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首页> 外文期刊>Journal of Pharmacy and Pharmacology >Participation of the spinal TRPV1 receptors in formalin-evoked pain transduction: a study using a selective TRPV1 antagonist, iodo-resiniferatoxin.
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Participation of the spinal TRPV1 receptors in formalin-evoked pain transduction: a study using a selective TRPV1 antagonist, iodo-resiniferatoxin.

机译:脊髓TRPV1受体参与福尔马林诱发的疼痛转导:一项使用选择性TRPV1拮抗剂碘-树脂毒素的研究。

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摘要

The involvement of spinal transient receptor potential vanilloid 1 (TRPV1) in formalin-evoked pain has remained unclear, because investigation of this kind of pain with selective antagonists has not been conducted. The purpose of this study is to investigate the participation of spinal TRPV1 in formalin-evoked pain with iodo-resiniferatoxin (I-RTX), a potent TRPV1-selective antagonist. I-RTX given intrathecally dose-dependently and significantly decreased the number of flinching responses in the formalin-evoked 1st and 2nd phase with ID50 values (drug dose producing 50% inhibition of response) of 1.0 and 3.8 microg, respectively, and concentration-dependently suppressed capsaicin-evoked calcitonin gene-related peptide-like immunoreactivity (CGRP-LI) release from rat spinal cord slices with an IC50 value (drug concentration producing 50% inhibition of response) of 86 nM. Capsazepine, a classical non-selective TRPV1 antagonist, given intrathecally also inhibited formalin-evoked flinching in both the 1st and 2nd phase with ID50s of 420 and 200 microg, respectively, and CGRP-LI release from rat spinal cord slices with an IC50 of 7.8 microM. Ratios of in-vivo analgesic potencies of I-RTX and capsazepine well reflected their intrinsic in-vitro activity. These findings suggest that spinal TRPV1 participates in the transduction system of formalin-evoked pain.
机译:由于福尔马林引起的疼痛中脊髓瞬时受体电位香草酸1(TRPV1)的参与仍不清楚,因为尚未进行选择性拮抗剂对这种疼痛的研究。这项研究的目的是调查脊髓TRPV1与碘-树脂-树脂毒素(I-RTX)(一种有效的TRPV1选择性拮抗剂)在福尔马林引起的疼痛中的参与。鞘内给予I-RTX剂量依赖性,并显着降低福尔马林诱发的第一和第二相中退缩反应的次数,ID50值(产生50%反应抑制的药物剂量)分别为1.0和3.8 microg,且与浓度有关抑制辣椒素诱发的降钙素基因相关肽样免疫反应性(CGRP-LI)从大鼠脊髓切片释放,IC50值(药物浓度产生50%的反应抑制)为86 nM。鞘内注射经典的非选择性TRPV1拮抗药Capsazepine还可在第一和第二阶段抑制福尔马林诱发的退缩,ID50分别为420和200 microg,CGRP-LI从大鼠脊髓切片释放,IC50为7.8 microM。 I-RTX和卡塞平的体内止痛效果比率很好地反映了其固有的体外活性。这些发现表明脊髓TRPV1参与了福尔马林诱发的疼痛的转导系统。

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