Robert D. Pinnock

"Robert Pinnock"
Mean distance: 17.64 (cluster 11)
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Maneuf YP, Gonzalez MI, Sutton KS, et al. (2003) Cellular and molecular action of the putative GABA-mimetic, gabapentin. Cellular and Molecular Life Sciences : Cmls. 60: 742-50
Ciruela A, Dixon AK, Bramwell S, et al. (2003) Identification of MEK1 as a novel target for the treatment of neuropathic pain. British Journal of Pharmacology. 138: 751-6
Smith MA, Herson PS, Lee K, et al. (2003) Hydrogen-peroxide-induced toxicity of rat striatal neurones involves activation of a non-selective cation channel. The Journal of Physiology. 547: 417-25
Martin DJ, McClelland D, Herd MB, et al. (2002) Gabapentin-mediated inhibition of voltage-activated Ca2+ channel currents in cultured sensory neurones is dependent on culture conditions and channel subunit expression. Neuropharmacology. 42: 353-66
Sutton KG, Martin DJ, Pinnock RD, et al. (2002) Gabapentin inhibits high-threshold calcium channel currents in cultured rat dorsal root ganglion neurones. British Journal of Pharmacology. 135: 257-65
Fahmi AI, Patel M, Stevens EB, et al. (2001) The sodium channel β-subunits SCN3b modulates the kinetics of SCN5a and is expressed heterogeneously in sheep heart Journal of Physiology. 537: 693-700
Patel MK, Pinnock RD, Lee K. (2001) Adenosine exerts multiple effects in dorsal horn neurones of the adult rat spinal cord. Brain Research. 920: 19-26
Yusaf SP, Goodman J, Gonzalez IM, et al. (2001) Streptozocin-induced neuropathy is associated with altered expression of voltage-gated calcium channel subunit mRNAs in rat dorsal root ganglion neurones. Biochemical and Biophysical Research Communications. 289: 402-6
Yusaf SP, Goodman J, Pinnock RD, et al. (2001) Expression of voltage-gated calcium channel subunits in rat dorsal root ganglion neurons. Neuroscience Letters. 311: 137-41
Shah BS, Gonzalez MI, Bramwell S, et al. (2001) Beta3, a novel auxiliary subunit for the voltage gated sodium channel is upregulated in sensory neurones following streptozocin induced diabetic neuropathy in rat. Neuroscience Letters. 309: 1-4
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