Web-Books
im Austria-Forum
Austria-Forum
Web-Books
Medizin
Advances in Neuroimmunology
Seite - 38 -
  • Benutzer
  • Version
    • Vollversion
    • Textversion
  • Sprache
    • Deutsch
    • English - Englisch

Seite - 38 - in Advances in Neuroimmunology

Bild der Seite - 38 -

Bild der Seite - 38 - in Advances in Neuroimmunology

Text der Seite - 38 -

BrainSci. 2016,6, 6 8. Kamel,H.; Iadecola,C.Brain-immuneinteractionsandischemicstroke:Clinical implications.ArchNeurol. 2012,69, 576–581. [PubMed] 9. Amantea,D.;Micieli,G.;Tassorelli,C.;Cuartero,M.I.;Ballesteros, I.;Certo,M.;Moro,M.A.;Lizasoain, I.; Bagetta, G. Rationalmodulation of the innate immune system for neuroprotection in ischemic stroke. Front.Neurosci. 2015,9, 147. [CrossRef] [PubMed] 10. Lipton,P.;Whittingham,T.S.Theeffectofhypoxiaonevokedpotentialsinthe invitrohippocampus. J.Physiol. 1979,287, 427–438. [CrossRef] [PubMed] 11. Björklund,O.; Shang,M.;Tonazzini, I.;DarĂ©,E.; Fredholm,B.B.AdenosineA1andA3receptorsprotect astrocytes fromhypoxicdamage.Eur. J.Pharmacol. 2008,596, 6–13. [CrossRef] [PubMed] 12. Palmer,T.M.;Stiles,G.L.Adenosinereceptors.Neuropharmacology1995,34, 683–694. [CrossRef] 13. Reppert, S.M.;Weaver,D.R.; Stehle, J.H.; Rivkees, S.A.Molecular cloning and characterization of a rat A1-adenosinereceptor that iswidelyexpressed inbrainandspinal cord.Mol. Endocrinol. 1991,5, 1037–1048. [CrossRef] [PubMed] 14. McCool,B.A.;Farroni, J.S.A1adenosinereceptors inhibitmultiplevoltage-gatedCa2+ channel subtypes in acutely isolatedratbasolateralamygdalaneurons.Br. J.Pharmacol. 2001,132, 879–888. [CrossRef] [PubMed] 15. Boison,D.Adenosinekinase,epilepsyandstroke:Mechanismsandtherapies.TrendsPharmacol. Sci. 2006,27, 652–658. [CrossRef] [PubMed] 16. Görlach,A.Controlofadenosine transportbyhypoxia.Circ. Res. 2005,97, 1–3. [CrossRef] [PubMed] 17. Takahashi,T.;Otsuguro,K.;Ohta,T.; Ito,S.Adenosineandinosinereleaseduringhypoxia in the isolated spinalcordofneonatal rats.Br. J.Pharmacol. 2010,161, 1806–1816. [CrossRef] [PubMed] 18. Morote-Garcia, J.C.; Rosenberger, P.; Nivillac, N.M.; Coe, I.R.; Eltzschig, H.K. Hypoxia-inducible factor-dependent repressionof equilibrative nucleoside transporter 2 attenuatesmucosal inïŹ‚ammation during intestinalhypoxia.Gastroenterology2009,136, 607–618. [CrossRef] [PubMed] 19. Choi, I.S.; Cho, J.H.; Lee, M.G.; Jang, I.S. Enzymatic conversion of ATP to adenosine contributes to ATP-induced inhibition of glutamate release in ratmedullary dorsal horn neurons. Neuropharmacology 2015,93, 94–102. [CrossRef] [PubMed] 20. DeMendonça,A.;SebastiĂŁo,A.M.;Ribeiro, J.A. InhibitionofNMDAreceptor-mediatedcurrents in isolated rathippocampalneuronesbyadenosineA1receptoractivation.Neuroreport1995,6, 1097–1100. [CrossRef] [PubMed] 21. Arrigoni, E.; Crocker,A.J.; Saper,C.B.; Greene, R.W.; Scammell, T.E.Deletionof presynaptic adenosine A1receptors impairs therecoveryofsynaptic transmissionafterhypoxia.Neuroscience2005,132, 575–580. [CrossRef] [PubMed] 22. Cui,M.;Bai,X.;Li,T.;Chen,F.;Dong,Q.;Zhao,Y.;Liu,X.Decreasedextracellularadenosine levels leadto lossofhypoxia-inducedneuroprotectionafter repeatedepisodesofexposure tohypoxia.PLoSONE2013,8, e57065. [CrossRef] [PubMed] 23. Zhang, J.;Malik,A.; Choi,H.B.; Ko,R.W.;Dissing-Olesen, L.;MacVicar, B.A.MicroglialCR3activation triggers long-termsynapticdepression in thehippocampusviaNADPHoxidase.Neuron2014,82, 195–207. [CrossRef] [PubMed] 24. Ma,D.K.;Vozdek,R.;Bhatla,N.;Horvitz,H.R.CYSL-1 interactswith theO2-sensinghydroxylaseEGL-9 topromoteH2S-modulatedhypoxia-inducedbehavioralplasticity inC.elegans.Neuron2012,73, 925–940. [CrossRef] [PubMed] 25. Park,E.C.;Ghose,P.; Shao,Z.;Ye,Q.;Kang,L.;Xu,X.Z.;Powell-Coffman, J.A.;Rongo,C.Hypoxiaregulates glutamate receptor trafïŹcking through anHIF-independentmechanism. EMBO J. 2012, 31, 1379–1393. [CrossRef] [PubMed] 26. Epstein,A.C.;Gleadle, J.M.;McNeill,L.A.;Hewitson,K.S.;O’Rourke, J.;Mole,D.R.;Mukherji,M.;Metzen,E.; Wilson,M.I.;Dhanda,A.; et al. C. elegansEGL-9andmammalianhomologsdeïŹnea familyofdioxygenases that regulateHIFbyprolylhydroxylation.Cell2001,107, 43–54. [CrossRef] 27. Wang, J.; Ming,H.; Chen, R.; Ju, J.M.; Peng,W.D.; Zhang,G.X.; Liu, C.F. CIH-inducedneurocognitive impairmentsareassociatedwithhippocampalCa2+ overload,apoptosis, anddephosphorylationofERK1/2 andCREB that aremediated by overactivation ofNMDARs. Brain Res. 2015, 1625, 64–72. [CrossRef] [PubMed] 28. McDonald, J.W.; Johnston,M.V.Physiologicalandpathophysiological rolesofexcitatoryaminoacidsduring centralnervoussystemdevelopment.BrainRes. BrainRes. Rev. 1990,15, 41–70. [CrossRef] 38
zurĂŒck zum  Buch Advances in Neuroimmunology"
Advances in Neuroimmunology
Titel
Advances in Neuroimmunology
Autor
Donna Gruol
Herausgeber
MDPI
Ort
Basel
Datum
2017
Sprache
englisch
Lizenz
CC BY-NC-ND 4.0
ISBN
978-3-03842-571-7
Abmessungen
17.0 x 24.0 cm
Seiten
164
Schlagwörter
neuroimmune, cytokine, chemokine, glia cel, neuron, neurodevelopment, neuroimmune disorder, neurologic disease, psychiatric disease, neuronal injury
Kategorie
Medizin
Web-Books
Bibliothek
Datenschutz
Impressum
Austria-Forum
Austria-Forum
Web-Books
Advances in Neuroimmunology