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An NK1 Receptor Antagonist Microinjected into the Periaqueductal Gray Blocks Lateral Hypothalamic-Induced Antinociception in Rats

机译:NK1受体拮抗剂微注射到大鼠滑膜灰色阻滞侧下丘脑诱导的镇痛作用。

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摘要

Substantial data are accumulating that implicate the lateral hypothalamus (LH) as part of the descending pain modulatory system. The LH modifies nociception in the spinal cord dorsal horn partly through connections with the periaqueductal gray (PAG), an area known to play a central role in brainstem modulation of nociception. Early work demonstrated a putative substance P connection between the LH and the PAG, but the connection is not fully defined. To determine whether LH-induced antinociception mediated by the PAG is neurokinin1 (NK1) receptor-dependent, we conducted behavioral experiments in which the cholinergic agonist carbachol (125 nmol) was microinjected into the LH of lightly anesthetized female Sprague-Dawley rats (250–350 g) and antinociception was obtained on the tail flick or foot withdrawal tests. Cobalt chloride (100 nM), which reversibly blocks synaptic activation, blocked LH-induced antinociception. In another set of experiments, the specific NK1 receptor antagonist L-703-606 (5 μg) was microinjected in the PAG following LH stimulation with carbachol abolished LH-induced antinociception as well. Microinjection of cobalt chloride or L-703,606 in the absence of LH stimulation had no effect. These behavioral experiments coupled with earlier work provide converging evidence to support the hypothesis that antinociception produced by activating neurons in the LH is mediated in part by the subsequent activation of neurons in the PAG by NK1 receptors.
机译:正在积累大量数据,这些数据暗示了下丘脑外侧(LH)是下行疼痛调节系统的一部分。 LH可以部分地通过与导水管周围灰色(PAG)的连接来改变脊髓背角的伤害感受,PAG是已知在伤害感受的脑干调制中起着重要作用的区域。早期的工作表明LH和PAG之间存在假定的物质P连接,但该连接尚未完全定义。为了确定PAG介导的LH诱导的抗伤害感受是否依赖于神经激肽1(NK1)受体,我们进行了行为实验,其中将胆碱能激动剂卡巴胆碱(125 nmol)微注射到了轻度麻醉的Sprague-Dawley大鼠(250– 350克),并在甩尾或退脚试验中获得镇痛作用。可逆地阻止突触激活的氯化钴(100 nM)阻止LH诱导的抗伤害感受。在另一组实验中,在用卡巴胆碱刺激LH后,也将特异的NK1受体拮抗剂L-703-606(5μg)微注射到PAG中,从而消除了LH诱导的抗伤害感受。在没有LH刺激的情况下,微量注射氯化钴或L-703,606无效。这些行为实验与更早的工作相结合,提供了越来越多的证据来支持这一假说,即通过激活LH中的神经元而产生的抗伤害感受部分是由NK1受体随后激活PAG中的神经元所介导的。

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