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Ghrelin in the lateral parabrachial nucleus influences the excitability of glucosensing neurons, increases food intake and body weight

机译:侧桥核中的Ghrelin影响葡萄糖胶神经元的兴奋性,增加食物摄入和体重

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Ghrelin plays a pivotal role in the regulation of food intake, body weight and energy metabolism. However, these effects of ghrelin in the lateral parabrachial nucleus (LPBN) are unexplored. C57BL/6J mice and GHSR~(?/?) mice were implanted with cannula above the right LPBN and ghrelin was microinjected via the cannula to investigate effect of ghrelin in the LPBN. In vivo electrophysiological technique was used to record LPBN glucose-sensitive neurons to explore potential udnderlying mechanisms. Microinjection of ghrelin in LPBN significantly increased food intake in the first 3 h, while such effect was blocked by [D-Lys3]-GHRP-6 and abolished in GHSR~(?/?) mice. LPBN ghrelin microinjection also significantly increased the firing rate of glucose-excited (GE) neurons and decreased the firing rate of glucose-inhibited (GI) neurons. Additionally, LPBN ghrelin microinjection also significantly increased c-fos expression. Chronic ghrelin administration in the LPBN resulted in significantly increased body weight gain. Meanwhile, no significant changes were observed in both mRNA and protein expression levels of UCP-1 in BAT. These results demonstrated that microinjection of ghrelin in LPBN could increase food intake through the interaction with growth hormone secretagogue receptor (GHSR) in C57BL/6J mice, and its chronic administration could also increase body weight gain. These effects might be associated with altered firing rate in the GE and GI neurons.
机译:Ghrelin在调节食物摄入量,体重和能量新陈代谢的调节中起着枢轴作用。然而,Ghrelin在侧桥核(LPBN)中的这些效果是未探索的。将C57BL / 6J小鼠和GHSR〜(?/α/α)小鼠植入右侧LPBN上方的套管,通过套管进行微调,以研究GHRELIN在LPBN中的作用。在体内电生理技术用于记录LPBN葡萄糖敏感性神经元以探索潜在的UDNDering机制。 LPBN中Ghrelin的显微注射显着增加了前3小时的食物摄入量显着增加,而这种效果通过[D-Lys3] -GHRP-6阻断并废除在GHSR〜(β/α)小鼠中。 LPBN Ghrelin显微注射也显着提高了葡萄糖激发(GE)神经元的烧制率,并降低了葡萄糖抑制(GI)神经元的烧制率。另外,LPBN Ghrelin显微注射也显着增加了C-FOS表达。 LPBN中的慢性Ghrelin管理导致体重增加显着增加。同时,在蝙蝠中,UCP-1的mRNA和蛋白表达水平没有观察到显着变化。这些结果表明,LPBN中Ghrelin的显微注射可以通过与C57BL / 6J小鼠的生长激素促血清腺受体(GHSR)的相互作用增加食物摄取,其慢性施用也可以增加体重增加。这些效果可能与Ge和Gi神经元中的烧制率改变相关。

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