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Stimulatory effect of stevioside on peripheral mu opioid receptors in animals.

机译:甜菊糖苷对动物外周μ阿片样物质受体的刺激作用。

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Stevioside is a dietary supplement widely used as a sweetener to prevent hyperglycemic disorders. However, the action mechanisms of this substance for glucose homeostasis remain obscure. In the present study, a dose-related plasma glucose reduction was observed in Wistar rats receiving intraperitoneally injections of stevioside. Similar to the regulation of glucose metabolism by the activation of mu opioid receptors, this action of stevioside was reversed by naloxonazine under the blockade of mu opioid receptors. We also found that stevioside increased glycogen synthesis in isolated hepatocytes, which was concentration-dependently blocked by naloxonazine. Stevioside did not modify the plasma beta-endorphin levels in Wistar rats but it directly increased the phosphorylation of mu opioid receptors in Chinese hamster ovary cells transfected with mu opioid receptors. Unlike morphine, chronic administration of stevioside did not induce the withdrawal signs in mice. Furthermore, stevioside by intraperitoneal injections did not influence the feeding behaviors of rats. By contrast, intracerebroventricular injections of stevioside increased the rats' food intake, which was also inhibited by pretreatment with naloxonazine. These results showed that it is difficult for stevioside to enter the brain. Stevioside has the ability to activate peripheral mu opioid receptors for lowering plasma glucose and to increase glycogen synthesis in liver. Thus, the stimulation of peripheral mu opioid receptors is responsible for the action of stevioside in the regulation of glucose homeostasis.
机译:甜菊糖是一种膳食补充剂,广泛用作预防高血糖症的甜味剂。但是,该物质对葡萄糖稳态的作用机理仍然不清楚。在本研究中,在接受腹膜内注射甜菊糖苷的Wistar大鼠中观察到剂量相关的血浆葡萄糖减少。与通过激活mu阿片受体来调节葡萄糖代谢相似,在mu阿片受体的阻滞下,纳洛酮嗪逆转了甜菊糖的这种作用。我们还发现,甜菊糖苷增加了分离的肝细胞中糖原的合成,而纳洛嗪则浓度依赖性地阻断了糖原的合成。甜菊糖未改变Wistar大鼠的血浆β-内啡肽水平,但直接增加了被mu阿片受体转染的中国仓鼠卵巢细胞中mu阿片受体的磷酸化。与吗啡不同,甜菊糖的长期服用不会引起小鼠戒断症状。此外,腹膜内注射甜菊糖苷不影响大鼠的喂养行为。相比之下,脑室内注射甜菊糖苷可增加大鼠的食物摄入量,纳洛酮嗪预处理也可抑制这种食物摄入量。这些结果表明,甜菊糖苷很难进入大脑。甜菊糖具有激活外周μ阿片样物质受体的能力,以降低血浆葡萄糖并增加肝脏中的糖原合成。因此,外周μ阿片样物质受体的刺激负责甜菊糖苷在调节葡萄糖稳态中的作用。

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