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首页> 外文期刊>Life sciences >Metabolism to dextrorphan is not essential for dextromethorphan's anticonvulsant activity against kainate in mice.
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Metabolism to dextrorphan is not essential for dextromethorphan's anticonvulsant activity against kainate in mice.

机译:右美沙芬的代谢对于右美沙芬抗小鼠海藻酸盐的抗惊厥活性不是必需的。

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The effects of dextromethorphan (DM), and its major metabolite dextrorphan (DX) on kainic acid-induced seizures in mice were examined. Intracerebroventricular DM or DX (5 or 10 microg/0.5 microl) pretreatment significantly attenuated seizures induced by kainic acid (0.07 microg/0.07 microl) in a dose-related manner. DM or DX pretreatment significantly attenuated kainic acid-induced increases in AP-1 DNA-binding activity and fos-related antigen-immunoreactivity as well as neuronal loss in the hippocampus. DM appears to be a more potent neuroprotectant than DX. Since the high-affinity DM binding sites are recognized as being identical to the sigma-1 site, we examined the role of the sigma-1 receptor on the pharmacological action mediated by DM or DX. Pretreatment with the sigma-1 receptor antagonist BD1047 (2.5 or 5 mg/kg, i.p.) blocked the neuroprotection by DM in a dose-related manner. This effect of BD 1047 was more pronounced in the animals treated with DM than in those treated with DX. Combined, ourresults suggest that metabolism of DM to DX is not essential for DM to exert its effect. They also suggest that DM provides neuroprotection from kainic acid via sigma-1 receptor modulation.
机译:检查了右美沙芬(DM)及其主要代谢物右美沙芬(DX)对海藻酸诱导的小鼠癫痫发作的影响。脑室内DM或DX(5或10微克/0.5微升)预处理以剂量相关的方式显着减轻了海藻酸(0.07微克/0.07微升)诱发的癫痫发作。 DM或DX预处理可显着减弱海藻酸诱导的AP-1 DNA结合活性和fos相关抗原免疫反应性以及海马神经元丢失的增加。 DM似乎比DX更有效。由于高亲和力的DM结合位点被认为与sigma-1位点相同,因此我们研究了sigma-1受体在DM或DX介导的药理作用中的作用。用sigma-1受体拮抗剂BD1047(2.5或5 mg / kg,i.p.)进行预处理以剂量相关的方式阻断了DM的神经保护作用。 BD 1047的这种作用在用DM处理的动物中比在用DX处理的动物中更为明显。综上所述,我们的结果表明DM代谢为DX对于DM发挥其作用不是必需的。他们还表明,DM通过sigma-1受体调节提供了针对海藻酸的神经保护作用。

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