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Research Article

Hemodynamic, Metabolic and Hormonal Responses to Oral Glibenclamide in Patients with Cirrhosis Receiving Glucose

Pages 303-308 | Published online: 08 Jul 2009

References

  • Pugliese D, Lee SS, Koshy A, Cerini R, Ozier Y, Lebrec D. Systemic and splanchnic hemodynamic effects of intravenous glucose in patients with cirrhosis. Hepatology 1988;8:643–6.
  • Christiansen JS, Frandsen M, Parving HH. Effect of intravenous glucose infusion on renal function in normal man and in insulindependent diabetics. Diabetologia 1981;21:368–73.
  • Boyd III AE. The role of ion channels in insulin secretion. J Cell Biochem 1992;48:234–41.
  • Moreau R, Komeichi H, Kirstetter P, Yang S, Aupetit-Faisant B, Cailmail S, et al. Effects of glibenclamide on systemic and splanchnic hemodynamics in conscious rats. Br J Pharmacol 1994;112:649–53.
  • Moreau R, Komeichi H, Cailmail S, Lebrec D. Glibenclamide decreases portal pressure and hyperkinetic circulation in portal hypertensive rats. J Hepatol 1992;16:215–8.
  • Moreau R, Komeichi H, Kirstetter P, Ohsuga M, Cailmail S, Lebrec D. Altered control of vascular tone by adenosine triphosphate-sensitive potassium channels in rats with cirrhosis. Gastroenterology 1994;106:1016–23.
  • Moreau R, Soubrane O, Sogni P, Hadengue A, Gaudin C, Lin HC, et al. Hemodynamic humoral, and metabolic responses to amino acid infusion in patients with cirrhosis. Gastroenterology 1992;103:601–8.
  • Lorenz JN, Schnermann J, Brosius FC, Briggs JP, Furspan PB. Intracellular ATP can regulate afferent arteriolar tone via ATP-sensitive K+ channels in the rabbit. J Clin Invest 1992;90:733–40.
  • Lahaye P, Fouassier L, Tazi KA, Gottardi AD, Flejou JF, Chagneau C, et al. Endothelium-dependent blunted membrane potential responses to ATP-sensitive K+ channel modulators in aortae from rats with cirrhosis. J Hepatol 1999;30:107–14.
  • Heron L, Virsolvy A, Peyrollier K, Gribble FM, Le Cam A, Ashcroft FM, et al. Human-endosulfi ne, a possible regulator of sulfonylurea-sensitive KATP channel: molecular cloning, expression and biological properties. Proc Natl Acad Sci 1998;95: 8387–91.
  • Baron AD. Hemodynamic actions of insulin. Am J Physiol 1994;267:E 187–202.
  • Daut J, Maier-Rudolph W, Von Beckerath N, Mehrke G, Günther K, Goedel-Meinen L. Hypoxic dilation of coronary arteries is mediated by ATP-sensitive potassium channels. Science 1990;247:1341–4.
  • Garlid KD, Paucek P, Yarow-Yarowoy V, Murray HN, Darbenzio RB, D’Alonzo AJ, et al. Cardioprotective effect of diazoxide and its interaction with mitochondrial ATP-sensitive K+ channels. Possible mechanism of cardioprotection. Circ Res 1997;81:1072–82.
  • Keiding S, Skak C. Methodological limitations of the use of intrinsic hepatic clearance of ICG as a measure of liver cell function. Eur J Clin Invest 1988;18:507–11.
  • Moreau R, Lee SS, Hadengue A, Ozier Y, Sicot C, Lebrec D. Relationship between oxygen transport and uptake in patients with cirrhosis. Role of vasoactive drugs. Hepatology 1989;9: 427–32.

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