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首页> 外文期刊>Brain research bulletin >Estradiol regulation of hypothalamic astrocyte adenosine 5 '-monophosphate-activated protein kinase activity: Role of hindbrain catecholamine signaling
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Estradiol regulation of hypothalamic astrocyte adenosine 5 '-monophosphate-activated protein kinase activity: Role of hindbrain catecholamine signaling

机译:雌二醇调节下丘脑星形细胞腺苷5'-单磷酸激活的蛋白激酶活性:后脑儿茶酚胺信号传导的作用

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Recent work challenges the conventional notion that metabolic monitoring in the brain is the exclusive function of neurons. This study investigated the hypothesis that hypothalamic astrocytes express the ultra-sensitive energy gauge adenosine 5'-monophosphate-activated protein kinase (AMPK), and that the ovarian hormone estradiol (E) controls activation of this sensor by insulin-induced hypoglycemia (IIH). E- or oil (O)-implanted ovariectomized (OVX) rats were pretreated by caudal fourth ventricular administration of the catecholamine neurotoxin 6-hydroxydopamine (6-OHDA) prior to sc insulin or vehicle injection. Individual astrocytes identified in situ by glial fibrillary acidic protein immunolabeling were laser-microdissected from the ventromedial (VMH), arcuate (ARH), and paraventricular (PVH) nuclei and the lateral hypothalamic area (LHA), and pooled within each site for Western blot analysis of AMPK and phosphoAMPK (pAMPK) protein expression. In the VMH, baseline astrocyte AMPK and pAMPK levels were respectively increased or decreased in OVX+ E versus OVX+ O; these profiles did not differ between E and O rats in other hypothalamic loci. In E animals, astrocyte AMPK protein was reduced [VMH] or augmented [PVH; LHA] in response to either 6-OHDA or IIH. IIH increased astrocyte pAMPK expression in each structure in vehicle-, but not 6-OHDA-pretreated E rats. Results provide novel evidence for hypothalamic astrocyte AMPK expression and hindbrain catecholamine-dependent activation of this cell-specific sensor by hypoglycemia in the presence of estrogen. Further research is needed to determine the role of astrocyte AMPK in reactivity of these glia to metabolic imbalance and contribution to restoration of neuro-metabolic stability. (C) 2014 Elsevier Inc. All rights reserved.
机译:最近的工作挑战了传统观念,即大脑中的代谢监测是神经元的专有功能。这项研究调查了下丘脑星形胶质细胞表达超敏感能量表腺苷5'-单磷酸激活蛋白激酶(AMPK)的假设,而卵巢激素雌二醇(E)通过胰岛素诱导的低血糖(IIH)控制该传感器的激活的假设。在sc胰岛素或赋形剂注射之前,通过尾部第四脑室给予儿茶酚胺神经毒素6-羟基多巴胺(6-OHDA)预处理植入E-或油(O)的卵巢切除(OVX)大鼠。通过胶质原纤维酸性蛋白免疫标记原位鉴定的单个星形胶质细胞从腹膜(VMH),弓形(ARH)和脑室旁(PVH)核以及下丘脑外侧区域(LHA)进行激光显微切割,并汇集在每个部位内进行Western印迹AMPK和phosphoAMPK(pAMPK)蛋白表达分析。在VMH中,OVX + E与OVX + O相比,基线星形胶质细胞AMPK和pAMPK水平分别升高或降低。这些特征在其他下丘脑基因座的E和O大鼠之间没有差异。在E动物中,星形胶质细胞AMPK蛋白降低[VMH]或增强[PVH; LHA]响应6-OHDA或IIH。 IIH增加了载体(但未经过6-OHDA预处理)的E大鼠中每个结构中星形胶质细胞pAMPK的表达。结果为在雌激素存在下低血糖的下丘脑星形胶质细胞AMPK表达和该细胞特异性传感器的后脑儿茶酚胺依赖性激活提供了新的证据。需要进一步的研究来确定星形胶质细胞AMPK在这些神经胶质对代谢失衡的反应中的作用以及对神经代谢稳定性恢复的贡献。 (C)2014 Elsevier Inc.保留所有权利。

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