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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Lateral but not Medial Hypothalamic AMPK Activation Occurs at the Hypoglycemic Nadir in Insulin-injected Male Rats: Impact of Caudal Dorsomedial Hindbrain Catecholamine Signaling
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Lateral but not Medial Hypothalamic AMPK Activation Occurs at the Hypoglycemic Nadir in Insulin-injected Male Rats: Impact of Caudal Dorsomedial Hindbrain Catecholamine Signaling

机译:在胰岛素注射的雄性大鼠的低血糖Nadir中发生横向但不是内外下丘脑AMPK活化:尾部背叛的后脑摄入信号传导的影响

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摘要

The hypothalamic energy sensor adenosine 5'-monophosphate-activated protein kinase (AMPK), an important regulator of counter-regulatory responses to hypoglycemia, responds to pharmacological manipulation of hindbrain AMPK activity. Dorsomedial hindbrain A2 noradrenergic neurons express hypoglycemia-sensitive metabolo-sensory biomarkers, including AMPK. Here, adult male rats were pretreated by intra-caudal fourth ventricular administration of the selective neurotoxin 6-hydroxydopamine (6-OHDA) to determine if catecholamine signaling from the aforesaid site governs hypothalamic AMPK activation during insulin-induced hypoglycemia (IIH). Micropunched arcuate (ARH), ventromedial (VMH), paraventricular (PVH), dorsomedial (DMH) nuclei and lateral hypothalamic area (LHA) tissues were obtained at the neutral protamine Hagedorn insulin-induced hypoglycemic nadir, coincident with A2 AMPK activation, for Western blot analysis of AMPK, phospho-AMPK (pAMPK), and relevant metabolic neuropeptides. ARH, VMH, LHA, and DMH norepinephrine levels were altered according to insulin dose; 6-OHDA-mediated reversal of these responses was site-specific. IIH elevated LHA and reduced VMH pAMPK protein, profiles that were respectively unchanged or increased by 6-OHDA. PVH and ARH pAMPK was resistant to IIH, but augmented in ARH of neurotoxin-plus insulin-treated rats. ARH neuropeptide Y (NPY) and pro-opiomelanocortin (POMC) proteins were correspondingly increased or refractory to IIH; 6-OHDA pretreatment normalized NPY and elevated POMC expression after insulin injection. Results demonstrate site-specific bi-directional adjustments in hypothalamic AMPK reactivity to hypoglycemia. Intensification of ARH/VMH pAMPK by 6-OHDA implies dorsomedial hindbrain improvement of energy balance in those sites during IIH. Neurotoxin-mediated augmentation versus suppression of basal catabolic (ARH POMC/VMH steroidogenic factor-1) or IIH-associated anabolic (ARH NPY) neuropeptide profiles, respectively, may involve local AMPK-dependent against independent mechanisms. (C) 2018 IBRO. Published by Elsevier Ltd. All rights reserved.
机译:下丘脑能量传感器腺苷5'-一磷酸活性蛋白激酶激酶(AMPK)是对低血糖的反血糖反应的重要调节因子,反应了后脑AMPK活性的药理操纵。背染子痫A2诺拉肾上腺素能神经元表达低血糖敏感的代谢感觉生物标志物,包括安培。这里,通过尾部的第四节室内施用选择性神经毒素6-羟基多戊多胺(6-OHDA)预处理成年雄性大鼠,以确定来自上述部位的儿茶酚胺信号,治理胰岛素诱导的低血糖期间的下丘脑AMPK活化(IIH)。在中性的Protamine Hagageorn胰岛素诱导的低血糖Nadir中获得微型弓形弧形(ARH),腹部(VMH),椎间盘(VMH),背侧(DMH)核和侧面下丘脑区域(LHA)组织,与A2 AMPK活化重合,为西方AMPK,磷酸盐 - 安培(Pamps)和相关代谢神经肽的印迹分析。根据胰岛素剂量改变ARH,VMH,LHA和DMH NorePinephrine水平; 6-OHDA介导的这些反应的逆转是特异性的。 IIH升高的LHA和降低的VMH Pamps蛋白,分别不变或增加6-OHDA的曲线。 PVH和ARH Pampk耐受IIH,但在神经毒素 - 加胰岛素处理的大鼠的ARH中增强。 ARH神经肽Y(NPY)和Pro-Omiomelanocortin(POMC)蛋白相应地增加或难以IIH; 6-OHDA预处理在胰岛素注射后标准化NPY和升高的POMC表达。结果展示了丘脑AMPK反应性对低血糖的特异性双向调整。 ARH / VMH PAMPK的强化6-OHDA意味着在IIH期间,这些位点中的能量平衡的背叛改善。神经毒素介导的增强与基础分解代谢(ARH POMC / VMH类固醇类别-1)或IIH相关的合成代谢(ARH NPY)神经肽谱的增强相比,可以涉及局部的AMPK依赖于独立机制。 (c)2018年IBRO。 elsevier有限公司出版。保留所有权利。

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