Mediation of β-Endorphin by Isoferulic Acid to Lower Plasma Glucose in Streptozotocin-Induced Diabetic Rats
pmid: 12975496
Mediation of β-Endorphin by Isoferulic Acid to Lower Plasma Glucose in Streptozotocin-Induced Diabetic Rats
We investigated the mechanism(s) by which isoferulic acid lowers plasma glucose levels in streptozotocin-induced diabetic rats (STZ-diabetic rats). In STZ-diabetic rats, isoferulic acid dose dependently lowered plasma glucose concentrations and increased plasma beta-endorphin-like immunoreactivity (BER). Both of these effects of isoferulic acid were abolished by pretreatment of rats with tamsulosin or 2-[2,6-dimethoxyphenoxyethyl]aminomethyl-1,4-benzodioxane hydrochloride (WB 4101) at doses sufficient to block alpha1-adrenoceptors. Also, isoferulic acid enhanced BER release from isolated rat adrenal medulla in a concentration-dependent manner that could be abolished by treatment with alpha1-adrenoceptor antagonists. Moreover, bilateral adrenalectomy in STZ-diabetic rats eliminated the activities of isoferulic acid, including the plasma glucose-lowering effect and the plasma BER-elevating effect. Naloxone and naloxonazine inhibited the plasma glucose-lowering activity of isoferulic acid at doses sufficient to block opioid mu-receptors. In contrast with the effect in wild-type diabetic mice, isoferulic acid failed to lower plasma glucose levels in opioid mu-receptor knockout diabetic mice. Treatment of STZ-diabetic rats with isoferulic acid three times in 1 day resulted in an increase in the expression of the glucose transporter subtype 4 form in soleus muscle. This effect was blocked by alpha1-adrenoceptor or opioid mu-receptor antagonists. The reduction of elevated mRNA or protein level of hepatic phosphoenolpyruvate carboxykinase was also impeded in the same groups of STZ-diabetic rats. In conclusion, our results suggest that isoferulic acid may activate alpha1-adrenoceptors to enhance the secretion of beta-endorphin, which can stimulate the opioid mu-receptors to increase glucose use or/and reduce hepatic gluconeogenesis, resulting in a decrease of plasma glucose in STZ-diabetic rats.
Blood Glucose, Male, Mice, Knockout, Glucose Transporter Type 4, Monosaccharide Transport Proteins, Blotting, Western, Muscle Proteins, Adrenalectomy, Blotting, Northern, Diabetes Mellitus, Experimental, Mice, Gene Expression Regulation, Liver, Adrenal Medulla, Cinnamates, Adrenergic alpha-1 Receptor Antagonists, Animals, Hypoglycemic Agents, Insulin, Adrenergic alpha-Antagonists
Blood Glucose, Male, Mice, Knockout, Glucose Transporter Type 4, Monosaccharide Transport Proteins, Blotting, Western, Muscle Proteins, Adrenalectomy, Blotting, Northern, Diabetes Mellitus, Experimental, Mice, Gene Expression Regulation, Liver, Adrenal Medulla, Cinnamates, Adrenergic alpha-1 Receptor Antagonists, Animals, Hypoglycemic Agents, Insulin, Adrenergic alpha-Antagonists
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