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Cardiac β-Adrenoceptor Expression Is Reduced in Zucker Diabetic Fatty Rats as Type-2 Diabetes Progresses
James M Haley1, James T Thackeray2, Stephanie L Thorn3
1Cardiac PET Centre, University of Ottawa Heart Institute, 40 Ruskin Street, Ottawa, Ontario, Canada K1Y4W7; Department of Cellular and Molecular Medicine, Faculty of Medicine, University of Ottawa, Roger Guindon Hall, 451 Smyth Road, Ottawa, Ontario, Canada K1H8M5.
Objectives:
Reduced cardiac β-adrenoceptor (β-AR) expression and cardiovascular dysfunction occur in models of hyperglycemia and hypoinsulinemia. Cardiac β-AR expression in type-2 diabetes models of hyperglycemia and hyperinsulinemia, remain less clear. This study investigates cardiac β-AR expression in type-2 diabetic Zucker diabetic fatty (ZDF) rats.
Methods:
Ex vivo biodistribution experiments with [3H]CGP12177 were performed in Zucker lean (ZL) and ZDF rats at 10 and 16 weeks of age as diabetes develops. Blood glucose, body mass, and diet consumption were measured. Western blotting of β-AR subtypes was completed in parallel. Echocardiography was performed at 10 and 16 weeks to assess systolic and diastolic function. Fasted plasma insulin, free fatty acids (FFA), leptin and fed-state insulin were also measured.
Results:
At 10 weeks, myocardial [3H]CGP12177 was normal in hyperglycemic ZDF (17±4.1mM) compared to ZL, but reduced 16-25% at 16 weeks of age as diabetes and hyperglycemia (22±2.4mM) progressed. Reduced β-AR expression not apparent at 10 weeks also developed by 16 weeks of age in ZDF brown adipose tissue. In the heart, Western blotting at 10 weeks indicated normal β1-AR (98±9%), reduced β2-AR (76±10%), and elevated β3-AR (108±6). At 16 weeks, β1-AR expression became reduced (69±16%), β2-AR expression decreased further (68±14%), and β3-AR remained elevated, similar to 10 weeks (112±9%). While HR was reduced at 10 and 16 weeks in ZDF rats, no significant changes were observed in diastolic or systolic function.
Conclusions:
Cardiac β-AR are reduced over 6 weeks of sustained hyperglycemia in type-2 diabetic ZDF rats. This indicates cardiac [3H]CGP12177 retention and β1- and β2-AR expression are inversely correlated with the progression of type-2 diabetes.
Insights
Cardiac beta-adrenoceptor (β-AR) expression decreases with sustained hyperglycemia in type-2 diabetes. This study in Zucker diabetic fatty rats shows reduced β1- and β2-AR in the heart as diabetes progresses.
Area of Science:
- Cardiovascular physiology
- Endocrinology
- Molecular biology
Background:
- Cardiac beta-adrenoceptors (β-AR) are crucial for cardiovascular function.
- Reduced cardiac β-AR expression is observed in hyperglycemia and hypoinsulinemia.
- The impact of type-2 diabetes with hyperglycemia and hyperinsulinemia on cardiac β-AR is less understood.
Purpose of the Study:
- To investigate cardiac β-adrenoceptor (β-AR) expression in type-2 diabetic Zucker diabetic fatty (ZDF) rats.
- To assess the correlation between β-AR expression and diabetes progression.
Main Methods:
- Ex vivo biodistribution with [3H]CGP12177 in Zucker lean (ZL) and ZDF rats.
- Measurement of blood glucose, body mass, and diet consumption.
- Western blotting for β-AR subtypes and echocardiography for cardiac function.
Main Results:
- Myocardial [3H]CGP12177 was reduced by 16-25% in ZDF rats at 16 weeks compared to 10 weeks.
- Western blotting revealed reduced β1-AR and β2-AR expression, and elevated β3-AR in ZDF rat hearts at 16 weeks.
- No significant changes in systolic or diastolic function were observed despite reduced heart rate.
Conclusions:
- Cardiac β-AR expression is reduced over 6 weeks of sustained hyperglycemia in type-2 diabetic ZDF rats.
- Cardiac [3H]CGP12177 retention is inversely correlated with type-2 diabetes progression.
- β1- and β2-AR expression are significantly reduced in the hearts of type-2 diabetic rats.
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