Multiple protocols have been devised to generate cerebral organoids that recapitulate features of the developing human brain, including the presence of a large, multi-layered, cortical-like neuronal zone. However, the central question is whether these organoids truly present mature, functional neurons and astrocytes, which may qualify the system for in-depth molecular neuroscience studies focused at neuronal and synaptic functions. Here, we demonstrate that cerebral organoids derived under optimal differentiation conditions exhibit mature, fully functional neurons and astrocytes, as validated by immunohistological, gene expression, and electrophysiological, analyses. Neurons in cerebral organoids showed gene expression profiles and electrop...
Over the past years, brain development has been investigated in rodent models, which were particular...
Understanding the development and dysfunction of the human brain is a major goal of neurobiology. Mu...
Brain organoids closely recapitulate many features and characteristics of in vivo brain tissue. This...
Brain organoids are 3D self-assembled structures composed of hundreds of thousands to millions of ce...
The cerebral cortex forms early in development according to a series of heritable neurodevelopmental...
Over the past years, brain development has been investigated in rodent models, which were particular...
Cerebral organoids-3D cultures of human cerebral tissue derived from pluripotent stem cells-have eme...
Genes implicated in neuropsychiatric disorders are active in human fetal brain, yet difficult to stu...
Cerebral organoids are an emerging cutting-edge technology to model human brain development and neur...
© 2017 Macmillan Publishers Limited, part of Springer Nature. All rights reserved. In vitro models o...
Cerebral organoids are 3D stem cell-derived models that can be utilized to study the human brain. Th...
Cerebral organoids are 3D stem cell-derived models that can be utilized to study the human brain. Th...
Cerebral organoids are 3D stem cell-derived models that can be utilized to study the human brain. Th...
Human brain organoids, generated from pluripotent stem cells, have emerged as a promising technique ...
The brain is one of the most complex organs, responsible for the advanced intellectual and cognitive...
Over the past years, brain development has been investigated in rodent models, which were particular...
Understanding the development and dysfunction of the human brain is a major goal of neurobiology. Mu...
Brain organoids closely recapitulate many features and characteristics of in vivo brain tissue. This...
Brain organoids are 3D self-assembled structures composed of hundreds of thousands to millions of ce...
The cerebral cortex forms early in development according to a series of heritable neurodevelopmental...
Over the past years, brain development has been investigated in rodent models, which were particular...
Cerebral organoids-3D cultures of human cerebral tissue derived from pluripotent stem cells-have eme...
Genes implicated in neuropsychiatric disorders are active in human fetal brain, yet difficult to stu...
Cerebral organoids are an emerging cutting-edge technology to model human brain development and neur...
© 2017 Macmillan Publishers Limited, part of Springer Nature. All rights reserved. In vitro models o...
Cerebral organoids are 3D stem cell-derived models that can be utilized to study the human brain. Th...
Cerebral organoids are 3D stem cell-derived models that can be utilized to study the human brain. Th...
Cerebral organoids are 3D stem cell-derived models that can be utilized to study the human brain. Th...
Human brain organoids, generated from pluripotent stem cells, have emerged as a promising technique ...
The brain is one of the most complex organs, responsible for the advanced intellectual and cognitive...
Over the past years, brain development has been investigated in rodent models, which were particular...
Understanding the development and dysfunction of the human brain is a major goal of neurobiology. Mu...
Brain organoids closely recapitulate many features and characteristics of in vivo brain tissue. This...