Scinovex
article Open AccessTop 1% cited

Protective Role of Reactive Astrocytes in Brain Ischemia

Journal of Cerebral Blood Flow & Metabolism · 2007 · Vol. 28(3) · pp. 468–481
Li-Zhen LiAndrea LundkvistDaniel AnderssonUlrika WilhelmssonNobuo NagaiAndrea C. PardoChristina NodinAnders StåhlbergKarina ApricóKerstin LarssonTakeshi YabeLieve MoonsAndrew P. FotheringhamIoan DaviesPeter CarmelietJoan P. SchwartzMarcela PeknaMikael KubistaFredrik BlomstrandNicholas J. MaragakisMichael NilssonMilos Pekny

Abstract

Reactive astrocytes are thought to protect the penumbra during brain ischemia, but direct evidence has been lacking due to the absence of suitable experimental models. Previously, we generated mice deficient in two intermediate filament (IF) proteins, glial fibrillary acidic protein (GFAP) and vimentin, whose upregulation is the hallmark of reactive astrocytes. GFAP(-/-)Vim(-/-) mice exhibit attenuated posttraumatic reactive gliosis, improved integration of neural grafts, and posttraumatic regeneration. Seven days after middle cerebral artery (MCA) transection, infarct volume was 210 to 350% higher in GFAP(-/-)Vim(-/-) than in wild-type (WT) mice; GFAP(-/-), Vim(-/-) and WT mice had the same infarct volume. Endothelin B receptor (ET(B)R) immunoreactivity was strong on cultured astrocytes and reactive astrocytes around infarct in WT mice but undetectable in GFAP(-/-)Vim(-/-) astrocytes. In WT astrocytes, ET(B)R colocalized extensively with bundles of IFs. GFAP(-/-)Vim(-/-) astrocytes showed attenuated endothelin-3-induced blockage of gap junctions. Total and glutamate transporter-1 (GLT-1)-mediated glutamate transport was lower in GFAP(-/-)Vim(-/-) than in WT mice. DNA array analysis and quantitative real-time PCR showed downregulation of plasminogen activator inhibitor-1 (PAI-1), an inhibitor of tissue plasminogen activator. Thus, reactive astrocytes have a protective role in brain ischemia, and the absence of astrocyte IFs is linked to changes in glutamate transport, ET(B)R-mediated control of gap junctions, and PAI-1 expression.

Neuroinflammation and Neurodegeneration MechanismsBarrier Structure and Function StudiesRNA regulation and diseaseGlial fibrillary acidic proteinAstrocyteGliosisGlutamate receptorBrain ischemiaDownregulation and upregulationPenumbraTissue plasminogen activatorNeurogliaBiology

MeSH terms

AnimalsAstrocytesBrain IschemiaGlial Fibrillary Acidic ProteinVimentinPlasminogen Activator Inhibitor 1Gap JunctionsMice, KnockoutGlutamic AcidMiddle Cerebral ArteryReceptor, Endothelin BMice
Citations
501
FWCI
14.10
field-weighted impact
References
43
Percentile
99%
vs. same field & year
Citations per year
Cited by
The dual role of astrocyte activation and reactive gliosis
Neuroscience Letters · 2014 · 677 citations
Molecular dissection of reactive astrogliosis and glial scar formation
Trends in Neurosciences · 2009 · 2,553 citations
Astrocytes: biology and pathology
Acta Neuropathologica · 2009 · 5,055 citations
Astrocytes: a central element in neurological diseases
Acta Neuropathologica · 2015 · 746 citations
Glial Cells: Role of the Immune Response in Ischemic Stroke
Frontiers in Immunology · 2020 · 586 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.