UNIVERSI
TÄ
TS-
BIBLIOTHEK
P
ADERBORN
Anmelden
Menü
Menü
Start
Hilfe
Blog
Weitere Dienste
Neuerwerbungslisten
Fachsystematik Bücher
Erwerbungsvorschlag
Bestellung aus dem Magazin
Fernleihe
Einstellungen
Sprache
Deutsch
Deutsch
Englisch
Farbschema
Hell
Dunkel
Automatisch
Sie befinden Sich nicht im Netzwerk der Universität Paderborn. Der Zugriff auf elektronische Ressourcen ist
gegebenenfalls
nur via VPN oder Shibboleth (DFN-AAI) möglich.
mehr Informationen...
Universitätsbibliothek
Katalog
Suche
Details
Zur Ergebnisliste
Ergebnis 2 von 43
Datensatz exportieren als...
BibTeX
CD200-CD200R1 interaction contributes to neuroprotective effects of anandamide on experimentally induced inflammation
Glia, 2012-09, Vol.60 (9), p.1437-1450
Hernangómez, Miriam
Mestre, Leyre
Correa, Fernando G.
Loría, Frida
Mecha, Miriam
Iñigo, Paula M.
Docagne, Fabian
Williams, Richard O.
Borrell, José
Guaza, Carmen
2012
Volltextzugriff (PDF)
Details
Autor(en) / Beteiligte
Hernangómez, Miriam
Mestre, Leyre
Correa, Fernando G.
Loría, Frida
Mecha, Miriam
Iñigo, Paula M.
Docagne, Fabian
Williams, Richard O.
Borrell, José
Guaza, Carmen
Titel
CD200-CD200R1 interaction contributes to neuroprotective effects of anandamide on experimentally induced inflammation
Ist Teil von
Glia, 2012-09, Vol.60 (9), p.1437-1450
Ort / Verlag
Hoboken: Wiley Subscription Services, Inc., A Wiley Company
Erscheinungsjahr
2012
Quelle
Wiley Online Library All Journals
Beschreibungen/Notizen
The endocannabinoid anandamide (AEA) is released by macrophages and microglia on pathological neuroinflammatory conditions such as multiple sclerosis (MS). CD200 is a membrane glycoprotein expressed in neurons that suppresses immune activity via its receptor (CD200R) mainly located in macrophages/microglia. CD200‐CD200R interactions contribute to the brain immune privileged status. In this study, we show that AEA protects neurons from microglia‐induced neurotoxicity via CD200‐CD200R interaction. AEA increases the expression of CD200R1 in LPS/IFN‐γ activated microglia through the activation of CB2 receptors. The neuroprotective effect of AEA disappears when microglial cells derive from CD200R1−/− mice. We also show that engagement of CD200R1 by CD200Fc decreased the production of the proinflammatory cytokines IL‐1β and IL‐6, but increased IL‐10 in activated microglia. In the chronic phases of Theiler's virus‐induced demyelinating disease (TMEV‐IDD) the expression of CD200 and CD200R1 was reduced in the spinal cord. AEA‐treated animals up‐regulated the expression of CD200 and CD200R1, restoring levels found in sham animals together with increased expression of IL‐10 and reduced expression of IL‐1β and IL‐6. Treated animals also improved their motor behavior. Because AEA up‐regulated the expression of CD200R1 in microglia, but failed to enhance CD200 in neurons we suggest that AEA‐induced up‐regulation of CD200 in TMEV‐IDD is likely due to IL‐10 as this cytokine increases CD200 in neurons. Our findings provide a new mechanism of action of AEA to limit immune response in the inflamed brain. © 2012 Wiley Periodicals, Inc.
Sprache
Englisch
Identifikatoren
ISSN: 0894-1491
eISSN: 1098-1136
DOI: 10.1002/glia.22366
Titel-ID: cdi_crossref_primary_10_1002_glia_22366
Format
–
Schlagworte
Animals
,
Antigens, CD - metabolism
,
Antigens, Surface - metabolism
,
Arachidonic Acids - pharmacology
,
Arachidonic Acids - therapeutic use
,
Brain - drug effects
,
Brain - immunology
,
Brain - metabolism
,
CD200
,
CD200R
,
Cells, Cultured
,
endocannabinoids
,
Endocannabinoids - pharmacology
,
Endocannabinoids - therapeutic use
,
IL-10
,
Inflammation - drug therapy
,
Inflammation - immunology
,
Inflammation - metabolism
,
Interleukin-1beta - biosynthesis
,
Interleukin-6 - biosynthesis
,
Mice
,
Microglia - drug effects
,
Microglia - immunology
,
Microglia - metabolism
,
multiple sclerosis
,
neuroinflammation
,
Neurons - drug effects
,
Neurons - immunology
,
Neurons - metabolism
,
Neuroprotective Agents - pharmacology
,
Neuroprotective Agents - therapeutic use
,
Orexin Receptors
,
Polyunsaturated Alkamides - pharmacology
,
Polyunsaturated Alkamides - therapeutic use
,
Receptors, Cell Surface - metabolism
,
TMEV
Weiterführende Literatur
Empfehlungen zum selben Thema automatisch vorgeschlagen von
bX