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Hu S, Wang S, Dunning BE 
Glucose-dependent and glucose-sensitizing insulinotropic effect of nateglinide: comparison to sulfonylureas and repaglinide. [Journal Article]
Int J Exp Diabetes Res 2001; 2(1):63-72.
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Hu S 
Interaction of nateglinide with K(ATP) channel in beta-cells underlies its unique insulinotropic action. [Journal Article]
Eur J Pharmacol 2002 May 3; 442(1-2):163-71.
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Hu S, Wang S, Fanelli B, et al. 
Pancreatic beta-cell K(ATP) channel activity and membrane-binding studies with nateglinide: A comparison with sulfonylureas and repaglinide. [Journal Article]
J Pharmacol Exp Ther 2000 May; 293(2):444-52.
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Hu S, Wang S, Dunning BE 
Effectiveness of nateglinide on in vitro insulin secretion from rat pancreatic islets desensitized to sulfonylureas. [Journal Article]
Int J Exp Diabetes Res 2001; 2(1):73-9.
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Hu S, Wang S 
Effect of insulinotropic agent nateglinide on Kv and Ca(2+) channels in pancreatic beta-cell. [Journal Article]
Eur J Pharmacol 2001 Sep 14; 427(2):97-104.
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Gromada J, Bokvist K, Høy M, et al. 
Nateglinide, but not repaglinide, stimulates growth hormone release in rat pituitary cells by inhibition of K channels and stimulation of cyclic AMP-dependent exocytosis. [Journal Article]
Eur J Endocrinol 2002 Jul; 147(1):133-42.
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Bokvist K, Hoy M, Buschard K, et al. 
Selectivity of prandial glucose regulators: nateglinide, but not repaglinide, accelerates exocytosis in rat pancreatic A-cells. [Journal Article]
Eur J Pharmacol 1999 Dec 10; 386(1):105-11.
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Malaisse WJ 
Pharmacology of the meglitinide analogs: new treatment options for type 2 diabetes mellitus. [Journal Article, Review]
Treat Endocrinol 2003; 2(6):401-14.
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Hu S, Wang S, Dunning BE 
Tissue selectivity of antidiabetic agent nateglinide: study on cardiovascular and beta-cell K(ATP) channels. [Journal Article]
J Pharmacol Exp Ther 1999 Dec; 291(3):1372-9.
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