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Haloperidol and olanzapine mediate metabolic abnormalities through different molecular pathways

机译:氟哌啶醇和奥氮平通过不同的分子途径介导代谢异常

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The pathogenesis of antipsychotic-induced disturbances of glucose homeostasis is still unclear. Increased visceral adiposity has been suggested to be a possible mediating mechanism. The aim of this study was to investigate, in an animal model, the differential effects of olanzapine and haloperidol on visceral fat deposition (using magnetic resonance imaging(MRI)) and on critical nodes of the insulin signaling pathway (liver-protein levels of IRS2 (insulin receptor substrate 2), GSK3α (glycogen synthase kinase-3α), GSK3β, GSK3α-Ser21, GSK3β-Ser9). To this end, we studied male Sprague–Dawley rats treated with vehicle ( n =8), haloperidol (2?mg?kg?1 per day, n =8), or olanzapine (10?mg?kg?1per day, n =8), using osmotic minipumps, for 8 weeks. The haloperidol group showed a higher percentage of visceral fat than both the olanzapine group and the vehicle group, whereas there was no difference between the olanzapine and the vehicle group. In terms of insulin signaling pathway, the olanzapine group showed significantly reduced IRS2 levels, reduced phosphorylation of GSK3α and increased phosphorylation of GSK3β, whereas there was no difference between the haloperidol and the vehicle group. Our data suggest that different molecular pathways mediate the disturbances of glucose homeostasis induced by haloperidol and olanzapine with a direct effect of olanzapine on the insulin molecular pathway, possibly partly explaining the stronger propensity of olanzapine for adverse effects on glucose regulation when compared with haloperidol in clinical settings.
机译:抗精神病药引起的葡萄糖稳态紊乱的发病机制仍不清楚。内脏肥胖增加是一种可能的中介机制。这项研究的目的是在动物模型中研究奥氮平和氟哌啶醇对内脏脂肪沉积(使用磁共振成像(MRI))和胰岛素信号通路关键节点(IRS2肝蛋白水平)的不同作用(胰岛素受体底物2),GSK3α(糖原合酶激酶-3α),GSK3β,GSK3α-Ser21,GSK3β-Ser9)。为此,我们研究了用媒介物(n = 8),氟哌啶醇(每天2?mg?kg ?1 ,n = 8)或奥氮平(10?mg)治疗的雄性Sprague-Dawley大鼠。使用渗透性微型泵每天8kg,每天8kg。氟哌啶醇组的内脏脂肪百分比高于奥氮平组和赋形剂组,而奥氮平和赋形剂组之间无差异。就胰岛素信号传导途径而言,奥氮平组的IRS2水平显着降低,GSK3α的磷酸化降低,GSK3β的磷酸化升高,而氟哌啶醇与赋形剂组之间没有差异。我们的数据表明,不同的分子途径介导氟哌啶醇和奥氮平引起的葡萄糖稳态的紊乱,其中奥氮平对胰岛素分子途径具有直接作用,这可能部分解释了奥氮平在临床上与氟哌啶醇相比对葡萄糖调节的不良作用的倾向更强。设置。

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