Differentiation of astrocytes from human stem cells has significant potential for analysis of their role in normal brain function and disease, but existing protocols generate only immature astrocytes. Using early neuralization, we generated spinal cord astrocytes from mouse or human embryonic or induced pluripotent stem cells with high efficiency. Remarkably, short exposure to fibroblast growth factor 1 (FGF1) or FGF2 was sufficient to direct these astrocytes selectively toward a mature quiescent phenotype, as judged by both marker expression and functional analysis. In contrast, tumor necrosis factor alpha and interleukin-1β, but not FGFs, induced multiple elements of a reactive inflammatory phenotype but did not affect maturation. These p...
BACKGROUND: Human preclinical models are crucial for advancing biomedical research. In particular co...
WOS: 000402964700027PubMed ID: 28591655Astrocyte dysfunction and neuroinflammation are detrimental f...
Repairing trauma to the central nervous system by replacement of glial support cells is an increasin...
SummaryDifferentiation of astrocytes from human stem cells has significant potential for analysis of...
Several recent studies have proposed that astrocytes may contribute to neurogenesis, not only as a s...
International audienceAstrocyte dysfunction and neuroinflammation are detrimental features in multip...
The generation of human induced pluripotent stem cells (hiPSCs) represents an exciting advancement w...
Astrocytes form functionally and morphologically distinct populations of cells with brain-region-spe...
Astrocytes have a central role in brain development and function, and so have gained increasing atte...
Availability of homogeneous astrocyte populations would facilitate research concerning cell plastici...
Astrocytes have a central role in brain development and function, and so have gained increasing atte...
International audienceRecent studies highlighted the importance of astrocytes in neuroinflammatory d...
Recent studies highlighted the importance of astrocytes in neuroinflammatory diseases, interacting c...
The generation of astrocytes from human induced pluripotent stem cells has been hampered by either p...
Astrocytes form functionally and morphologically distinct populations of cells with brainregion-spec...
BACKGROUND: Human preclinical models are crucial for advancing biomedical research. In particular co...
WOS: 000402964700027PubMed ID: 28591655Astrocyte dysfunction and neuroinflammation are detrimental f...
Repairing trauma to the central nervous system by replacement of glial support cells is an increasin...
SummaryDifferentiation of astrocytes from human stem cells has significant potential for analysis of...
Several recent studies have proposed that astrocytes may contribute to neurogenesis, not only as a s...
International audienceAstrocyte dysfunction and neuroinflammation are detrimental features in multip...
The generation of human induced pluripotent stem cells (hiPSCs) represents an exciting advancement w...
Astrocytes form functionally and morphologically distinct populations of cells with brain-region-spe...
Astrocytes have a central role in brain development and function, and so have gained increasing atte...
Availability of homogeneous astrocyte populations would facilitate research concerning cell plastici...
Astrocytes have a central role in brain development and function, and so have gained increasing atte...
International audienceRecent studies highlighted the importance of astrocytes in neuroinflammatory d...
Recent studies highlighted the importance of astrocytes in neuroinflammatory diseases, interacting c...
The generation of astrocytes from human induced pluripotent stem cells has been hampered by either p...
Astrocytes form functionally and morphologically distinct populations of cells with brainregion-spec...
BACKGROUND: Human preclinical models are crucial for advancing biomedical research. In particular co...
WOS: 000402964700027PubMed ID: 28591655Astrocyte dysfunction and neuroinflammation are detrimental f...
Repairing trauma to the central nervous system by replacement of glial support cells is an increasin...