Literature DB >> 14747292

Reduction in glucagon receptor expression by an antisense oligonucleotide ameliorates diabetic syndrome in db/db mice.

Yin Liang1, Melville C Osborne, Brett P Monia, Sanjay Bhanot, William A Gaarde, Chantal Reed, Pengxiang She, Thomas L Jetton, Keith T Demarest.   

Abstract

Excess glucagon levels contribute to the hyperglycemia associated with type 2 diabetes. Reducing glucagon receptor expression may thus ameliorate the consequences of hyperglucagonemia and improve blood glucose control in diabetic patients. This study describes the antidiabetic effects of a specific glucagon receptor antisense oligonucleotide (GR-ASO) in db/db mice. The ability of GR-ASOs to inhibit glucagon receptor mRNA expression was demonstrated in primary mouse hepatocytes by quantitative real-time RT-PCR. Intraperitoneal administration of GR-ASO at a dosage of 25 mg/kg twice a week in db/db mice for 3 weeks resulted in 1) decreased glucagon receptor mRNA expression in liver; 2) decreased glucagon-stimulated cAMP production in hepatocytes isolated from GR-ASO-treated db/db mice; 3) significantly reduced blood levels of glucose, triglyceride, and free fatty acids; 4) improved glucose tolerance; and 5) a diminished hyperglycemic response to glucagon challenge. Neither lean nor db/db mice treated with GR-ASO exhibited hypoglycemia. Suppression of GR expression was also associated with increased ( approximately 10-fold) levels of plasma glucagon. No changes were observed in pancreatic islet cytoarchitecture, islet size, or alpha-cell number. However, alpha-cell glucagon levels were increased significantly. Our studies support the concept that antagonism of glucagon receptors could be an effective approach for controlling blood glucose in diabetes.

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Year:  2004        PMID: 14747292     DOI: 10.2337/diabetes.53.2.410

Source DB:  PubMed          Journal:  Diabetes        ISSN: 0012-1797            Impact factor:   9.461


  69 in total

Review 1.  Minireview: Glucagon in the pathogenesis of hypoglycemia and hyperglycemia in diabetes.

Authors:  Philip E Cryer
Journal:  Endocrinology       Date:  2011-12-13       Impact factor: 4.736

2.  Hepatic and glucagon-like peptide-1-mediated reversal of diabetes by glucagon receptor antisense oligonucleotide inhibitors.

Authors:  Kyle W Sloop; Julia Xiao-Chun Cao; Angela M Siesky; Hong Yan Zhang; Diane M Bodenmiller; Amy L Cox; Steven J Jacobs; Julie S Moyers; Rebecca A Owens; Aaron D Showalter; Martin B Brenner; Achim Raap; Jesper Gromada; Brian R Berridge; David K B Monteith; Niels Porksen; Robert A McKay; Brett P Monia; Sanjay Bhanot; Lynnetta M Watts; M Dodson Michael
Journal:  J Clin Invest       Date:  2004-06       Impact factor: 14.808

Review 3.  Current insights and new perspectives on the roles of hyperglucagonemia in non-insulin-dependent type 2 diabetes.

Authors:  Xiao C Li; Jia L Zhuo
Journal:  Curr Hypertens Rep       Date:  2013-10       Impact factor: 5.369

4.  Ectopic expression of glucagon receptor in skeletal muscles improves glucose homeostasis in a mouse model of diabetes.

Authors:  A Maharaj; L Zhu; F Huang; H Qiu; H Li; C Y Zhang; T Jin; Q Wang
Journal:  Diabetologia       Date:  2012-02-09       Impact factor: 10.122

5.  Angptl4 does not control hyperglucagonemia or α-cell hyperplasia following glucagon receptor inhibition.

Authors:  Haruka Okamoto; Katie Cavino; Erqian Na; Elizabeth Krumm; Steven Kim; Panayiotis E Stevis; Joyce Harp; Andrew J Murphy; George D Yancopoulos; Jesper Gromada
Journal:  Proc Natl Acad Sci U S A       Date:  2017-01-31       Impact factor: 11.205

6.  The glucagon receptor is required for the adaptive metabolic response to fasting.

Authors:  Christine Longuet; Elaine M Sinclair; Adriano Maida; Laurie L Baggio; Marlena Maziarz; Maureen J Charron; Daniel J Drucker
Journal:  Cell Metab       Date:  2008-11       Impact factor: 27.287

7.  Islets of Langerhans from prohormone convertase-2 knockout mice show α-cell hyperplasia and tumorigenesis with elevated α-cell neogenesis.

Authors:  Huw B Jones; Jaimini Reens; Simon R Brocklehurst; Catherine J Betts; Sue Bickerton; Alison L Bigley; Richard P Jenkins; Nicky M Whalley; Derrick Morgan; David M Smith
Journal:  Int J Exp Pathol       Date:  2014-02       Impact factor: 1.925

Review 8.  Insulin signaling, resistance, and the metabolic syndrome: insights from mouse models into disease mechanisms.

Authors:  Shaodong Guo
Journal:  J Endocrinol       Date:  2014-01-08       Impact factor: 4.286

9.  Glucagon receptor antagonism improves islet function in mice with insulin resistance induced by a high-fat diet.

Authors:  M Sörhede Winzell; C L Brand; N Wierup; U G Sidelmann; F Sundler; E Nishimura; B Ahrén
Journal:  Diabetologia       Date:  2007-05-04       Impact factor: 10.122

10.  A gene expression network model of type 2 diabetes links cell cycle regulation in islets with diabetes susceptibility.

Authors:  Mark P Keller; YounJeong Choi; Ping Wang; Dawn Belt Davis; Mary E Rabaglia; Angie T Oler; Donald S Stapleton; Carmen Argmann; Kathy L Schueler; Steve Edwards; H Adam Steinberg; Elias Chaibub Neto; Robert Kleinhanz; Scott Turner; Marc K Hellerstein; Eric E Schadt; Brian S Yandell; Christina Kendziorski; Alan D Attie
Journal:  Genome Res       Date:  2008-03-17       Impact factor: 9.043

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