In less than a decade, organoid systems have emerged as an innovative and valid in vitro method to mimic in vivo pathophysiology. Organoids are 3D structures constituted by multiple organ-specific cell types that self-organize and can function as miniature organs. Organoids have quickly become an important tool for basic and translational research with wide applications for disease modeling, drug screening, drug optimization, and personalized and regenerative medicine. In this review, we summarize the recent utilization of organoids for modeling human genetic diseases, a research area with promising biomedical applications
Recent advances in 3D culture technology allow embryonic and adult mammalian stem cells to exhibit t...
Organoids are in vitro-cultured three-dimensional structures that recapitulate key aspects of in viv...
Organoids represent one of the most important advancements in the field of stem cells during the pas...
In less than a decade, organoid systems have emerged as an innovative and valid in vitro method to m...
In less than a decade, organoid systems have emerged as an innovative and valid in vitro method to m...
Organoids are 3D in vitro culture systems derived from self-organizing stem cells. They can recapitu...
Organoids are 3D in vitro culture systems derived from self-organizing stem cells. They can recapitu...
Organoids are 3D in vitro culture systems derived from self-organizing stem cells. They can recapitu...
The historical reliance of biological research on the use of animal models has sometimes made it cha...
The rising interest in human induced pluripotent stem cell (hiPSC)-derived organoid culture has stem...
The rising interest in human induced pluripotent stem cell (hiPSC)-derived organoid culture has stem...
The capacity of the 3D-organoid cultures to resemble a near-physiological tissue organization and to...
Over the previous decade, one of the most exciting advancements in stem cell technology has been the...
Recent advances in 3D culture technology allow embryonic and adult mammalian stem cells to exhibit t...
Recent advances in 3D culture technology allow embryonic and adult mammalian stem cells to exhibit t...
Recent advances in 3D culture technology allow embryonic and adult mammalian stem cells to exhibit t...
Organoids are in vitro-cultured three-dimensional structures that recapitulate key aspects of in viv...
Organoids represent one of the most important advancements in the field of stem cells during the pas...
In less than a decade, organoid systems have emerged as an innovative and valid in vitro method to m...
In less than a decade, organoid systems have emerged as an innovative and valid in vitro method to m...
Organoids are 3D in vitro culture systems derived from self-organizing stem cells. They can recapitu...
Organoids are 3D in vitro culture systems derived from self-organizing stem cells. They can recapitu...
Organoids are 3D in vitro culture systems derived from self-organizing stem cells. They can recapitu...
The historical reliance of biological research on the use of animal models has sometimes made it cha...
The rising interest in human induced pluripotent stem cell (hiPSC)-derived organoid culture has stem...
The rising interest in human induced pluripotent stem cell (hiPSC)-derived organoid culture has stem...
The capacity of the 3D-organoid cultures to resemble a near-physiological tissue organization and to...
Over the previous decade, one of the most exciting advancements in stem cell technology has been the...
Recent advances in 3D culture technology allow embryonic and adult mammalian stem cells to exhibit t...
Recent advances in 3D culture technology allow embryonic and adult mammalian stem cells to exhibit t...
Recent advances in 3D culture technology allow embryonic and adult mammalian stem cells to exhibit t...
Organoids are in vitro-cultured three-dimensional structures that recapitulate key aspects of in viv...
Organoids represent one of the most important advancements in the field of stem cells during the pas...