首页> 外文期刊>Evidence-based complementary and alternative medicine: eCAM >Electroacupuncture Inhibition of Hyperalgesia in Rats with Adjuvant Arthritis: Involvement of Cannabinoid Receptor 1 and Dopamine Receptor Subtypes in Striatum
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Electroacupuncture Inhibition of Hyperalgesia in Rats with Adjuvant Arthritis: Involvement of Cannabinoid Receptor 1 and Dopamine Receptor Subtypes in Striatum

机译:佐剂关节炎大鼠痛觉过敏的抑制:大麻素受体1和多巴胺受体亚型在纹状体中的累积

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摘要

Electroacupuncture (EA) has been regarded as an alternative treatment for inflammatory pain for several decades. However, the molecular mechanisms underlying the antinociceptive effect of EA have not been thoroughly clarified. Previous studies have shown that cannabinoid CB1 receptors are related to pain relief. Accumulating evidence has shown that the CB1 and dopamine systems sometimes interact and may operate synergistically in rat striatum. To our knowledge, dopamine D1/D2 receptors are involved in EA analgesia. In this study, we found that repeated EA at Zusanli (ST36) and Kunlun (BL60) acupoints resulted in marked improvements in thermal hyperalgesia. Both western blot assays and FQ-PCR analysis results showed that the levels of CB1 expression in the repeated-EA group were much higher than those in any other group (P = 0.001). The CBl-selective antagonist AM251 inhibited the effects of repeated EA by attenuating the increases in CB1 expression. The two kinds of dopamine receptors imparted different actions on the EA-induced CB1 upregulation in AA rat model. These results suggested that the strong activation of the CB1 receptor after repeated EA resulted in the concomitant phenomenon of the upregulation of Dl and D2 levels of gene expression.
机译:电针(EA)被认为是几十年来炎症疼痛的替代治疗。然而,ea的抗闭合性效应的分子机制尚未彻底澄清。以前的研究表明,大麻素CB1受体与疼痛缓解有关。积累证据表明CB1和多巴胺系统有时相互作用,并且可以在大鼠纹状体中协同作用。据我们所知,多巴胺D1 / D2受体参与EA镇痛。在这项研究中,我们发现在Zusanli(ST36)和Kunlun(BL60)穴位重复EA,导致热幽差的显着改善。 Western印迹测定和FQ-PCR分析结果表明,重复-EA组中CB1表达的水平远高于任何其他基团(P = 0.001)。 CBL选择性拮抗剂AM251通过衰减CB1表达中的增加来抑制重复EA的效果。两种多巴胺受体在AA大鼠模型中赋予EA诱导的CB1上调的不同作用。这些结果表明,重复EA后CB1受体的强烈活化导致D1和D2水平的上调的伴随现象。

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