Three-dimensional brain organoids have emerged as a valuable model system for studies of human brain development and pathology. Here we establish a midbrain organoid culture system to study the developmental trajectory from pluripotent stem cells to mature dopamine neurons. Using single cell RNA sequencing, we identify the presence of three molecularly distinct subtypes of human dopamine neurons with high similarity to those in developing and adult human midbrain. However, despite significant advancements in the field, the use of brain organoids can be limited by issues of reproducibility and incomplete maturation which was also observed in this study. We therefore designed bioengineered ventral midbrain organoids supported by recombinant s...
Human midbrain dopamine (DA) neurons are a heterogeneous group of cells that share a common neurotra...
The study of 3D cell culture models not only bridges the gap between traditional 2D in vitro experim...
The study of 3D cell culture models not only bridges the gap between traditional 2D in vitro experim...
Three-dimensional brain organoids have emerged as a valuable model system for studies of human brain...
The inaccessibility of human brain tissue and the inability of two-dimensional in vitro cultures to ...
Human stem cell-derived organoids have great potential for modelling physiological and pathological ...
Human stem cell-derived organoids have great potential for modelling physiological and pathological ...
Significant efforts are ongoing to develop refined differentiation protocols to generate midbrain do...
Significant efforts are ongoing to develop refined differentiation protocols to generate midbrain do...
Understanding human embryonic ventral midbrain is of major interest for Parkinson's disease. However...
SummaryUnderstanding human embryonic ventral midbrain is of major interest for Parkinson’s disease. ...
Summary: Here, we describe a high-throughput 3D differentiation protocol for deriving midbrain dopam...
Summary: The lack of advanced in vitro models recapitulating the human brain complexity is still a m...
Parkinson’s disease (PD), one of the most common neurodegenerative disorders, is characterized by a ...
Human midbrain dopamine (DA) neurons are a heterogeneous group of cells that share a common neurotra...
Human midbrain dopamine (DA) neurons are a heterogeneous group of cells that share a common neurotra...
The study of 3D cell culture models not only bridges the gap between traditional 2D in vitro experim...
The study of 3D cell culture models not only bridges the gap between traditional 2D in vitro experim...
Three-dimensional brain organoids have emerged as a valuable model system for studies of human brain...
The inaccessibility of human brain tissue and the inability of two-dimensional in vitro cultures to ...
Human stem cell-derived organoids have great potential for modelling physiological and pathological ...
Human stem cell-derived organoids have great potential for modelling physiological and pathological ...
Significant efforts are ongoing to develop refined differentiation protocols to generate midbrain do...
Significant efforts are ongoing to develop refined differentiation protocols to generate midbrain do...
Understanding human embryonic ventral midbrain is of major interest for Parkinson's disease. However...
SummaryUnderstanding human embryonic ventral midbrain is of major interest for Parkinson’s disease. ...
Summary: Here, we describe a high-throughput 3D differentiation protocol for deriving midbrain dopam...
Summary: The lack of advanced in vitro models recapitulating the human brain complexity is still a m...
Parkinson’s disease (PD), one of the most common neurodegenerative disorders, is characterized by a ...
Human midbrain dopamine (DA) neurons are a heterogeneous group of cells that share a common neurotra...
Human midbrain dopamine (DA) neurons are a heterogeneous group of cells that share a common neurotra...
The study of 3D cell culture models not only bridges the gap between traditional 2D in vitro experim...
The study of 3D cell culture models not only bridges the gap between traditional 2D in vitro experim...