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Dendritically released transmitters cooperate via autocrine and retrograde actions to inhibit afferent excitation in rat brain

机译:树突状释放的递质通过自分泌和逆行作用协同抑制大鼠大脑的传入兴奋

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摘要

Oxytocin is released from supraoptic magnocellular neurones and is thought to act at presynaptic receptors to inhibit transmitter release. We now show that this effect is mediated by endocannabinoids, but that oxytocin nonetheless plays an important role in endocannabinoid signalling. WIN55,212-2, a cannabinoid receptor agonist, mimicked the action of oxytocin and occluded oxytocin-induced presynaptic inhibition. The cannabinoid action is at the presynaptic terminal as shown by alteration in paired pulse ratio, a reduction in miniature EPSC frequency and immunohistochemical localization of CB1 receptors on presynaptic terminals. AM251, a CB1 receptor antagonist, blocked both the WIN55,212-2 and the oxytocin-induced presynaptic inhibition of EPSCs. Depolarization of postsynaptic magnocellular neurones (which contain fatty acid amide hydrolase, a cannabinoid catabolic enzyme) caused a transient inhibition of EPSCs that could be blocked by both the AM251 and Manning compound, an oxytocin/vasopressin receptor antagonist. This indicates that somatodendritic peptide release and action on previously identified autoreceptors facilitates the release of endocannabinoids that act as mediators of presynaptic inhibition.
机译:催产素从视上的大细胞神经元释放,并被认为在突触前受体上起作用以抑制递质的释放。现在我们显示该作用是由内源性大麻素介导的,但是催产素在内源性大麻素的信号传导中仍然起着重要的作用。 WIN55,212-2是一种大麻素受体激动剂,模仿催产素的作用和封闭的催产素诱导的突触前抑制作用。大麻素的作用在突触前末端,如配对脉冲比率的变化,微型EPSC频率的降低和突触前末端CB1受体的免疫组织化学定位所示。 C251受体拮抗剂AM251阻断WIN55,212-2和催产素诱导的EPSC突触前抑制。突触后大细胞神经元(包含脂肪酸酰胺水解酶,一种大麻素分解代谢酶)的去极化作用引起EPSC的瞬时抑制,该抑制可能被AM251和催产素/加压素受体拮抗剂曼宁化合物所阻断。这表明体树突状肽的释放和对先前确定的自体受体的作用促进了释放突触前抑制介质的内源性大麻素。

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