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环氧化酶2-蛋白激酶A-超极化激活的环核苷酸门控通道3通路在间歇性幼崽剥夺的泌乳大鼠中对催产素神经元活动调节中的关键作用

Key Roles of Cyclooxygenase 2-Protein Kinase A-Hyperpolarization-activated Cyclic Nucleotide-gated Channel 3 Pathway in the Regulation of Oxytocin Neuronal Activity in Lactating Rats with Intermittent Pup-Deprivation.

作者信息

Li Dongyang, Liu Xiaoyu, Liu Haitao, Li Tong, Jia Shuwei, Wang Xiaoran, Wang Ping, Qin Danian, Wang Yu-Feng

机构信息

Department of Physiology, School of Basic Medical Sciences, Harbin Medical University, Harbin, China.

Department of Genetics, School of Basic Medical Sciences, Harbin Medical University, Harbin, China.

出版信息

Neuroscience. 2021 Jan 1;452:13-25. doi: 10.1016/j.neuroscience.2020.10.016. Epub 2020 Oct 31.

Abstract

Suckling-evoked pulsatile release of oxytocin (OT) from the posterior pituitary plays a key role in breastfeeding, which relies on burst-like discharges of OT neurons. To explore cellular mechanisms regulating OT neuronal activity, using lactating rats with pup-deprivation (PD) during postpartum day 1-5, we observed the involvement of prostaglandin, cyclic AMP/protein kinase A (PKA) and hyperpolarization-activated cyclic nucleotide-gated channel 3 (HCN3) signaling pathway in OT neuronal activity. PD gradually reduced lactation efficiency. Intermittent PD (IPD) was largely reversed by intranasally-applied OT (IAO) but not by hypodermically-applied OT. IPD caused involution-like histological changes in the mammary glands, increased hypothalamic OT release but did not influence plasma OT concentrations. In the supraoptic nucleus, IPD increased OT receptor (OTR) expressions in OT neurons as well as Gαq subunit, Gβ subunit and cyclooxygenase 2 (Cox-2). These effects except that on Gβ subunit were reversed by IAO. Notably, IPD increased the expression of catalytic subunit of PKA in the SON, specifically in vasopressin neurons but not in OT neurons. In addition, IPD increased the expression of HCN3. IAO partially reversed these changes in the SON. Lastly, blocking HCN3 blocked excitation and burst firing in OT neurons-evoked by prostaglandin E, a key mediator of OT-evoked burst firing; blocking Cox-2 or PKA reduced the molecular association between OTR and HCN3. Thus, there is a prostaglandin-cAMP/PKA-HCN3 pathway in the regulation of OT neuronal activity. PD disrupts lactation performance through uncoupling OTR and PKA-HCN3 signaling. The reversal effect of IAO highlights its therapeutic potential in PD-evoked hypogalactia.

摘要

哺乳期诱发的垂体后叶催产素(OT)脉冲式释放对母乳喂养起着关键作用,这依赖于OT神经元的爆发式放电。为了探究调节OT神经元活动的细胞机制,我们使用产后第1 - 5天剥夺幼崽(PD)的哺乳期大鼠,观察了前列腺素、环磷酸腺苷/蛋白激酶A(PKA)和超极化激活的环核苷酸门控通道3(HCN3)信号通路在OT神经元活动中的作用。PD逐渐降低了泌乳效率。间歇性PD(IPD)在很大程度上可被鼻内应用OT(IAO)逆转,但皮下应用OT则不能。IPD导致乳腺出现类似 involution 的组织学变化,增加下丘脑OT释放,但不影响血浆OT浓度。在视上核中,IPD增加了OT神经元中OT受体(OTR)的表达以及Gαq亚基、Gβ亚基和环氧化酶2(Cox - 2)的表达。除了对Gβ亚基的影响外,这些作用均被IAO逆转。值得注意的是,IPD增加了视上核中PKA催化亚基的表达,特别是在加压素神经元中,而在OT神经元中则没有。此外,IPD增加了HCN3的表达。IAO部分逆转了视上核中的这些变化。最后,阻断HCN3可阻断OT神经元中由前列腺素E诱发的兴奋和爆发式放电,前列腺素E是OT诱发爆发式放电的关键介质;阻断Cox - 2或PKA可降低OTR与HCN3之间的分子结合。因此,在OT神经元活动的调节中存在前列腺素 - cAMP/PKA - HCN3信号通路。PD通过使OTR与PKA - HCN3信号解偶联来破坏泌乳性能。IAO的逆转作用突出了其在PD诱发的乳汁分泌不足中的治疗潜力。

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