Graham P. Wilkin

Affiliations: 
Imperial College, London, London, England, United Kingdom 
Area:
Glia, astrocytes, differentiation
Google:
"Graham Wilkin"
Mean distance: 16.59 (cluster 11)
 
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Publications

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Knott C, Stern G, Kingsbury A, et al. (2002) Elevated glial brain-derived neurotrophic factor in Parkinson's diseased nigra. Parkinsonism & Related Disorders. 8: 329-41
Poopalasundaram S, Knott C, Shamotienko OG, et al. (2000) Glial heterogeneity in expression of the inwardly rectifying K(+) channel, Kir4.1, in adult rat CNS. Glia. 30: 362-72
Young KA, Hirst WD, Solito E, et al. (1999) De novo expression of lipocortin-1 in reactive microglia and astrocytes in kainic acid lesioned rat cerebellum. Glia. 26: 333-43
Hirst WD, Young KA, Newton R, et al. (1999) Expression of COX-2 by normal and reactive astrocytes in the adult rat central nervous system. Molecular and Cellular Neurosciences. 13: 57-68
Ljungberg MC, Stern G, Wilkin GP. (1999) Survival of genetically engineered, adult-derived rat astrocytes grafted into the 6-hydroxydopamine lesioned adult rat striatum. Brain Research. 816: 29-37
Hirst WD, Cheung NY, Rattray M, et al. (1998) Cultured astrocytes express messenger RNA for multiple serotonin receptor subtypes, without functional coupling of 5-HT1 receptor subtypes to adenylyl cyclase. Brain Research. Molecular Brain Research. 61: 90-9
Hirst WD, Price GW, Rattray M, et al. (1998) Serotonin transporters in adult rat brain astrocytes revealed by [3H]5-HT uptake into glial plasmalemmal vesicles. Neurochemistry International. 33: 11-22
Davletov BA, Meunier FA, Ashton AC, et al. (1998) Vesicle exocytosis stimulated by alpha-latrotoxin is mediated by latrophilin and requires both external and stored Ca2+. The Embo Journal. 17: 3909-20
Hirst WD, Price GW, Rattray M, et al. (1997) Identification of 5-hydroxytryptamine receptors positively coupled to adenylyl cyclase in rat cultured astrocytes. British Journal of Pharmacology. 120: 509-15
McNamara NM, Averill S, Wilkin GP, et al. (1996) Ultrastructural localization of a voltage-gated K+ channel alpha subunit (KV 1.2) in the rat cerebellum. The European Journal of Neuroscience. 8: 688-99
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