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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Arginine vasopressin enhances GABAergic inhibition of cardiac parasympathetic neurons in the nucleus ambiguus.
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Arginine vasopressin enhances GABAergic inhibition of cardiac parasympathetic neurons in the nucleus ambiguus.

机译:精氨酸加压素增强歧义核中心脏副交感神经元的GABA能抑制。

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摘要

Previous studies have shown that arginine vasopressin is an important neuropeptide that can modulate the reflex control of blood pressure and heart rate. The nucleus ambiguus, where cardiac parasympathetic neurons are located, receives dense arginine vasopressin projections. However the mechanisms by which arginine vasopressin alters cardiac parasympathetic activity are unknown. We tested the hypothesis that arginine vasopressin can alter the activity of cardiac parasympathetic neurons by altering the spontaneous GABAergic input to these neurons. Experiments were conducted using whole cell patch clamp recordings of cardiac parasympathetic neurons in an in vitro slice preparation in rats. The results of this study demonstrate that arginine vasopressin increases the frequency and amplitude of GABAergic inhibitory post-synaptic currents in cardiac parasympathetic neurons. Arginine vasopressin did not alter the GABAergic currents evoked by exogenous application of GABA. Similarly, in the presence of tetrodotoxin, arginine vasopressin did not alter the frequency, amplitude or decay time of GABAergic miniature synaptic events evoked by high osmolarity. These results indicate that arginine vasopressin likely acts on neurons precedent to cardiac parasympathetic neurons and that arginine vasopressin likely acts not at the synaptic terminal but at the soma or dendrites of the precedent neuron. Oxytocin and agonists for the V(2)-arginine vasopressin and V(1b)-arginine vasopressin receptors had no effect. By contrast, the arginine vasopressin-evoked responses were completely abolished by a selective V(1a)-arginine vasopressin receptor antagonist indicating arginine vasopressin responses are mediated by V(1a)-arginine vasopressin receptors.We conclude that the V(1a)-arginine vasopressin receptor-mediated increase in frequency and amplitude of inhibitory GABAergic activity to cardiac parasympathetic neurons may be at least one mechanism by which central arginine vasopressin may increase heart rate and inhibit reflex bradycardia.
机译:先前的研究表明,精氨酸加压素是一种重要的神经肽,可以调节血压和心率的反射控制。心脏副交感神经元所处的核模糊接受密集的精氨酸加压素投射。然而,精氨酸加压素改变心脏副交感神经活性的机制尚不清楚。我们测试了精氨酸加压素可以通过改变自发性对这些神经元的GABA能输入来改变心脏副交感神经元活动的假设。在大鼠体外切片制备中,使用心脏副交感神经元的全细胞膜片钳记录来进行实验。这项研究的结果表明,精氨酸加压素会增加心脏副交感神经元中GABA能抑制突触后电流的频率和幅度。精氨酸加压素并未改变外源性应用GABA引起的GABA能电流。同样,在河豚毒素存在下,精氨酸加压素也不会改变高渗透压引起的GABA能微型突触事件的频率,幅度或衰减时间。这些结果表明,精氨酸加压素可能作用于心脏副交感神经元之前的神经元,而精氨酸加压素可能不作用于突触末梢,而作用于先前神经元的体或树突。催产素和激动剂的V(2)-精氨酸加压素和V(1b)-精氨酸加压素受体没有作用。相比之下,精氨酸加压素诱​​发的反应被选择性的V(1a)-精氨酸加压素受体拮抗剂完全消除,表明精氨酸加压素应答是由V(1a)-精氨酸加压素受体介导的。我们得出的结论是V(1a)-精氨酸加压素。加压素受体介导的对心脏副交感神经元抑制性GABA能的频率和幅度的增加可能是中枢精氨酸加压素可能增加心率并抑制反射性心动过缓的至少一种机制。

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