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Plasticity in the brainstem vagal circuits controlling gastric motor function triggered by corticotropin releasing factor

机译:促肾上腺皮质激素释放因子触发的控制胃运动功能的脑干迷走回路可塑性

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摘要

Stress impairs gastric emptying, reduces stomach compliance and induces early satiety via vagal actions. We have shown recently that the ability of the anti-stress neuropeptide oxytocin (OXT) to modulate vagal brainstem circuits undergoes short-term plasticity via alterations in cAMP levels subsequent to vagal afferent fibre-dependent activation of metabotropic glutamate receptors. The aim of the present study was to test the hypothesis that the OXT-induced gastric response undergoes plastic changes in the presence of the prototypical stress hormone, corticotropin releasing factor (CRF). Whole cell patch clamp recordings showed that CRF increased inhibitory GABAergic synaptic transmission to identified corpus-projecting dorsal motor nucleus of the vagus (DMV) neurones. In naive brainstem slices, OXT perfusion had no effect on inhibitory synaptic transmission; following exposure to CRF (and recovery from its actions), however, re-application of OXT inhibited GABAergic transmission in the majority of neurones tested. This uncovering of the OXT response was antagonized by pretreatment with protein kinase A or adenylate cyclase inhibitors, H89 and di-deoxyadenosine, respectively, indicating a cAMP-mediated mechanism. In naive animals, OXT microinjection in the dorsal vagal complex induced a NO-mediated corpus relaxation. Following CRF pretreatment, however, microinjection of OXT attenuated or, at times reversed, the gastric relaxation which was insensitive to l-NAME but was antagonized by pretreatment with a VIP antagonist. Immunohistochemical analyses of vagal motoneurones showed an increased number of oxytocin receptors present on GABAergic terminals of CRF-treated or stressed vs. naive rats. These results indicate that CRF alters vagal inhibitory circuits that uncover the ability of OXT to modulate GABAergic currents and modifies the gastric corpus motility response to OXT.
机译:压力会损害胃排空,降低胃顺应性并通过迷走动作引起早期饱腹感。我们最近显示,抗应激神经肽催产素(OXT)调节迷走性脑干回路的能力通过迷走神经传入纤维依赖代谢型谷氨酸受体的激活后cAMP水平的变化而经历了短期可塑性。本研究的目的是检验以下假设:在原型应激激素,促肾上腺皮质激素释放因子(CRF)存在下,OXT诱导的胃反应发生塑性变化。全细胞膜片钳记录表明,CRF增加了抑制性GABA能突触传递到迷走神经(DMV)神经元的已确定体部投射背运动核。在幼稚的脑干切片中,OXT灌注对抑制性突触传递没有影响。暴露于CRF(并从其作用中恢复)后,在大多数测试的神经元中,重新应用OXT抑制了GABA能传递。通过分别用蛋白激酶A或腺苷酸环化酶抑制剂H89和二脱氧腺苷进行预处理来拮抗OXT反应,从而表明了cAMP介导的机制。在幼稚动物中,迷走神经背侧复合物中的OXT显微注射诱导了NO介导的体松弛。但是,在进行CRF预处理后,OXT的显微注射减弱或有时逆转了对l-NAME不敏感但被VIP拮抗剂预处理所拮抗的胃松弛。迷走神经运动神经元的免疫组织化学分析显示,CRF治疗或应激幼鼠的GABA能端上存在催产素受体的数量增加。这些结果表明,CRF改变迷走神经抑制回路,从而揭示了OXT调节GABA能电流并改变胃体对OXT的反应性的能力。

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