Artículo
Cross‐talk between monocyte invasion and astrocyte proliferation regulates scarring in brain injury
Frik, Jesica
; Merl Pham, Juliane; Plesnila, Nikolaus; Mattugini, Nicola; Kjell, Jacob; Kraska, Jonas; Gomez, Ricardo Martin
; Hauck, Stefanie M.; Sirko, Swetlana; Götz, Magdalena
Fecha de publicación:
05/2018
Editorial:
Nature Publishing Group
Revista:
Embo Reports
ISSN:
1469-221X
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
Scar formation after brain injury is still poorly understood. To further elucidate such processes, here, we examine the interplay between astrocyte proliferation taking place predominantly at the vascular interface and monocyte invasion. Using genetic mouse models that decrease or increase reactive astrocyte proliferation, we demonstrate inverse effects on monocyte numbers in the injury site. Conversely, reducing monocyte invasion using CCR2−/− mice causes a strong increase in astrocyte proliferation, demonstrating an intriguing negative cross‐regulation between these cell types at the vascular interface. CCR2−/− mice show reduced scar formation with less extracellular matrix deposition, smaller lesion site and increased neuronal coverage. Surprisingly, the GFAP+ scar area in these mice is also significantly decreased despite increased astrocyte proliferation. Proteomic analysis at the peak of increased astrocyte proliferation reveals a decrease in extracellular matrix synthesizing enzymes in the injury sites of CCR2−/− mice, highlighting how early key aspects of scar formation are initiated. Taken together, we provide novel insights into the cross‐regulation of juxtavascular proliferating astrocytes and invading monocytes as a crucial mechanism of scar formation upon brain injury.
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Articulos(IBBM)
Articulos de INST.DE BIOTECNOLOGIA Y BIOLOGIA MOLECULAR
Articulos de INST.DE BIOTECNOLOGIA Y BIOLOGIA MOLECULAR
Citación
Frik, Jesica; Merl Pham, Juliane; Plesnila, Nikolaus; Mattugini, Nicola; Kjell, Jacob; et al.; Cross‐talk between monocyte invasion and astrocyte proliferation regulates scarring in brain injury; Nature Publishing Group; Embo Reports; 19; 5; 5-2018; 1-20
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