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吗啡 - 6 - O - β - D - 葡萄糖醛酸苷而非吗啡 - 3 - O - β - D - 葡萄糖醛酸苷与脑膜中的μ、δ和κ特异性阿片样物质结合位点结合。

Morphine-6-O-beta-D-glucuronide but not morphine-3-O-beta-D-glucuronide binds to mu-, delta- and kappa- specific opioid binding sites in cerebral membranes.

作者信息

Löser S V, Meyer J, Freudenthaler S, Sattler M, Desel C, Meineke I, Gundert-Remy U

机构信息

Department of Clinical Pharmacology, University of Göttingen, Germany.

出版信息

Naunyn Schmiedebergs Arch Pharmacol. 1996 Jul;354(2):192-7. doi: 10.1007/BF00178720.

Abstract

We investigated the nature of interaction of morphine-3-O-beta-D-glucuronide (M3G) and morphine-6-O-beta-D-glucuronide (M6G) with opioid binding sites at the mu-, delta- and kappa-opioid receptors (mu-OR, delta-OR and kappa-OR) in cerebral membranes. Saturation binding experiments revealed a competitive interaction of M6G with all three opioid receptors. Inhibition binding experiments at the mu-OR employing combinations of morphine and M6G resulted in a rightward shift of the IC50 for morphine proportional to the M6G concentration, thus strengthening the finding of competitive interaction of M6G at the mu-opioid binding site. Data in absence and presence of M6G were included in a three-dimensional model. Compared to a model with one binding site a model with two binding sites significantly improved the fits. This might indicate that different mu-OR subtypes are involved. Hydrolysis of M6G to morphine was investigated and did not occur. Therefore the effects of M6G on binding to the mu-OR were due to M6G and not due to morphine. In contrast, M3G at the three opioid receptors was found to inhibit binding being about 300 times weaker than morphine. This effect was well explained by the amount of contaminating morphine (about 0.3%) identified by HPLC. We conclude that M6G binds to mu-, delta- and kappa-OR in a competitive manner. Some of our results on the mu-OR suggest two binding sites for agonists at the mu-OR and that M6G binds to both sites. Our results suggest that the high potency of M6G as an analgesic is mediated through opioid receptors. In contrast, M3G does not interact with the mu-, delta- or kappa-OR. We therefore doubt that any effect of M3G is mediated via opioid receptors.

摘要

我们研究了吗啡-3-O-β-D-葡萄糖醛酸苷(M3G)和吗啡-6-O-β-D-葡萄糖醛酸苷(M6G)与脑膜中μ-、δ-和κ-阿片受体(μ-OR、δ-OR和κ-OR)的阿片结合位点的相互作用性质。饱和结合实验揭示了M6G与所有三种阿片受体的竞争性相互作用。在μ-OR上使用吗啡和M6G组合进行的抑制结合实验导致吗啡的IC50向右移动,与M6G浓度成正比,从而强化了M6G在μ-阿片结合位点竞争性相互作用的发现。有无M6G时的数据被纳入三维模型。与具有一个结合位点的模型相比,具有两个结合位点的模型显著改善了拟合度。这可能表明涉及不同的μ-OR亚型。对M6G水解为吗啡进行了研究,未发现水解现象。因此,M6G对μ-OR结合的影响是由于M6G本身,而非吗啡。相比之下,发现M3G在三种阿片受体上均抑制结合,其作用比吗啡弱约300倍。高效液相色谱法鉴定出的污染吗啡量(约0.3%)很好地解释了这一效应。我们得出结论,M6G以竞争性方式与μ-、δ-和κ-OR结合。我们关于μ-OR的一些结果表明,μ-OR上存在两个激动剂结合位点,且M6G与这两个位点均结合。我们的结果表明,M6G作为镇痛药的高效性是通过阿片受体介导实现的。相比之下,M3G不与μ-、δ-或κ-OR相互作用。因此,我们怀疑M3G的任何效应是否通过阿片受体介导。

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