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首页> 外文期刊>Pharmacology: International Journal of Experimental and Clinical Pharmacology >The biochemical analysis of methadone modulation on morphine-induced tolerance and dependence in the rat brain.
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The biochemical analysis of methadone modulation on morphine-induced tolerance and dependence in the rat brain.

机译:美沙酮调制对吗啡诱导的大鼠脑耐受和依赖性的生化分析。

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We have recently demonstrated that the combination of methadone and morphine enhances the ability of morphine to induce mu-opioid peptide (MOP) receptor endocytosis. As a result, rats receiving both drugs show reduced morphine tolerance and dependence. In the present study, we identify the biochemical basis for the protective effect of the drug combination. In rats treated with morphine alone, the inhibitory effect of DAMGO on forskolin-stimulated adenylyl cyclase activity was significantly reduced in a brain-region-selective manner. Importantly, these reductions were prevented in animals receiving the drug combination. We found that these changes were not due to alterations in MOP receptor density, or MOP receptor-G protein coupling, as no significant change in these parameters was observed. Together these data demonstrate that neither changes in receptor number nor function are required for morphine tolerance and dependence. Rather, brain-region-selective changes in adenylyl cyclase signal transduction are critical, and both these biochemical changes and the behavioral effects are prevented by facilitating endocytosis of the MOP receptor.
机译:我们最近证明,美沙酮和吗啡的组合可增强吗啡诱导mu阿片肽(MOP)受体内吞的能力。结果,接受两种药物的大鼠均表现出降低的吗啡耐受性和依赖性。在本研究中,我们确定了该药物组合的保护作用的生化基础。在单独用吗啡治疗的大鼠中,DAMGO对毛喉素刺激的腺苷酸环化酶活性的抑制作用以脑区域选择性方式显着降低。重要的是,在接受药物联合治疗的动物中,这些减少是可以防止的。我们发现这些变化不是由于MOP受体密度或MOP受体-G蛋白偶联的改变,因为没有观察到这些参数的显着变化。这些数据共同表明,吗啡耐受性和依赖性不需要受体数量或功能的改变。而是,腺苷酸环化酶信号转导的脑区域选择性变化至关重要,并且通过促进MOP受体的内吞作用,可以防止这些生化变化和行为影响。

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