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Somatodendritic secretion in oxytocin neurons is upregulated during the female reproductive cycle.在雌性生殖周期中,催产素神经元的树突体分泌上调。
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2
Oxytocin-induced postinhibitory rebound firing facilitates bursting activity in oxytocin neurons.催产素诱导的抑制后反弹放电促进了催产素神经元的爆发性活动。
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Milk ejection burst-like electrical activity evoked in supraoptic oxytocin neurons in slices from lactating rats.在哺乳期大鼠脑片的视上核催产素神经元中诱发的射乳样爆发式电活动。
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Autofeedback effects of progressively rising oxytocin concentrations on supraoptic oxytocin neuronal activity in slices from lactating rats.逐渐升高的催产素浓度对泌乳大鼠脑片视上核催产素神经元活动的自动反馈作用。
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Differential GABAA receptor clustering determines GABA synapse plasticity in rat oxytocin neurons around parturition and the onset of lactation.分娩前后及泌乳开始时大鼠催产素神经元中不同的GABAA受体聚集决定GABA突触可塑性。
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Local Corticotropin-Releasing Factor Signaling in the Hypothalamic Paraventricular Nucleus.下丘脑室旁核局部促肾上腺皮质素释放因子信号转导。
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Multiple signalling modalities mediated by dendritic exocytosis of oxytocin and vasopressin.由催产素和加压素的树突状胞吐作用介导的多种信号传导方式。
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Dendrodendritic inhibition through reversal of dopamine transport.通过多巴胺转运逆转实现树突-树突抑制。
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Control of glutamate clearance and synaptic efficacy by glial coverage of neurons.通过神经元的胶质细胞覆盖来控制谷氨酸清除和突触效能。
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Oxytocin retrogradely inhibits evoked, but not miniature, EPSCs in the rat supraoptic nucleus: role of N- and P/Q-type calcium channels.催产素逆行抑制大鼠视上核中诱发的而非微小的兴奋性突触后电流:N型和P/Q型钙通道的作用
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Serotonin 5-HT(2) receptors activate local GABA inhibitory inputs to serotonergic neurons of the dorsal raphe nucleus.血清素5-HT(2)受体激活对中缝背核5-羟色胺能神经元的局部γ-氨基丁酸抑制性输入。
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Long-term plasticity of postsynaptic GABAA-receptor function in the adult brain: insights from the oxytocin neurone.成年大脑中突触后GABAA受体功能的长期可塑性:来自催产素神经元的见解
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Progesterone-metabolite prevents protein kinase C-dependent modulation of gamma-aminobutyric acid type A receptors in oxytocin neurons.孕酮代谢物可防止蛋白激酶C对催产素神经元中γ-氨基丁酸A型受体的依赖性调节。
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在雌性生殖周期中,催产素神经元的树突体分泌上调。

Somatodendritic secretion in oxytocin neurons is upregulated during the female reproductive cycle.

作者信息

de Kock Christiaan P J, Wierda Keimpe D B, Bosman Laurens W J, Min Rogier, Koksma Jan-Jurjen, Mansvelder Huibert D, Verhage Matthijs, Brussaard Arjen B

机构信息

Department of Experimental Neurophysiology, Center for Neurogenomics and Cognitive Research, Vrije Universiteit Amsterdam, The Netherlands.

出版信息

J Neurosci. 2003 Apr 1;23(7):2726-34. doi: 10.1523/JNEUROSCI.23-07-02726.2003.

DOI:10.1523/JNEUROSCI.23-07-02726.2003
PMID:12684458
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6742088/
Abstract

During the female reproductive cycle, hypothalamic oxytocin (OT) neurons undergo sharp changes in excitability. In lactating mammals, bursts of electrical activity of OT neurons result in the release of large amounts of OT in the bloodstream, which causes milk ejection. One hypothesis is that OT neurons regulate their own firing activity and that of nearby OT neurons by somatodendritic release of OT. In this study, we show that OT neuron activity strongly reduces inhibitory synaptic transmission to these neurons. This effect is blocked by antagonists of both adenosine and OT receptors and is mimicked by OT application. Inhibition of soluble N-ethylmaleimide-sensitive factor attachment protein receptor complex formation by tetanus toxin completely blocked the stimulation-induced reduction in inhibitory input, as did the calcium chelator BAPTA. During lactation, the readily releasable pool of secretory vesicles in OT cell bodies was doubled, and calcium currents were upregulated. This resulted in an increased inhibition of GABAergic synaptic transmission by somatodendritic release during lactation compared with the adult virgin stage. These results demonstrate that somatodendritic release is augmented during lactation, which is a novel form of plasticity to change the strength of synaptic transmission.

摘要

在雌性生殖周期中,下丘脑催产素(OT)神经元的兴奋性会发生急剧变化。在泌乳哺乳动物中,OT神经元的电活动爆发会导致大量OT释放到血液中,从而引起乳汁排出。一种假说认为,OT神经元通过树突体释放OT来调节自身的放电活动以及附近OT神经元的放电活动。在本研究中,我们发现OT神经元活动会强烈降低对这些神经元的抑制性突触传递。腺苷和OT受体的拮抗剂均可阻断这一效应,且OT的应用可模拟这一效应。破伤风毒素对可溶性N - 乙基马来酰亚胺敏感因子附着蛋白受体复合物形成的抑制作用以及钙螯合剂BAPTA均完全阻断了刺激诱导的抑制性输入减少。在泌乳期间,OT细胞体中易于释放的分泌囊泡池增加了一倍,且钙电流上调。与成年未孕阶段相比,这导致泌乳期间树突体释放对GABA能突触传递的抑制作用增强。这些结果表明,泌乳期间树突体释放增强,这是一种改变突触传递强度的新型可塑性形式。