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Actions of nociceptin/orphanin FQ and other prepronociceptin products on rat rostral ventromedial medulla neurons in vitro

机译:Nociceptin / orphanin FQ和其他propronociceptin产品在体外对大鼠延髓腹侧延髓神经元的作用

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摘要

Whole-cell patch clamp recordings were made from rat rostral ventromedial medulla (RVM) neurons in vitro to investigate the cellular actions of the opioid-like receptor ORL1 (NOP), ligand nociceptin/orphanin FQ and other putative prepronociceptin products.Primary and secondary RVM neurons were identified as responding to the κ-opioid receptor agonist U-69593 (300 nm to 1 μm) and the μ- and δ-opioid receptor agonist met-enkephalin (10 μm), respectively. Both primary and secondary RVM neurons responded to nociceptin (3 nm to 1 μm) with an outward current that reversed polarity at –115 mV in brain slices and with inhibition of Ca2+ channel currents in acutely isolated cells.The putative ORL1 antagonist J-113397 (1 μm) produced no change in membrane current and abolished the outward current produced by nociceptin (100 nm). In contrast, Phe1ψ(CH2-NH)Gly2]-nociceptin-(1-13)NH2 (300 nm to 1 μm) alone produced an outward current and partially reduced the outward current produced by nociceptin (300 nm) when co-applied.In brain slices nociceptin (300 nm) reduced the amplitude of evoked GABAA receptor-mediated inhibitory postsynaptic currents (IPSCs) but not non-NMDA receptor-mediated excitatory postsynaptic currents (EPSCs).Met-enkephalin (10 μm), but not nociceptin (300 nm), reduced the rate of spontaneous miniature IPSCs in normal external potassium solution (K+ 2.5 mm). In high external potassium (K+ 17.5 mm), nociceptin reduced the rate of miniature IPSCs in the presence (Ca2+ 2.4 mm, Mg2+ 1.2 mm) but not in the absence of external calcium (Ca2+ 0 mm, Mg2+ 10 mm, Cd2+ 10 μm). Nociceptin and met-enkephalin had no effect on the amplitude of miniature IPSCs.The putative nociceptin precursor products nocistatin (rat prepronociceptin125–132) and rat prepronociceptin154–181 had no effect on membrane currents, evoked IPSCs and evoked EPSCs.These results indicate that nociceptin acts via the ORL1 receptor to directly inhibit both primary and secondary RVM neurons by activating a potassium conductance and by inhibiting calcium conductances. In addition, nociceptin inhibits GABA release within the RVM via a presynaptic Ca2+-dependent mechanism. Thus, nociceptin has the potential to exert both disinhibitory and inhibitory effects on neuronal action potential firing within the RVM.
机译:从大鼠延髓腹侧延髓(RVM)神经元进行全细胞膜片钳记录,以研究类鸦片样受体ORL1(NOP),配体痛觉敏/孤啡肽FQ和其他推定的痛觉原痛产品的细胞作用。神经元被确定分别对κ阿片受体激动剂U-69593(300 nm至1μm)和μ和δ阿片受体激动剂甲脑啡肽(10μm)响应。初级和次级RVM神经元均对伤害感受器(3 nm至1μm)产生反应,其向外的电流在脑片中以–115 mV的极性反转了极性,并在急性分离的细胞中抑制了Ca2 +通道电流。推定的ORL1拮抗剂J-113397( 1μm)的膜电流没有变化,并且消除了伤害感受肽(100 nm)产生的向外电流。相反,当共同施加时,单独的Phe1ψ(CH2-NH)Gly2] -nociceptin-(1-13)NH2(300 nm至1μm)产生向外电流,并部分降低了伤害感受肽(300 nm)产生的向外电流。在脑切片中,伤害感受肽(300 nm)降低了诱发的GABAA受体介导的抑制性突触后电流(IPSC)的幅度,但未降低非NMDA受体介导的兴奋性突触后电流(EPSC)的水平;蛋氨酸-脑啡肽(10μm)却没有伤害感受肽( 300 nm),降低了正常外部钾溶液(K + 2.5 mm)中自发微型IPSC的比率。在高外部钾(K + 17.5 mm)的情况下,当存在外部钙(Ca2 + 2.4 mm,Mg2 + 1.2 mm)时,Nociceptin降低了微型IPSC的发生率,但是在没有外部钙(Ca2 + 0 mm,Mg2 + 10 mm,Cd2 + 10μm)的情况下则没有。 。 Nociceptin和met-enkephalin对微型IPSCs的振幅没有影响。推定的nociceptin前体产品nocistatin(大鼠prenociceptin125-132)和大鼠prepronociceptin154-181对膜电流,诱发的IPSC和诱发的EPSC没有影响。通过ORL1受体起作用,通过激活钾电导和抑制钙电导来直接抑制初级和次级RVM神经元。另外,伤害感受肽通过突触前Ca2 +依赖性机制抑制RVM内的GABA释放。因此,伤害感受器具有对RVM内的神经元动作电位激发起抑制作用和抑制作用的潜力。

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