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1.
Adrenocorticotrophin-independent macronodular adrenal hyperplasia in a patient with lysine vasopressin responsiveness but insensitivity to gastric inhibitory polypeptide // Clin. Endocrinol., 1997. Vol. 47, N 6.-С.739-745

2.
Analysis of the putative promoter region of the GIP receptor gene (GIPR) in GIP-dependent Cushing's syndrome (CS) // Endocr. Res., 2002. Vol. 28, N 4.-С.755-756

3.
Comparison of the effect of GIP and GLP-1 (7-36amide) on insulin release from rat pancreatic islets // Eur. J. Clin. Invest., 1992. Vol. 22, N 3.-С.154-157

4.
Effect of monounsaturated fatty-acid-enriched test meals on plasma insulin and GIP concentrations // Proc. Nutr. Soc., 1994. Vol. 53, N 3.-С.167A

5.
Demol P. Effects of rioprostil on the postprandial glucose, GIP, insulin and gastrin levels in volunteers // Scand. J. Gastroenterol. Suppl., 1989. Vol. 24, N 164.-С.112-117

6.
Gastric inhibitory polypeptide (GIP) response in diabetes using a highly specific antiserum // Diabet. Med., 1992. Vol. 9, N 6.-С.542-545

7.
Gastric inhibitory polypeptide (GIP) stimulates cortisol secretion, cAMP production and DNA synthesis in an adrenal adenoma responsible for food-dependent Cushing's syndrome // Endocr. Res., 1998. Vol. 24, N 3-4.-С.851-856

8.
Gastric inhibitory polypeptide (GIP) stimulates cortisol secretion, cAMP production and DNA synthesis in an adrenal adenoma responsible for food-dependent Cushing's syndrome // Endocr. Res., 1998. Vol. 24, N 3-4.-С.851-856

9.
Hyperglycemia but not hyperinsulinemia prevents the secretion of glucagon-like peptide-1 (7-36amide) stimulated by fat ingestion // Regul. Peptides, 1992. Vol. 40, N 2.-С.259

10.
Opara Emmanuel C. Influence of gastric inhibitory polypeptide (GIP) and glucose on the regulation of glucagon secretion by pancreatic alpha cells // Regul. Peptides, 1991. Vol. 32, N 2.-С.65-73

11.
Misoprostol-inhibited rat gastric emptying is independent of gastric inhibitory polypeptide release // Pharmacology, 1999. Vol. 58, N 5.-С.265-269

12.
Misoprostol-inhibited rat gastric emptying is independent of gastric inhibitory polypeptide release // Pharmacology, 1999. Vol. 58, N 5.-С.265-269

13.
Atkinson A.Brew New causes of Cushing's syndrome: Abnormal adrenal regulation of cortisol production // Clin. Endocrinol., 2000. Vol. 52, N 2.-С.137

14.
O'Harte Finbarr P.M. NH[2]-terminally modified gastric inhibitory polypeptide exhibits amino-peptidase resistance and enhanced antihyperglycemic activity // Diabetes, 1999. Vol. 48, N 4.-С.758-765

15.
O'Harte Finbarr P.M. NH[2]-terminally modified gastric inhibitory polypeptide exhibits amino-peptidase resistance and enhanced antihyperglycemic activity // Diabetes, 1999. Vol. 48, N 4.-С.758-765

16.
O'Harte Finbarr P.M. NH[2]-terminally modified gastric inhibitory polypeptide exhibits amino-peptidase resistance and enhanced antihyperglycemic activity // Diabetes, 1999. Vol. 48, N 4.-С.758-765

17.
Niveles plasmaticos postrandiales de peptido inhibidor gastrico (GIP) en la pancreatitis cronica // Rev. esp. enferm. digest., 1994. Vol. 85, N 4.-С.305

18.
Normal gastric inhibitory polypeptide response to oral glucose in hypothyroidism // J. Endocrinol., 1994. Vol. 140, N 2.-С.309-312

19.
Pancreastatin inhibits insulin secretion as induced by glucagon, vasoactive intestinal peptide, gastric inhibitory peptide, andd 8-cholecystokinin in the perfused rat pancreas // Metabolism, 1989. Vol. 38, N 7.-С.679-682

20.
Sequential induction of beta cell rest and stimulation using stable GIP inhibitor and GLP-1 mimetic peptides improves metabolic control in C57BL/KsJ db/db mice // Diabetologia, 2015. Vol. 58, N 9.-С.2144-2153

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