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首页> 外文期刊>Frontiers in Neuropharmacology >Magnesium Salt, a Simple Strategy to Improve Methadone Analgesia in Chronic Pain: An Isobolographic Preclinical Study in Neuropathic Mice
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Magnesium Salt, a Simple Strategy to Improve Methadone Analgesia in Chronic Pain: An Isobolographic Preclinical Study in Neuropathic Mice

机译:镁盐,一种改善慢性疼痛中美沙酮镇痛的简单策略:神经疗法小鼠的异形临床前研究

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摘要

Analgesic efficacy of methadone in cancer and chronic non-cancer pains is greater than that of other opioids, probably because of its unique pharmacokinetics properties and also because it targets glutamatergic receptors in addition to μ-opioid receptors. However, methadone has drawbacks which are clearly related to dosing and treatment duration. The authors hypothesized that the antinociceptive efficacy of methadone could be synergistically potentiated by magnesium and copper salts in a preclinical mouse model of chronic pain, using the intraplantar formalin test as algesimetric tool. The spared nerve injury mice model was used to generate mononeuropathy. A low dose (0.25%) formalin was injected in the neuropathic limb in order to give rise only to Phase I response, resulting from direct activation by formalin of nociceptive primary afferents. Licking/biting of the formalin-injected limb was evaluated as nociceptive behavior during a 35-min observation period. Dose-response curves for intraperitoneal magnesium sulfate (10, 30, 100, and 300 mg/kg i.p.), copper sulfate (0.1, 0.3, 1, and 3 mg/kg i.p.) and methadone (0.1, 0.3, 1, and 3 mg/kg i.p.) allowed to combine them in equieffective doses and to determine their interaction by isobolographic analysis. Magnesium sulfate, copper sulfate and methadone dose-dependently decreased the nociceptive response evoked by formalin injection, the respective ED50 being 76.38, 1.18, and 0.50 mg/kg i.p. Isobolographic analysis showed a superadditive interaction for magnesium and methadone. Indeed, despite that both ED50 are obviously equieffective, the ED50 for the MgSO4/methadone combination contained less than one third of the methadone having the ED50 for methadone alone. For the CuSO4/methadone combination, the interaction was only additive. Extrapolated to clinical settings, the results suggest that magnesium salts might be used to improve synergistically the efficacy of methadone in neuropathy, which would allow to reduce the dose of methadone and its associated side effects.
机译:癌症和慢性非癌症疼痛的镇痛效果大于其他阿片类药物,可能是由于其独特的药代动力学性质,并且还因为它除了μ-ApiOID受体之外还靶向谷氨酸受体。然而,美沙酮具有与剂量和治疗持续时间明显相关的缺点。作者假设美沙酮的抗血质疗效可以在慢性疼痛的临床前小鼠模型中通过镁和铜盐来协同调节,使用血液造粒型福尔马林试验作为AlgeSimetric工具。施工的神经损伤小鼠模型用于产生单一病变。在神经病肢体中注射低剂量(0.25%)福尔马林,以产生仅通过伤害伤害型发作的直接激活而产生的I相反应。在35分钟的观察期内评估福尔马林注射肢体的舔/咬伤作为伤害行为。腹腔内硫酸镁(10,30,100和300mg / kg IP),硫酸铜(0.1,0.3,1和3mg / kg IP)和美沙酮(0.1,0.3,1和3 Mg / kg IP)允许它们以常设剂量组合,并通过异发分析确定它们的相互作用。硫酸镁,硫酸铜和美沙酮依赖性降低了通过福尔马林注射引起的伤害性反应,相应的ED50为76.38,1.18和0.50mg / kg i.p.异功率分析显示镁和美沙酮的超级相互作用。实际上,尽管两种ED50显然是偶然的,但MgSO4 /美沙酮组合的ED50含有少于三分之一的美沙酮,单独具有ED50的ED50。对于CUSO4 /美沙酮组合,相互作用仅是添加剂。结果推断为临床环境,结果表明,镁盐可用于改善甲基在神经病变中的疗效,这将允许减少美沙酮及其相关副作用的剂量。

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