Fibrinogen induces neural stem cell differentiation into astrocytes in the subventricular zone via BMP signaling

Neural stem/progenitor cells (NSPCs) originating from the subventricular zone (SVZ) contribute to brain repair during CNS disease. The microenvironment within the SVZ stem cell niche controls NSPC fate. However, extracellular factors within the niche that trigger astrogliogenesis over neurogenesis d...

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Veröffentlicht in:Nature communications 2020-01, Vol.11 (1), p.630-630, Article 630
Hauptverfasser: Pous, Lauriane, Deshpande, Sachin S., Nath, Suvra, Mezey, Szilvia, Malik, Subash C., Schildge, Sebastian, Bohrer, Christian, Topp, Könül, Pfeifer, Dietmar, Fernández-Klett, Francisco, Doostkam, Soroush, Galanakis, Dennis K., Taylor, Verdon, Akassoglou, Katerina, Schachtrup, Christian
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Sprache:eng
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Zusammenfassung:Neural stem/progenitor cells (NSPCs) originating from the subventricular zone (SVZ) contribute to brain repair during CNS disease. The microenvironment within the SVZ stem cell niche controls NSPC fate. However, extracellular factors within the niche that trigger astrogliogenesis over neurogenesis during CNS disease are unclear. Here, we show that blood-derived fibrinogen is enriched in the SVZ niche following distant cortical brain injury in mice. Fibrinogen inhibited neuronal differentiation in SVZ and hippocampal NSPCs while promoting astrogenesis via activation of the BMP receptor signaling pathway. Genetic and pharmacologic depletion of fibrinogen reduced astrocyte formation within the SVZ after cortical injury, reducing the contribution of SVZ-derived reactive astrocytes to lesion scar formation. We propose that fibrinogen is a regulator of NSPC-derived astrogenesis from the SVZ niche via BMP receptor signaling pathway following injury. The molecular mechanisms regulating adult neural stem/progenitor cell differentiation following damage of the central nervous system are unclear. Here, the authors show that fibrinogen is a regulator of the adult neural stem/progenitor cell switch from neurogenesis to astrogenesis in a model of stroke
ISSN:2041-1723
2041-1723
DOI:10.1038/s41467-020-14466-y