Astrocytes have important functions in the brain and their deregulation may cause disease. Current ways to derive astrocytes from pluripotent stem cells are labor, time, and resource intensive, but in this issue of Stem Cell Reports, Li et al. present a faster method to produce functional astrocytes using transcription factors. : Astrocytes have important functions in the brain and their deregulation may cause disease. Current ways to derive astrocytes from pluripotent stem cells are labor, time, and resource intensive, but in this issue of Stem Cell Reports, Li et al. present a faster method to produce functional astrocytes using transcription factors
Astrocytes form functionally and morphologically distinct populations of cells with brainregion-spec...
Direct cell reprogramming enables direct conversion of fibroblasts into functional neurons and oligo...
Most neurodegenerative disorders have complex and still unresolved pathology characterized by progre...
Astrocytes are essential cells for normal brain functionality and have recently emerged as key playe...
Astrocytes are essential cells for normal brain functionality and have recently emerged as key playe...
The derivation of astrocytes from human pluripotent stem cells is currently slow and inefficient. We...
Summary: Differentiation of astrocytes from human pluripotent stem cells (hPSCs) is a tedious and va...
Summary: Direct cell reprogramming enables direct conversion of fibroblasts into functional neurons ...
Astrocytes have a central role in brain development and function, and so have gained increasing atte...
International audienceAstrocyte dysfunction and neuroinflammation are detrimental features in multip...
We analyzed the feasibility of obtaining neurons from reprogrammed human astrocytes as a possible st...
BACKGROUND: Human preclinical models are crucial for advancing biomedical research. In particular co...
SummaryDirect cell reprogramming enables direct conversion of fibroblasts into functional neurons an...
WOS: 000402964700027PubMed ID: 28591655Astrocyte dysfunction and neuroinflammation are detrimental f...
Astrocytes have a central role in brain development and function, and so have gained increasing atte...
Astrocytes form functionally and morphologically distinct populations of cells with brainregion-spec...
Direct cell reprogramming enables direct conversion of fibroblasts into functional neurons and oligo...
Most neurodegenerative disorders have complex and still unresolved pathology characterized by progre...
Astrocytes are essential cells for normal brain functionality and have recently emerged as key playe...
Astrocytes are essential cells for normal brain functionality and have recently emerged as key playe...
The derivation of astrocytes from human pluripotent stem cells is currently slow and inefficient. We...
Summary: Differentiation of astrocytes from human pluripotent stem cells (hPSCs) is a tedious and va...
Summary: Direct cell reprogramming enables direct conversion of fibroblasts into functional neurons ...
Astrocytes have a central role in brain development and function, and so have gained increasing atte...
International audienceAstrocyte dysfunction and neuroinflammation are detrimental features in multip...
We analyzed the feasibility of obtaining neurons from reprogrammed human astrocytes as a possible st...
BACKGROUND: Human preclinical models are crucial for advancing biomedical research. In particular co...
SummaryDirect cell reprogramming enables direct conversion of fibroblasts into functional neurons an...
WOS: 000402964700027PubMed ID: 28591655Astrocyte dysfunction and neuroinflammation are detrimental f...
Astrocytes have a central role in brain development and function, and so have gained increasing atte...
Astrocytes form functionally and morphologically distinct populations of cells with brainregion-spec...
Direct cell reprogramming enables direct conversion of fibroblasts into functional neurons and oligo...
Most neurodegenerative disorders have complex and still unresolved pathology characterized by progre...