首页> 美国卫生研究院文献>ASN NEURO >Involvement of Hyperpolarization-Activated Cyclic Nucleotide-Gated Channel 3 in Oxytocin Neuronal Activity in Lactating Rats With Pup Deprivation
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Involvement of Hyperpolarization-Activated Cyclic Nucleotide-Gated Channel 3 in Oxytocin Neuronal Activity in Lactating Rats With Pup Deprivation

机译:脱贫癌催产大鼠催产素神经元活性的超极化活性循环核苷酸沟槽3

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摘要

Oxytocin, a hypothalamic neuropeptide essential for breastfeeding, is mainly produced in oxytocin neurons in the supraoptic nucleus (SON) and paraventricular nucleus. However, mechanisms underlying oxytocin secretion, specifically the involvement of hyperpolarization-activated cyclic nucleotide-gated channel 3 (HCN3) in oxytocin neuronal activity, remain unclear. Using a rat model of intermittent and continuous pup deprivation (PD) at the middle stage of lactation, we analyzed the contribution of HCN3 in oxytocin receptor (OTR)-associated signaling cascade to oxytocin neuronal activity in the SON. PD caused maternal depression, anxiety, milk shortage, involution of the mammary glands, and delays in uterine recovery, particularly in continuous PD. PD increased hypothalamic but not plasma oxytocin levels in enzyme-linked immunosorbent assay. In the SON, PD increased c-Fos expression but reduced expressions of cyclooxygenase-2 and HCN3 in Western blots and/or immunohistochemistry. Moreover, PD significantly increased the molecular association of OTR with HCN3 in coimmunoprecipitation. In brain slices, inhibition of HCN3 activity with DK-AH269 blocked prostaglandin E2-evoked increase in the firing activity and burst discharge in oxytocin neurons in patch-clamp recordings. In addition, oxytocin-evoked increase in the molecular association between OTR and HCN3 in brain slices of the SON was blocked by pretreatment with indomethacin, an inhibitor of cyclooxygenase-2. These results indicate that normal activity of oxytocin neurons is under the regulation of an oxytocin receptor–cyclooxygenase-2–HCN3 pathway and that PD disrupts maternal behavior through increasing intranuclear oxytocin secretion in the SON but likely reducing bolus oxytocin release into the blood through inhibition of HCN3 activity.
机译:催产素是一种乳腺乳腺癌必需的下丘脑神经肽,主要在催产素神经元(儿子)和椎间露核中产生。然而,催产素分泌的机制,特别是催产素神经元活性中的超极化活化的环状核苷酸门控通道3(HCN3)仍然不清楚。在哺乳期中期使用的间歇性和连续幼崽剥夺(PD)的大鼠模型,我们分析了HCN3在催产素受体(OTR)的信号传导级联到儿子催产素神经元活性的贡献。 PD导致母体抑郁,焦虑,牛奶短缺,乳腺的侧面,以及子宫恢复的延迟,特别是在连续的PD中。 PD增加下丘脑,但不是酶联免疫吸附测定中的血浆催产素水平。在儿子中,PD增加了C-FOS表达,但在蛋白质印迹和/或免疫组化中的环氧氧酶-2和HCN3的表达减少。此外,PD在CoImMunopectipitation中显着增加了OTR与HCN3的分子缔合。在脑切片中,用DK-AH269抑制HCN3活性阻断了涂布活性的前列腺素E2诱发增加,在催产素神经元中的催化活性和爆发夹具中的爆发。此外,通过用吲哚美辛的预处理,诱导胰岛素的脑切片中的催产素诱发的分子关联的升高增加,其吲哚美辛含有环氧胞嘧啶酶-2的抑制剂。这些结果表明,催产素神经元的正常活性位于催产素受体 - 环氧化酶-2-HCN3途径的调节,并且PD通过增加儿子中的核臭催化剂分泌而扰乱母体行为,但通过抑制,可能会降低推注催产素释放到血液中HCN3活动。

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