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Publication : Glucagon receptor knockout prevents insulin-deficient type 1 diabetes in mice.

First Author  Lee Y Year  2011
Journal  Diabetes Volume  60
Issue  2 Pages  391-7
PubMed ID  21270251 Mgi Jnum  J:170121
Mgi Id  MGI:4944022 Doi  10.2337/db10-0426
Citation  Lee Y, et al. (2011) Glucagon receptor knockout prevents insulin-deficient type 1 diabetes in mice. Diabetes 60(2):391-7
abstractText  OBJECTIVE: To determine the role of glucagon action in the metabolic phenotype of untreated insulin deficiency. RESEARCH DESIGN AND METHODS: We compared pertinent clinical and metabolic parameters in glucagon receptor-null (Gcgr(-/-)) mice and wild-type (Gcgr(+/+)) controls after equivalent destruction of beta-cells. We used a double dose of streptozotocin to maximize beta-cell destruction. RESULTS: Gcgr(+/+) mice became hyperglycemic (>500 mg/dL), hyperketonemic, polyuric, and cachectic and had to be killed after 6 weeks. Despite comparable beta-cell destruction in Gcgr(-/-) mice, none of the foregoing clinical or laboratory manifestations of diabetes appeared. There was marked alpha-cell hyperplasia and hyperglucagonemia (~1,200 pg/mL), but hepatic phosphorylated cAMP response element binding protein and phosphoenolpyruvate carboxykinase mRNA were profoundly reduced compared with Gcgr(+/+) mice with diabetes--evidence that glucagon action had been effectively blocked. Fasting glucose levels and oral and intraperitoneal glucose tolerance tests were normal. Both fasting and nonfasting free fatty acid levels and nonfasting beta-hydroxy butyrate levels were lower. CONCLUSIONS: We conclude that blocking glucagon action prevents the deadly metabolic and clinical derangements of type 1 diabetic mice.
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