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PMID: 17977959 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Impaired glucose-stimulated insulin secretion is coupled with exocrine pancreatic lesions in the Cohen diabetic rat.

Diabetes ·Vol. 57 ·No. 2 ·2008-02-00 ·Pages 279-87

Weksler-Zangen S, Raz I, Lenzen S, Jörns A, Ehrenfeld S, Amir G, Oprescu A, Yagil Y, Yagil C, Zangen DH, Kaiser N

Abstract

The Cohen diabetes-sensitive rat develops postprandial hyperglycemia when fed a high-sucrose, copper-poor diet, whereas the Cohen diabetes-resistant rat maintains normoglycemia. The pathophysiological basis of diabetes was studied in the Cohen diabetic rat centering on the interplay between the exocrine and endocrine compartments of the pancreas. Studies used male Cohen diabetes-sensitive and Cohen diabetes-resistant rats fed 1-month high-sucrose, copper-poor diet. Serum insulin and glucose levels were measured during glucose and insulin tolerance tests. The pancreas was evaluated for weight, insulin content, macrophage, and fat infiltration. Glucose-stimulated insulin secretion (GSIS) was determined in isolated perfused pancreas and in islets. Hyperglycemic Cohen diabetes-sensitive rats exhibited reduced pancreatic weight with lipid deposits and interleukin-1beta-positive macrophage infiltration in the exocrine pancreas. Islet morphology was preserved, and total pancreatic insulin content did not differ from that of Cohen diabetes-resistant rats. Lipids did not accumulate in skeletal muscle, nor was insulin resistance observed in hyperglycemic Cohen diabetes-sensitive rats. Intravenous glucose-tolerance test revealed markedly elevated glucose levels associated with diminished insulin output. Insulin release was induced in vivo by the non-nutrient secretagogues arginine and tolbutamide, suggesting a selective unresponsiveness to glucose. Decreased GSIS was observed in the isolated perfused pancreas of the hyperglycemic Cohen diabetes-sensitive rat, whereas islets isolated from these rats exhibited glucose-dependent insulin secretion and proinsulin biosynthesis. The association of the in vivo insulin secretory defect with lipid accumulation and activated macrophage infiltration in the exocrine pancreas suggests that changes in the islet microenvironment are the culprit in the insulin secretory malfunction observed in vivo.

MeSH Terms
Animal Feed Animals Blood Glucose/metabolism Catheters, Indwelling Copper/deficiency Diabetes Mellitus, Experimental/pathology,physiopathology Diet, Diabetic Dietary Carbohydrates Glucose Tolerance Test Hyperglycemia/physiopathology Insulin/blood,metabolism Insulin Secretion Male Pancreas/drug effects,pathology Postprandial Period Rats Sucrose/pharmacology
Chemicals
Blood Glucose Dietary Carbohydrates Insulin Sucrose Copper
Authors & Affiliations
11 authors, click to expand affiliations / ORCID
Weksler-Zangen Sarah
The Diabetes Unit, Hadassah-Hebrew University Medical Center, Jerusalem 1200, Israel. [email protected]
Raz Itamar
Lenzen Sigurd
Jörns Anne
Ehrenfeld Shira
Amir Gail
Oprescu Andrei
Yagil Yoram
Yagil Chana
Zangen David H
Kaiser Nurit
Article Info
Journal
Diabetes
Abbr.
Diabetes
ISSN
1939-327X
Published
2008-02-00
Epub
2007-00-31
Pages
279-87
Language
English
Region
United States
NLM ID
0372763
Subset
IM
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