Paul Smith, Ph.D.

Affiliations: 
University of East Anglia University of East Anglia, Norwich, England, United Kingdom 
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Curry L, Almukhtar H, Alahmed J, et al. (2019) Simvastatin inhibits L-type Ca2+-channel activity through impairment of mitochondrial function. Toxicological Sciences : An Official Journal of the Society of Toxicology
Smith PA. (2009) N-type Ca2+-channels in murine pancreatic β-cells are inhibited by an exclusive coupling with somatostatin receptor subtype 1 Endocrinology. 150: 741-748
Daunt M, Dale O, Smith PA. (2006) Somatostatin inhibits oxidative respiration in pancreatic β-cells Endocrinology. 147: 1527-1535
Smith PA, Sellers LA, Humphrey PP. (2001) Somatostatin activates two types of inwardly rectifying K+ channels in MIN-6 cells. The Journal of Physiology. 532: 127-42
Smith PA, Proks P, Ashcroft FM. (1999) Quantal analysis of 5-hydroxytryptamine release from mouse pancreatic beta-cells. The Journal of Physiology. 521: 651-64
Dalle S, Smith P, Blache P, et al. (1999) Miniglucagon (glucagon 19-29), a potent and efficient inhibitor of secretagogue-induced insulin release through a Ca2+ pathway. The Journal of Biological Chemistry. 274: 10869-76
Smith PA, Proks P, Moorhouse A. (1999) Direct effects of tolbutamide on mitochondrial function, intracellular Ca2+ and exocytosis in pancreatic β-cells Pflugers Archiv European Journal of Physiology. 437: 577-588
Smith PA, Proks P. (1998) Inhibition of the ATP-sensitive potassium channel from mouse pancreatic β-cells by surfactants British Journal of Pharmacology. 124: 529-539
Hughes SJ, Faehling M, Thorneley CW, et al. (1998) Electrophysiological and metabolic characterization of single beta-cells and islets from diabetic GK rats. Diabetes. 47: 73-81
Smith P, Millard PJ, Fewtrell CM, et al. (1997) Heterogeneity of beta-cell Ca2+ responses to glucose. Advances in Experimental Medicine and Biology. 426: 253-7
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