Department of Clinical Hematology, Medical College, Qingdao University, Qingdao, China.
Department of Special Medicine, Medical College, Qingdao University, Qingdao, China.
Biomed Res Int. 2017;2017:2034691. doi: 10.1155/2017/2034691. Epub 2017 Nov 26.
Alpha-melanocyte-stimulating hormone (-MSH) is processed from proopiomelanocortin (POMC) and acts on the melanocortin receptors, MC3 and MC4. -MSH plays a key role in energy homeostasis. In the present study, to shed light on the mechanisms by which -MSH exerts its anorectic effects, extracellular neuronal activity was recorded in the hypothalamus and the dorsal vagal complex (DVC) of anesthetized rats. We examined the impact of -MSH on glucose-sensing neurons and gastric distension (GD) sensitive neurons. In the lateral hypothalamus (LHA), -MSH inhibited 75.0% of the glucose-inhibited (GI) neurons. In the ventromedial nucleus (VMN), most glucose-sensitive neurons were glucose-excited (GE) neurons, which were mainly activated by -MSH. In the paraventricular nucleus (PVN), -MSH suppressed the majority of GI neurons and excited most GE neurons. In the DVC, among the 20 GI neurons examined for a response to -MSH, 1 was activated, 16 were depressed, and 3 failed to respond. Nineteen of 24 GE neurons were activated by -MSH administration. Additionally, among the 42 DVC neurons examined for responses to GD, 23 were excited (GD-EXC) and 19 were inhibited (GD-INH). Fifteen of 20 GD-EXC neurons were excited, whereas 11 out of 14 GD-INH neurons were suppressed by -MSH. All these responses were abolished by pretreatment with the MC3/4R antagonist, SHU9119. In conclusion, the activity of glucose-sensitive neurons and GD-sensitive neurons in the hypothalamus and DVC can be modulated by -MSH.
α-黑素细胞刺激素(-MSH)由前阿黑皮素原(POMC)加工而成,作用于黑素皮质素受体 MC3 和 MC4。-MSH 在能量平衡中发挥关键作用。在本研究中,为了阐明 -MSH 发挥其厌食作用的机制,我们记录了麻醉大鼠下丘脑和背侧迷走复合体(DVC)中的神经元细胞外活动。我们研究了 -MSH 对葡萄糖敏感神经元和胃扩张(GD)敏感神经元的影响。在外侧下丘脑(LHA)中,-MSH 抑制了 75.0%的葡萄糖抑制(GI)神经元。在腹内侧核(VMN)中,大多数葡萄糖敏感神经元是葡萄糖兴奋(GE)神经元,主要被 -MSH 激活。在室旁核(PVN)中,-MSH 抑制了大多数 GI 神经元并兴奋了大多数 GE 神经元。在 DVC 中,在 20 个接受 -MSH 反应的 GI 神经元中,有 1 个被激活,16 个被抑制,3 个没有反应。在接受 -MSH 给药的 24 个 GE 神经元中,有 19 个被激活。此外,在 42 个接受 GD 反应的 DVC 神经元中,有 23 个被兴奋(GD-EXC),19 个被抑制(GD-INH)。在 20 个 GD-EXC 神经元中,有 15 个被兴奋,而在 14 个 GD-INH 神经元中,有 11 个被抑制。所有这些反应均被 MC3/4R 拮抗剂 SHU9119 预处理所消除。综上所述,下丘脑和 DVC 中的葡萄糖敏感神经元和 GD 敏感神经元的活动可以被 -MSH 调节。