipulation applied to organoids. In the final section, we discuss how engineering tools might help overcome current limitations in organoid co...
Organoids have attracted increasing attention because they are simple tissue-engineered cell-based i...
Organoids are three-dimensional in-vitro-grown cell clusters with near-native microanatomy that aris...
One of the long-standing goals in the field of tissue engineering is the fabrication of de novo tiss...
Organoids have been widely used in fundamental, biomimetic, and therapeutic studies. These multicell...
Organoids form through self-organization processes in which initially homogeneous populations of ste...
Bioengineering can address many important needs, from transformative biomedicine to environmental re...
Human morphogenesis is a complex process involving distinct microenvironmental and physical signals ...
Organoids constitute biological systems which are used to model organ development, homeostasis, rege...
Pluripotent embryonal stem cells (ESCs) are unique for their ability to proliferate and differentiat...
Organoid systems leverage the self-organizing properties of stem cells to create diverse multi-cellu...
In recent years, the development of 3D organoids has opened new avenues of investigation into develo...
Recent technical advances in the stem cell field have enabled the in vitro generation of complex str...
Over the previous decade, one of the most exciting advancements in stem cell technology has been the...
Over the past two decades, molecular cell biology has graduated from a mostly analytic science to on...
During organogenesis, various molecular and physical signals are orchestrated in space and time to s...
Organoids have attracted increasing attention because they are simple tissue-engineered cell-based i...
Organoids are three-dimensional in-vitro-grown cell clusters with near-native microanatomy that aris...
One of the long-standing goals in the field of tissue engineering is the fabrication of de novo tiss...
Organoids have been widely used in fundamental, biomimetic, and therapeutic studies. These multicell...
Organoids form through self-organization processes in which initially homogeneous populations of ste...
Bioengineering can address many important needs, from transformative biomedicine to environmental re...
Human morphogenesis is a complex process involving distinct microenvironmental and physical signals ...
Organoids constitute biological systems which are used to model organ development, homeostasis, rege...
Pluripotent embryonal stem cells (ESCs) are unique for their ability to proliferate and differentiat...
Organoid systems leverage the self-organizing properties of stem cells to create diverse multi-cellu...
In recent years, the development of 3D organoids has opened new avenues of investigation into develo...
Recent technical advances in the stem cell field have enabled the in vitro generation of complex str...
Over the previous decade, one of the most exciting advancements in stem cell technology has been the...
Over the past two decades, molecular cell biology has graduated from a mostly analytic science to on...
During organogenesis, various molecular and physical signals are orchestrated in space and time to s...
Organoids have attracted increasing attention because they are simple tissue-engineered cell-based i...
Organoids are three-dimensional in-vitro-grown cell clusters with near-native microanatomy that aris...
One of the long-standing goals in the field of tissue engineering is the fabrication of de novo tiss...