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Hindbrain dorsal vagal complex AMPK controls hypothalamic gluco-regulatory transmitter and counter-regulatory hormone responses to hypoglycemia

机译:后脑背敷迷你复合AMPK控制下丘脑血糖调节发射器和对低血糖的反应反应

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Pharmacologic activation of the hindbrain dorsal vagal complex energy sensor 5'-adenosine monophosphate-activated protein kinase (AMPK) causes site-specific adjustments in hypothalamic AMPK activity. DVC A2 noradrenergic neurons are a likely source of metabolo-sensory cues to downstream network components as they express substrate fuel-sensitive AMPK. This study investigated the hypothesis that DVC AMPK controls hypothalamic sensor, metabolic effector transmitter, and counter-regulatory hormone responses to insulin-induced hypoglycemia. Male rats were injected into the caudal fourth ventricle with the AMPK inhibitor compound C (Ccor vehicle before hypoglycemia. Arcuate (ARH), ventromedial (VMN), and dorsomedial (DMN) nuclei and lateral hypothalamic area (LHA) were micropunch-dissected for norepinephrine ELISA and Western blot analyses. Hypoglycemic stimulation of norepinephrine activity in each site was impeded by compound C. Hypoglycemia caused drug-revocable (ARH) or-refractory (VMN, DMN) reductions in AMPK, alongside hind brain AMPK-dependent augmentation of phospho-AMPK expression in each location. Compound C prevented hypoglycemic augmentation of gluco-stimulatory ARH neuropeptide Y, VMN neuronal nitric oxide synthase, and LHA orexin-A expression, while hypoglycemic suppression of the catabolic neuron protein markers ARH proopiomelanocortin and VMN glutamate decarboxylase(65/67) was respectively averted or unaffected by drug treatment. DMN RFamide-related peptide-1 and-3 profiles were correspondingly amplified or suppressed hindbrain AMPK-reliant mechanisms during hypoglycemia. Results show that DVC AMPK is required for hypoglycemic intensification of norepinephrine activity in characterized hypothalamic gluco-regulatory structures, and that this sensor regulates AMPK activation and metabolic effector transmission in those sites.
机译:药理学活化的后褐色背部迷住能量传感器5'-腺苷一代磷酸盐活化蛋白激酶(AMPK)导致下丘脑AMPK活性的特异性调整。 DVC A2诺拉肾上腺素神经元是对下游网络组件的代谢感觉线索的可能源,因为它们表达衬底燃料敏感的AMPK。本研究调查了DVC AMPK对胰岛素诱导的低血糖对胰岛素诱导的低血糖反应进行下丘脑传感器的假设。用AMPK抑制剂化合物C(低血糖血症前Ccor载体,将雄性大鼠注射到尾部第四心室中。弓形(ARH),口腔内(VMN)和背侧(DMN)核(DMN)核(LHA)被微单坐在去甲肾上腺素中ELISA和Western印迹分析。通过化合物C.低血糖导致AMPK中的药物可迁移(ARH)或难治(VMN,DMN)减少,对磷酸中的药物可迁移(ARH)或难治(VMN,DMN)减少而阻抗。每个位置的AMPK表达。化合物C预防胰血糖刺激ARH神经肽Y,VMN神经元一氧化氮合酶和表达式的低血糖增强,而降血糖抑制分解代谢神经元蛋白标志物ARH ProOpioMelanocortin和VMN谷氨酸脱羧酶(65 / 67)分别被药物治疗倾向或未受影响。DMN RFamide相关的肽-1和-3曲线相应地扩增或在低血糖期间抑制了后脑AMPK的依赖机制。结果表明,在表征下丘脑调节结构中的去伐肾上腺素活性的降血糖增强需要DVC AMPK,并且该传感器调节这些位点中的AMPK激活和代谢效应传递。

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