Astrocytes are emerging key players in neurological disorders. However, their role in disease etiology is poorly understood owing to inaccessibility of primary human astrocytes. Pluripotent stem cell-derived cells fail to mimic age and due to their clonal origin do not mimic genetic heterogeneity of patients. In contrast, direct conversion constitutes an attractive approach to generate human astrocytes that capture age and genetic diversity. We describe efficient direct conversion of human fibroblasts to functional induced astrocytes (iAs). Expression of the minimal combination Sox9 and Nfib generates iAs with molecular, phenotypic, and functional properties resembling primary human astrocytes. iAs could be obtained by conversion of fibrobl...
Astrocytes play an important role in maintaining brain homeostasis and their dysfunction is involved...
Astrocytes play an important role in maintaining brain homeostasis and their dysfunction is involved...
Astrocytes play an important role in maintaining brain homeostasis and their dysfunction is involved...
Direct cell reprogramming enables direct conversion of fibroblasts into functional neurons and oligo...
Direct cell reprogramming enables direct conversion of fibroblasts into functional neurons and oligo...
Direct cell reprogramming enables direct conversion of fibroblasts into functional neurons and oligo...
Direct cell reprogramming enables direct conversion of fibroblasts into functional neurons and oligo...
SummaryDirect cell reprogramming enables direct conversion of fibroblasts into functional neurons an...
Summary: Direct cell reprogramming enables direct conversion of fibroblasts into functional neurons ...
Direct cell reprogramming enables direct conversion of fibroblasts into functional neurons and oligo...
Direct cell reprogramming enables direct conversion of fibroblasts into functional neurons and oligo...
The derivation of astrocytes from human pluripotent stem cells is currently slow and inefficient. We...
SummaryDirect cell reprogramming enables direct conversion of fibroblasts into functional neurons an...
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...
Astrocytes play an important role in maintaining brain homeostasis and their dysfunction is involved...
Astrocytes play an important role in maintaining brain homeostasis and their dysfunction is involved...
Astrocytes play an important role in maintaining brain homeostasis and their dysfunction is involved...
Direct cell reprogramming enables direct conversion of fibroblasts into functional neurons and oligo...
Direct cell reprogramming enables direct conversion of fibroblasts into functional neurons and oligo...
Direct cell reprogramming enables direct conversion of fibroblasts into functional neurons and oligo...
Direct cell reprogramming enables direct conversion of fibroblasts into functional neurons and oligo...
SummaryDirect cell reprogramming enables direct conversion of fibroblasts into functional neurons an...
Summary: Direct cell reprogramming enables direct conversion of fibroblasts into functional neurons ...
Direct cell reprogramming enables direct conversion of fibroblasts into functional neurons and oligo...
Direct cell reprogramming enables direct conversion of fibroblasts into functional neurons and oligo...
The derivation of astrocytes from human pluripotent stem cells is currently slow and inefficient. We...
SummaryDirect cell reprogramming enables direct conversion of fibroblasts into functional neurons an...
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...
Astrocytes play an important role in maintaining brain homeostasis and their dysfunction is involved...
Astrocytes play an important role in maintaining brain homeostasis and their dysfunction is involved...
Astrocytes play an important role in maintaining brain homeostasis and their dysfunction is involved...