首页> 美国卫生研究院文献>Frontiers in Cellular Neuroscience >Activation of CRH receptor type 1 expressed on glutamatergic neurons increases excitability of CA1 pyramidal neurons by the modulation of voltage-gated ion channels
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Activation of CRH receptor type 1 expressed on glutamatergic neurons increases excitability of CA1 pyramidal neurons by the modulation of voltage-gated ion channels

机译:在谷氨酸能神经元上表达的CRH 1型受体的激活通过电压门控离子通道的调节增加了CA1锥体神经元的兴奋性

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摘要

Corticotropin-releasing hormone (CRH) plays an important role in a substantial number of patients with stress-related mental disorders, such as anxiety disorders and depression. CRH has been shown to increase neuronal excitability in the hippocampus, but the underlying mechanisms are poorly understood. The effects of CRH on neuronal excitability were investigated in acute hippocampal brain slices. Population spikes (PS) and field excitatory postsynaptic potentials (fEPSP) were evoked by stimulating Schaffer-collaterals and recorded simultaneously from the somatic and dendritic region of CA1 pyramidal neurons. CRH was found to increase PS amplitudes (mean ± Standard error of the mean; 231.8 ± 31.2% of control; n = 10) while neither affecting fEPSPs (104.3 ± 4.2%; n = 10) nor long-term potentiation (LTP). However, when Schaffer-collaterals were excited via action potentials (APs) generated by stimulation of CA3 pyramidal neurons, CRH increased fEPSP amplitudes (119.8 ± 3.6%; n = 8) and the magnitude of LTP in the CA1 region. Experiments in slices from transgenic mice revealed that the effect on PS amplitude is mediated exclusively by CRH receptor 1 (CRHR1) expressed on glutamatergic neurons. The effects of CRH on PS were dependent on phosphatase-2B, L- and T-type calcium channels and voltage-gated potassium channels but independent on intracellular Ca2+-elevation. In patch-clamp experiments, CRH increased the frequency and decay times of APs and decreased currents through A-type and delayed-rectifier potassium channels. These results suggest that CRH does not affect synaptic transmission per se, but modulates voltage-gated ion currents important for the generation of APs and hence elevates by this route overall neuronal activity.
机译:促肾上腺皮质激素释放激素(CRH)在许多患有与压力有关的精神疾病(如焦虑症和抑郁症)的患者中起重要作用。已经表明,CRH可以增加海马神经元的兴奋性,但其潜在机制尚不清楚。在急性海马脑片中研究了CRH对神经元兴奋性的影响。通过刺激Schaffer侧支诱发群体高峰(PS)和场兴奋性突触后电位(fEPSP),并从CA1锥体神经元的体细胞和树突区域同时记录。发现CRH会增加PS振幅(均值±平均值标准误差;对照组的231.8±31.2%; n = 10),而不会影响fEPSP(104.3±4.2%; n = 10)或长期增强(LTP)。但是,当通过刺激CA3锥体神经元而产生的动作电位(AP)激发Schaffer侧支时,CRH会增加fEPSP幅度(119.8±3.6%; n = 8)和CA1区LTP的大小。对来自转基因小鼠的切片进行的实验表明,对PS振幅的影响完全由在谷氨酸能神经元上表达的CRH受体1(CRHR1)介导。 CRH对PS的影响取决于磷酸酶2B,L和T型钙通道和电压门控钾通道,而与细胞内Ca 2 + 升高无关。在膜片钳实验中,CRH增加了AP的频率和衰减时间,并减少了通过A型和延迟整流器钾通道的电流。这些结果表明,CRH本身并不影响突触传递,但会调节电压门控离子电流,这些电流对AP的产生很重要,因此可通过这种途径提高总体神经元活性。

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