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Inhibition of insulin degrading enzyme by racecadotril in the brain of Wistar rats.

机译:消旋卡多曲在Wistar大鼠脑中对胰岛素降解酶的抑制作用。

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Racecadotril is an enkephalinase inhibitor used to treat abdominal discomfort in the clinic. The blood-glucose lowering action of racecadotril has been observed in rats; however, the mechanisms remain obscure. 8-week-old Wistar rats were intravenously injected with racecadotril and the levels of insulin in the brain were measured. Additionally, brain homogenates were co-incubated with racecadotril or thiorphan to evaluate insulin degrading enzyme (IDE) activity. Otherwise, rats were pretreated by intracerebroventricular (i. c. v.) injection of insulin antibody or glibenclamide at a dose sufficient to inhibit K (ATP) channels prior to injection of racecadotril. Moreover, rats were vagotomized to evaluate the role of the cholinergic nerve. Racecadotril significantly decreased the plasma glucose in rats; this action of racecadotril was abolished by i. c. v. pretreatment with insulin antibody or glibenclamide. Also, i. c. v. injection of thiorphan, the active form of racecadotril, lowered blood glucose, but this effect disappeared in the presence of the insulin antibody. In rat brain homogenates, racecadotril and thiorphan inhibited IDE activity and increased the cerebral insulin level. The blood-glucose lowering action of racecadotril or thiorphan was diminished in vagotomized rats. Our results suggest that racecadotril lowers blood glucose mainly through inhibition of IDE activity and increases endogenous insulin in the brain. Subsequently, the increased insulin might activate insulin receptor, which opens the K (ATP) channel and induces peripheral insulin release through the vagal nerve. Thus, we provide the new finding that racecadotril has the ability to inhibit IDE in rat brain.
机译:Racecadotril是一种脑啡肽酶抑制剂,在临床上用于治疗腹部不适。已在大鼠中观察到消旋卡多曲的降血糖作用。但是,机制仍然不清楚。向8周大的Wistar大鼠静脉内注射消旋卡多曲,并测量大脑中的胰岛素水平。另外,将脑匀浆与消旋卡多曲或硫柳烷共孵育以评估胰岛素降解酶(IDE)活性。否则,在注射消旋卡多曲之前,通过脑室内(i.c.v.)注射胰岛素抗体或格列本脲以足以抑制K(ATP)通道的剂量对大鼠进行预处理。此外,对大鼠进行迷走神经切断术以评估胆碱能神经的作用。消旋卡多曲明显降低了大鼠的血浆葡萄糖;我取消了消旋卡多曲的这一作用。 C。 v。用胰岛素抗体或格列本脲进行预处理。另外,我。 C。 v。注射西非卡曲酮的活性形式噻虫啉可降低血糖,但在存在胰岛素抗体的情况下这种作用消失了。在大鼠脑组织匀浆中,消旋卡多曲和噻吩可抑制IDE活性并增加脑胰岛素水平。迷走神经切断的大鼠中消旋卡多曲或噻吩的降血糖作用减弱。我们的研究结果表明,消旋卡多曲主要通过抑制IDE活性来降低血糖,并增加大脑中的内源性胰岛素。随后,增加的胰岛素可能会激活胰岛素受体,从而打开K(ATP)通道并诱导周围的胰岛素通过迷走神经释放。因此,我们提供了一个新发现,即卡卡地尔具有抑制大鼠脑中IDE的能力。

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