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首页> 外文期刊>Molecular pain >The chemerin receptor 23 agonist, chemerin, attenuates monosynaptic C-fibre input to lamina I neurokinin 1 receptor expressing rat spinal cord neurons in inflammatory pain
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The chemerin receptor 23 agonist, chemerin, attenuates monosynaptic C-fibre input to lamina I neurokinin 1 receptor expressing rat spinal cord neurons in inflammatory pain

机译:chemerin受体23激动剂chemerin减轻炎性疼痛中向表达大鼠脊髓神经元的层板I神经激肽1受体的单突触C纤维输入。

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Background Recent evidence has shown that the chemerin receptor 23 (ChemR23) represents a novel inflammatory pain target, whereby the ChemR23 agonists, resolvin E1 and chemerin, can inhibit inflammatory pain hypersensitivity, by a mechanism that involves normalisation of potentiated spinal cord responses. This study has examined the ability of the ChemR23 agonist, chemerin, to modulate synaptic input to lamina I neurokinin 1 receptor expressing (NK1R+) dorsal horn neurons, which are known to be crucial for the manifestation of inflammatory pain. Results Whole-cell patch-clamp recordings from pre-identified lamina I NK1R+ neurons, in rat spinal cord slices, revealed that chemerin significantly attenuates capsaicin potentiation of miniature excitatory postsynaptic current (mEPSC) frequency, but is without effect in non-potentiated conditions. In tissue isolated from complete Freund’s adjuvant (CFA) treated rats, chemerin significantly reduced the peak amplitude of monosynaptic C-fibre evoked excitatory postsynaptic currents (eEPSCs) in a subset of lamina I NK1R+ neurons, termed chemerin responders. However, chemerin did not alter the peak amplitude of monosynaptic C-fibre eEPSCs in control tissue. Furthermore, paired-pulse recordings in CFA tissue demonstrated that chemerin significantly reduced paired-pulse depression in the subset of neurons classified as chemerin responders, but was without effect in non-responders, indicating that chemerin acts presynaptically to attenuate monosynaptic C-fibre input to a subset of lamina I NK1R+ neurons. Conclusions These results suggest that the reported ability of ChemR23 agonists to attenuate inflammatory pain hypersensitivity may in part be due to a presynaptic inhibition of monosynaptic C-fibre input to lamina I NK1R+ neurons and provides further evidence that ChemR23 represents a promising inflammatory pain target.
机译:背景技术最近的证据表明,chemerin受体23(ChemR23)代表一种新型的炎性疼痛靶标,其中ChemR23激动剂resolvin E1和chemerin可通过涉及增强脊髓反应正常化的机制抑制炎性疼痛超敏反应。这项研究检查了ChemR23激动剂chemerin调节表达层板I神经激肽1受体(NK1R +)背角神经元的突触输入的能力,已知这对于炎症性疼痛的表现至关重要。结果大鼠脊髓切片中预先鉴定的椎板I NK1R +神经元的全细胞膜片钳记录显示,chemerin显着减弱了辣椒素对微型兴奋性突触后突触电流(mEPSC)频率的增强作用,但在非增强条件下无作用。在从完全弗氏佐剂(CFA)处理的大鼠中分离的组织中,chemerin显着降低了被称为chemerin应答器的层状NK1R +神经元子集中的单突触C纤维诱发的兴奋性突触后电流(eEPSC)的峰值。但是,凯莫瑞并没有改变对照组织中单突触C纤维eEPSC的峰值幅度。此外,CFA组织中的成对脉冲记录表明,chemerin显着降低了归类为chemerin响应者的神经元子集中的成对脉冲抑制,但对非响应者没有作用,表明chemerin突触地起作用以减弱单突触C纤维输入到层板NK1R +神经元的一个子集。结论这些结果表明,已报道的ChemR23激动剂减轻炎症性疼痛超敏反应的能力可能部分是由于对突触I NK1R +神经元的单突触C纤维输入的突触前抑制作用,并进一步证明ChemR23代表了有希望的炎症性疼痛靶标。

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