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食欲肽通过突触后膜去极化和增强谷氨酸能传入纤维来增强视前正中核神经元的兴奋性。

Orexin peptides enhance median preoptic nucleus neuronal excitability via postsynaptic membrane depolarization and enhancement of glutamatergic afferents.

作者信息

Kolaj M, Coderre E, Renaud L P

机构信息

Neuroscience Program, University of Ottawa, Ottawa, Ontario, Canada K1Y 4E9.

出版信息

Neuroscience. 2008 Sep 9;155(4):1212-20. doi: 10.1016/j.neuroscience.2008.06.059. Epub 2008 Jul 4.

Abstract

Subpopulations of neurons in the median preoptic nucleus (MnPO) located within the lamina terminalis contribute to thermoregulatory, cardiovascular and hydromineral homeostasis, and sleep-promotion. MnPO is innervated by lateral hypothalamic neurons that synthesize and secrete the arousal-promoting and excitatory orexin (hypocretin) neuropeptides. To evaluate the hypothesis that orexins modulate the excitability of MnPO neurons, we used patch-clamp recording techniques applied in rat brain slice preparations to assess the effects of exogenously applied orexin A and orexin B peptides on their intrinsic and synaptic properties. Whole cell recordings under current-clamp mode revealed that 11/15 tested MnPO neurons responded similarly to either orexin A or B (500-1000 nM) with a slowly rising, prolonged (10-15 min) and reversible membrane depolarization. Under voltage-clamp mode, orexin applications induced a tetrodotoxin-resistant inward current of -7.2+/-1.6 pA, indicating a direct (postsynaptic) activation, with a time course similar to the observed membrane depolarization. The orexin-induced responses in 4/7 neurons were associated with a significant decrease in membrane conductance and the net orexin-induced current that reversed at -99+/-5 mV, suggesting closure of potassium channels. Orexins did not attenuate the properties of excitatory (n=4) or inhibitory (n=7) postsynaptic currents evoked by subfornical organ stimulation. By contrast, orexins applications induce a significant increase in both frequency and amplitude of spontaneous glutamatergic postsynaptic currents (5/7 cells) but had no influence on spontaneous GABAergic currents (6/6 cells). Thus, in addition to a direct postsynaptic receptor-mediated excitation, orexins can also increase the excitability of MnPO neurons via increasing their excitatory inputs, presumably through an orexin receptor-mediated excitation of local glutamatergic neurons whose axons project to MnPO neurons.

摘要

位于终板层内的视前正中核(MnPO)中的神经元亚群,参与体温调节、心血管及水电解质平衡的维持,以及促进睡眠。MnPO接受来自下丘脑外侧神经元的神经支配,这些神经元合成并分泌促进觉醒和兴奋的食欲素(下丘脑泌素)神经肽。为了评估食欲素调节MnPO神经元兴奋性的假说,我们运用膜片钳记录技术,在大鼠脑片标本上,评估外源性应用食欲素A和食欲素B肽对其内在特性和突触特性的影响。在电流钳模式下的全细胞记录显示,15个被测试的MnPO神经元中有11个对食欲素A或B(500 - 1000 nM)的反应相似,表现为膜去极化缓慢上升、持续时间长(10 - 15分钟)且可逆。在电压钳模式下,应用食欲素可诱导产生-7.2±1.6 pA的河豚毒素抗性内向电流,表明是直接(突触后)激活,其时程与观察到的膜去极化相似。在7个神经元中的4个中,食欲素诱导的反应与膜电导显著降低以及在-99±5 mV处反转的净食欲素诱导电流有关,提示钾通道关闭。食欲素并未减弱穹窿下器官刺激诱发的兴奋性(n = 4)或抑制性(n = 7)突触后电流的特性。相比之下,应用食欲素可使自发谷氨酸能突触后电流的频率和幅度均显著增加(5/7细胞),但对自发GABA能电流无影响(6/6细胞)。因此,除了直接的突触后受体介导的兴奋作用外,食欲素还可通过增加其兴奋性输入来提高MnPO神经元的兴奋性,推测是通过食欲素受体介导对局部谷氨酸能神经元的兴奋,这些谷氨酸能神经元的轴突投射到MnPO神经元。

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