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1.
Eur J Pharmacol ; 651(1-3): 128-36, 2011 Jan 25.
Article in English | MEDLINE | ID: mdl-21126518

ABSTRACT

Glucose homeostasis in humans is an important factor for the functioning of nervous system. Both hypo and hyperglycemia contributes to neuronal functional deficit. In the present study, effect of insulin induced hypoglycemia and streptozotocin induced diabetes on muscarinic receptor binding, cholinergic enzymes; AChE, ChAT expression and GLUT3 in the cerebral cortex of experimental rats were analysed. Total muscarinic, muscarinic M(1) receptor showed a significant decrease and muscarinic M(3) receptor subtype showed a significant increased binding in the cerebral cortex of hypoglycemic rats compared to diabetic and control. Real-Time PCR analysis of muscarinic M(1), M(3) receptor subtypes confirmed the receptor binding studies. Immunohistochemistry of muscarinic M(1), M(3) receptors using specific antibodies were also carried out. AChE and GLUT3 expression up regulated and ChAT expression down regulated in hypoglycemic rats compared to diabetic and control rats. Our results showed that hypo/hyperglycemia caused impaired glucose transport in neuronal cells as shown by altered expression of GLUT3. Increased AChE and decreased ChAT expression is suggested to alter cortical acetylcholine metabolism in experimental rats along with altered muscarinic receptor binding in hypo/hyperglycemic rats, impair cholinergic transmission, which subsequently lead to cholinergic dysfunction thereby causing learning and memory deficits. We observed a prominent cholinergic functional disturbance in hypoglycemic condition than in hyperglycemia. Hypoglycemia exacerbated the neurochemical changes in cerebral cortex induced by hyperglycemia. These findings have implications for both therapy and identification of causes contributing to neuronal dysfunction in diabetes.


Subject(s)
Blood Glucose/metabolism , Cerebral Cortex/metabolism , Gene Expression Regulation , Homeostasis , Receptors, Muscarinic/genetics , Receptors, Muscarinic/metabolism , Animals , Atropine/metabolism , Choline O-Acetyltransferase/genetics , Diabetes Mellitus/genetics , Diabetes Mellitus/metabolism , Diabetes Mellitus/physiopathology , Glucose Transporter Type 3/genetics , Hypoglycemia/genetics , Hypoglycemia/metabolism , Hypoglycemia/physiopathology , Polymerase Chain Reaction , RNA, Messenger/genetics , RNA, Messenger/metabolism , Rats , Rats, Wistar
2.
Pharmacol Biochem Behav ; 95(2): 216-22, 2010 Apr.
Article in English | MEDLINE | ID: mdl-20096724

ABSTRACT

The study was to find out the effect of Vitamin D3 supplementation on preventing the altered gene expression of cholinergic, dopaminergic, insulin receptors and GLUT3 gene expression in cerebellum of diabetic rats. Radioreceptor binding assays and gene expression were done in the cerebellum of male Wistar rats. Rota rod has been used to evaluate motor coordination. Our results showed a significantly increased gene expression of dopamine D2, muscarinic M1, M3, alpha7 nicotinic acetylcholine, insulin receptors, acetylcholine esterase, GLUT3 and Vitamin D receptor in the cerebellum of diabetic rats. There was a down-regulation of dopamine D1 receptor. Total dopamine receptor showed a decreased and total muscarinic, muscarinic M1 and M3 receptors showed an increased binding parameter, B(max). Rota rod experiment showed a significant decrease in the retention time on the rotating rod in diabetic while treatment improved retention time near to control. Vitamin D3 and insulin treatment markedly recovered the altered gene expression and binding parameters to near control. Our study showed Vitamin D3 functional regulation through dopaminergic, cholinergic and insulin receptors and glucose transport mechanism through GLUT3 in the cerebellum of diabetic rats which play a major role in neuroprotection in diabetes which has clinical application.


Subject(s)
Cerebellum/metabolism , Cholecalciferol/pharmacology , Diabetes Mellitus, Experimental/metabolism , Gene Expression Regulation/drug effects , Receptor, Insulin/genetics , Receptors, Cholinergic/genetics , Receptors, Dopamine/genetics , Animals , Blood Glucose/analysis , Cholecalciferol/administration & dosage , Male , Rats , Rats, Wistar , Rotarod Performance Test , Streptozocin
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