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Endocrinology, doi:10.1210/en.2005-0553
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*Diabetes
Endocrinology Vol. 146, No. 12 5425-5432
Copyright © 2005 by The Endocrine Society

Altered Glucose and Insulin Responses to Brain Medullary Thyrotropin-Releasing Hormone (TRH)-Induced Autonomic Activation in Type 2 Diabetic Goto-Kakizaki Rats

Yan Ao, Natalie Toy, Moon K. Song, Vay Liang W. Go and Hong Yang

Center for Ulcer Research and Education: Digestive Diseases Research Center, Department of Medicine, Division of Digestive Diseases and Brain Research Institute, University of California, Los Angeles, and Department of Veterans Affairs Greater Los Angeles Healthcare System, Los Angeles, California 90073

Address all correspondence and requests for reprints to: Hong Yang, M.D., Ph.D., Center for Ulcer Research and Education: Digestive Diseases Research Center, Veterans Affairs Greater Los Angeles Healthcare System Building 115, Room 203, 11301 Wilshire Boulevard, Los Angeles, California 90073. E-mail: hoyang{at}ucla.edu.

Insulin secretion is impaired in type 2 diabetes (T2D). The insulin and glucose responses to central autonomic activation induced by excitation of brain medullary TRH receptors were studied in T2D Goto-Kakizaki (GK) rats. Blood glucose levels in normally fed, pentobarbital-anesthetized GK and nondiabetic Wistar rats were 193 and 119 mg/100 ml in males and 214 and 131 mg/100 ml in females. Intracisternal injection (ic) of the stable TRH analog RX 77368 (10 ng) induced significantly higher insulin response in both genders of overnight-fasted GK rats compared with Wistar rats and slightly increased blood glucose in female Wistar rats but significantly decreased it from 193 to 145 mg/100 ml in female GK rats. RX 77368 (50 ng) ic induced markedly greater glucose and relatively weaker insulin responses in male GK rats than Wistar rats. Bilateral vagotomy blocked ic RX 77368-induced insulin secretion, whereas adrenalectomy abolished its hyperglycemic effect. In adrenalectomized male GK but not Wistar rats, ic RX 77368 (50 ng) dramatically increased serum insulin levels by 6.5-fold and decreased blood glucose levels from 154 to 98 mg/100 ml; these changes were prevented by vagotomy. GK rats had higher basal pancreatic insulin II mRNA levels but a lower response to ic RX 77368 (50 ng) compared with Wistar rats. These results indicate that central-vagal activation-induced insulin secretion is susceptible in T2D GK rats. However, the dominant sympathetic-adrenal response to medullary TRH plays a suppressing role on vagal-mediated insulin secretion. This unbalanced vago-sympathetic activation by medullary TRH may contribute to the impaired insulin secretion in T2D.




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Y. Ao, V. L. W. Go, N. Toy, T. Li, Y. Wang, M. K. Song, J. R. Reeve Jr., Y. Liu, and H. Yang
Brainstem Thyrotropin-Releasing Hormone Regulates Food Intake through Vagal-Dependent Cholinergic Stimulation of Ghrelin Secretion
Endocrinology, December 1, 2006; 147(12): 6004 - 6010.
[Abstract] [Full Text] [PDF]




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Copyright © 2005 by The Endocrine Society