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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Action of neuropeptide Y on nociceptive transmission in substantia gelatinosa of the adult rat spinal dorsal horn.
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Action of neuropeptide Y on nociceptive transmission in substantia gelatinosa of the adult rat spinal dorsal horn.

机译:神经肽Y对成年大鼠脊髓背角明胶质伤害性传递的作用。

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Effects of neuropeptide Y (NPY) on substantia gelatinosa neurons were investigated in adult rat spinal cord slices using blind whole-cell patch-clamp technique. Bath application of NPY (1 microM) induced a membrane hyperpolarization, resulting in a suppression of the dorsal root stimulation-induced action potentials in 24% of the substantia gelatinosa neurons tested. In voltage clamp mode, NPY produced an outward current dose-dependently in about one third of substantia gelatinosa neurons at the holding potential of -60 mV, which was not affected by tetrodotoxin (1 microM). The NPY-induced current was suppressed by perfusion with a Ba2+-containing external solution and a Cs2SO4 or tetraethylammonium-containing pipette solution. In addition, The NPY-induced outward currents reversed its polarity near the equilibrium potential of K+ ions (-93 mV). The response to NPY recorded with guanosine-5'-O-(2-thiodiphosphate)-beta-S (GDP-beta-S) containing pipette solution was abolished 30 min after patch formation, suggesting that the response was mediated by the G-protein-coupled receptors. Application of an NPY-Y1 selective agonist, [Leu(31), Pro(-34)]-NPY (1 microM), for 30 s also induced an outward current with a similar time course and amplitude to that induced by NPY. On the other hand, the NPY response was blocked by a simultaneous application of NPY-Y1 selective antagonist, BIBP 3226 (1 microM). No significant changes were found in amplitude and frequency of miniature excitatory postsynaptic currents and dorsal root evoked excitatory postsynaptic currents by NPY. In addition, NPY did not affect both of the miniature inhibitory postsynaptic currents and evoked inhibitory postsynaptic currents, mediated by either the GABA or glycine receptor. These findings, taken together, suggest that NPY produces an outward current in substantia gelatinosa neurons through G-protein coupled, and NPY-Y1 receptor-mediated activation of K+ channels without affecting presynaptic components. The inhibition of the synaptic transmission from the primary fibers to the substantia gelatinosa neurons is considered to contribute to the antinociceptive effects of NPY.
机译:使用盲全细胞膜片钳技术研究了成年大鼠脊髓切片中神经肽Y(NPY)对明胶质神经元的影响。浴液中应用NPY(1 microM)会引起膜超极化,从而导致受测试的24%明胶质神经元的背根刺激诱发的动作电位受到抑制。在电压钳模式下,NPY在-60 mV的保持电势下约有三分之一的明胶质神经元产生剂量依赖性的向外电流,不受河豚毒素(1 microM)的影响。通过用含Ba2 +的外部溶液和Cs2SO4或含四乙铵的移液器灌注来抑制NPY感应的电流。此外,NPY诱导的外向电流在K +离子的平衡电位(-93 mV)附近反转了其极性。贴剂形成后30分钟取消了含鸟苷5'-O-(2-硫代二磷酸)-β-S(GDP-β-S)记录的对NPY的响应,表明该响应是由G-介导的蛋白偶联受体。 NPY-Y1选择性激动剂[Leu(31),Pro(-34)]-NPY(1 microM)的应用持续30 s时,也会产生与NPY诱导的电流相似的时程和幅度的外向电流。另一方面,同时应用NPY-Y1选择性拮抗剂BIBP 3226(1 microM)可以阻断NPY反应。 NPY对微型兴奋性突触后突触电流和背根诱发的兴奋性突触后突触电流的幅度和频率均无明显变化。另外,NPY既不影响由GABA或甘氨酸受体介导的微型抑制性突触后电流和诱发的抑制性突触后电流。这些发现加在一起,表明NPY通过G蛋白偶联和NPY-Y1受体介导的K +通道激活在明胶质神经元中产生外向电流,而不影响突触前组件。从初级纤维到明胶神经元神经元的突触传递的抑制被认为有助于NPY的抗伤害感受作用。

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