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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Orphanin-FQociceptin inhibits kindling epileptogenesis and enhances hippocampal feed-forward inhibition.
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Orphanin-FQociceptin inhibits kindling epileptogenesis and enhances hippocampal feed-forward inhibition.

机译:Orphanin-FQ / nociceptin抑制点燃癫痫的发生并增强海马前馈抑制。

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The role of Orphanin-FQociceptin in synaptic plasticity was assessed by its potency in modulating kindling epileptogenesis in vivo, and feed-forward inhibition in hippocampal recordings in vitro. In addition, a specific rabbit antiserum against this peptide was obtained and the immunohistochemical distribution of nociceptin was determined in rat brain slices. After the establishment of kindling epilepsy, by daily electrical stimulation of the piriform cortex, the i.c.v. injection of nociceptin, 20 min before the kindling stimulation, was not able to block the generation of the generalized seizures, nor to alter their duration. However, the i.c.v. injection of nociceptin, 20 min before each stimulation along the kindling process, depressed its development in a dose-dependent manner. This effect was specific since the nociceptin antagonist [Phe1psi(CH2-NH)Gly2]NC(1-13)NH2, but not the broad-spectrum opiate antagonist, naloxone, was able to completely block nociceptin actions. The inhibitory role of nociceptin was assessed by in vitro recordings from entorhinal cortex-hippocampal slices. By single pulses applied over the Schaffer collaterals, we found that synaptic transmission was facilitated onto CA1, but using a paired-pulse protocol, we found that nociceptin potentiated feed-forward inhibition. The immunohistochemical data show that nociceptin is expressed in limbic cortical regions, including the piriform cortex and the hippocampus. Our results demonstrate that nociceptin exerts a modulatory role in limbic excitability and suggest that it provides an inhibitory control in the development of epilepsy by possibly inhibiting the spread of excitation through the system, by favoring feed-forward inhibition.
机译:通过在体内调节点燃性癫痫发生的能力以及在体外海马记录中抑制前馈的作用来评估孤儿蛋白-FQ /伤害受体在突触可塑性中的作用。另外,获得了针对该肽的特异性兔抗血清,并在大鼠脑切片中测定了伤害感受肽的免疫组织化学分布。在点燃癫痫病发作后,通过每天对梨状皮层进行电刺激,进行腹腔镜手术。在点燃刺激前20分钟注射Nociceptin不能阻止全身性癫痫发作的发生,也不能改变发作的持续时间。但是,在每次点燃过程中,每次刺激前20分钟注射Nociceptin,以剂量依赖的方式抑制其发展。由于伤害感受器拮抗剂[Phe1psi(CH2-NH)Gly2] NC(1-13)NH2(而非广谱阿片拮抗剂纳洛酮)能够完全阻断伤害感受器的作用,因此这种作用具有特异性。通过从内嗅皮层-海马切片的体外记录中评估了伤害感受肽的抑制作用。通过在Schaffer侧支上施加单个脉冲,我们发现突触传递被促进到CA1上,但是使用成对脉冲协议,我们发现伤害感受素增强了前馈抑制。免疫组织化学数据显示伤害感受素在包括皮状的皮质和海马的边缘皮质区域表达。我们的研究结果表明,伤害感受肽在边缘兴奋性中起调节作用,并表明它可能通过抑制前馈抑制作用来抑制兴奋剂在整个系统中的扩散,从而为癫痫的发展提供了抑制性控制。

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