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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Neuropeptide Y receptor-expressing dorsal horn neurons: role in nocifensive reflex responses to heat and formalin.
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Neuropeptide Y receptor-expressing dorsal horn neurons: role in nocifensive reflex responses to heat and formalin.

机译:表达神经肽Y受体的背角神经元:在对热和福尔马林的伤害性反射反应中的作用。

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摘要

Lumbar intrathecal injection of neuropeptide Y (NPY) is antinociceptive, particularly in models of nerve injury and inflammation. Intrathecal NPY does not alter nociception in mice null for the Y1 neuropeptide Y receptor (Y1R) and these mice show enhanced nocifensive reflex responses to aversive thermal, mechanical, visceral and chemical stimuli. Y1R and NPY receptor type 2 (Y2R) are present in the spinal dorsal horn presynaptically on primary afferent, and possibly interneuron terminals, but only Y1R is found postsynaptically on dorsal horn neurons. In the present study, we sought to assess the anatomic effects of lumbar intrathecal disulfide conjugate of neuropeptide Y and saporin (NPY-sap) and to determine the role of Y1R-expressing dorsal horn neurons in nocifensive responses to aversive thermal and chemical stimulation. Lumbar intrathecal injection of NPY-sap was used to selectively destroy Y1R-expressing lumbar dorsal horn neurons followed by testing nocifensive reflex responses on the hotplate and after hind-paw formalin injection. NPY-saporin decreased superficial dorsal horn staining for Y1R, but not neurokinin-1 receptor, mu opiate receptor or NPY peptide, and had no effect on Y1R cell counts in fourth lumbar spinal segment dorsal root ganglia. Loss of Y1R-expressing dorsal horn neurons was associated with increased first response latencies on the 44 degrees C hotplate and reduced total time rats spent licking and guarding hind paws during 600 s trials at 44 degrees C or 200 s trials at 47 degrees C. First hind-paw response latencies to high intensity phasic stimulation at 52 degrees C were unaffected. NPY-sap also reduced formalin-induced nocifensive behaviors during both interphase and phase II. These data demonstrate that selective destruction of Y1R-expressing superficial dorsal horn neurons, probably excitatory interneurons and/or projection neurons, reduces nocifensive reflex responses, particularly to activation of C nociceptors, and suggest a possible role for Y1R-expressing dorsal horn neurons in pain.
机译:腰椎鞘内注射神经肽Y(NPY)具有镇痛作用,尤其是在神经损伤和炎症模型中。鞘内NPY不会改变对Y1神经肽Y受体(Y1R)无效的小鼠的伤害感受,并且这些小鼠显示出对厌恶性热,机械,内脏和化学刺激的伤害性反射反应。 Y1R和2型NPY受体(Y2R)在初级传入神经元和可能的中间神经元末端突触前存在于脊髓背角中,但仅在突触后神经元突触后发现Y1R。在本研究中,我们试图评估神经肽Y和saporin(NPY-sap)的腰椎鞘内二硫键共轭物的解剖学作用,并确定表达Y1R的背角神经元在对厌恶性热和化学刺激的伤害反应中的作用。腰椎鞘内注射NPY-树汁用于选择性破坏表达Y1R的腰背角神经元,然后在电炉上和后爪福尔马林注射后测试伤害性反射反应。 NPY-saporin减少Y1R的浅背角染色,但不减少神经激肽-1受体,阿片受体或NPY肽,并且对第四腰椎节段背根神经节的Y1R细胞计数无影响。表达Y1R的背角神经元的丧失与44摄氏度电炉上的第一反应潜伏期增加以及大鼠在44摄氏度的600 s试验或在47摄氏度的200 s试验中花费的舔和保护后爪的总时间减少有关。在52摄氏度高强度阶段性刺激的后爪反应潜伏期不受影响。 NPY树液也减少了在相间和II相期间福尔马林诱导的伤害行为。这些数据表明,表达Y1R的浅背角神经元(可能是兴奋性中间神经元和/或投射神经元)的选择性破坏,降低了伤害性反射反应,尤其是对C伤害感受器的激活,并暗示了表达Y1R的背角神经元在疼痛中的可能作用。 。

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