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首页> 外文期刊>The Journal of Experimental Biology >CRF treatment induces a readjustment in glucosensing capacity in the hypothalamus and hindbrain of rainbow trout
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CRF treatment induces a readjustment in glucosensing capacity in the hypothalamus and hindbrain of rainbow trout

机译:CRF治疗可引起虹鳟下丘脑和后脑葡萄糖调节能力的重新调节

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Stress conditions induced in rainbow trout a readjustment in the glucosensing response of the hypothalamus and hindbrain such that those sensors did not respond properly to changes in glucose levels, as demonstrated in previous studies. To evaluate the hypothesis that corticotropin-releasing factor (CRF) could be involved in that response, we have incubated the hypothalamus and hindbrain of rainbow trout at different glucose concentrations in the presence of different concentrations of CRF. Under those conditions, we evaluated whether parameters related to glucosensing [the levels of glucose, glycogen and glucose 6-phosphate, the activities of glucokinase (GK), glycogen synthase (GSase) and pyruvate kinase (PK), and mRNA abundance of transcripts for GK, Glut2, Kir.6-like and sulfonylurea receptor (SUR)-like] are modified in the presence of CRF in a way comparable to that observed under stress conditions. We obtained evidence allowing us to suggest that CRF could be involved in the interaction between stress and glucosensing as CRF treatment of the hypothalamus and hindbrain in vitro induced a readjustment in glucosensing parameters similar to that previously observed under stress conditions in vivo. We had also previously demonstrated that stress elicits alterations in food intake in parallel with the readjustment of glucosensing systems. Here, we provide evidence that the mRNA abundance of several of the neuropeptides involved in the regulation of food intake, such as neuropeptide Y (NPY) or cocaine-and amphetamine-regulated transcript (CART), is affected by CRF treatment, in such a way that their expression does not respond to changes in glucose levels in the same way as controls, allowing us to suggest that the food intake response that is integrated by changes in those peptides and known to be reduced by stress could be also mediated by CRF action in glucosensing areas.
机译:如先前的研究所示,虹鳟鱼诱发的应激条件会重新调节下丘脑和后脑的葡萄糖调节反应,从而使这些传感器无法对葡萄糖水平的变化做出适当的反应。为了评估促肾上腺皮质激素释放因子(CRF)可能参与该反应的假设,我们在存在不同浓度的CRF的情况下,以不同的葡萄糖浓度孵育了虹鳟的下丘脑和后脑。在这些条件下,我们评估了是否与以下参数有关的葡萄糖化[葡萄糖,糖原和6-磷酸葡萄糖的水平,葡萄糖激酶(GK),糖原合酶(GSase)和丙酮酸激酶(PK)的活性以及转录本的mRNA丰度GK,Glut2,Kir.6-like和磺酰脲受体(SUR)-like]在CRF存在下以与在压力条件下观察到的方法相当的方式修饰。我们获得的证据允许我们建议CRF可能参与应激和葡萄糖代谢之间的相互作用,因为CRF治疗下丘脑和后脑在体外引起葡萄糖代谢参数的重新调整,类似于先前在体内应激条件下观察到的。先前我们还证明了压力会导致食物摄入量的变化,同时葡萄糖调节系统也会重新调整。在这里,我们提供证据表明,在这种饮食中,一些与食物摄入有关的神经肽,例如神经肽Y(NPY)或可卡因和苯丙胺调节转录本(CART)的mRNA丰度受到CRF处理的影响。它们的表达不像对照组一样对葡萄糖水平的变化无反应的方式,使我们建议,那些肽的变化所整合的,已知因压力而减少的食物摄入反应也可能由CRF作用介导。在糖化区域。

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