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吗啡 -6-葡萄糖醛酸在镇痛试验中比吗啡具有更高的μ受体选择性和更强的效力。

Morphine-6-glucuronide is more mu-selective and potent in analgesic tests than morphine.

作者信息

Francés B, Gout R, Campistron G, Panconi E, Cros J

机构信息

CNRS, Université P. Sabatier, Toulouse, France.

出版信息

Prog Clin Biol Res. 1990;328:477-80.

PMID:2154808
Abstract

6-glucuronidation of morphine confers to this widely used analgesic increased potencies both in terms of receptor binding (selectivity) and of antinociceptive properties. In binding studies, 6-glucuronidation of morphine results in increased mu/kappa selectivity (comparable to DAGO). Na+ ions and Gpp(NH)p inhibit similarly the binding of morphine and M6G at the mu sites, suggesting that M6G is a mu agonist. The agonist nature of M6G was further confirmed by its antinociceptive properties: M6G (i.c.v.) was considerably more potent than morphine in the writhing (45 fold) and in the tail-flick (61 fold) tests. Furthermore, M6G induced a longer lasting analgesic effect than morphine. These data strongly suggest that M6G may significantly contribute to the pharmacological activity of morphine.

摘要

吗啡的6-葡萄糖醛酸化作用使这种广泛使用的镇痛药在受体结合(选择性)和抗伤害感受特性方面都具有更高的效力。在结合研究中,吗啡的6-葡萄糖醛酸化作用导致μ/κ选择性增加(与DAGO相当)。钠离子和Gpp(NH)p对吗啡和M6G在μ位点的结合具有相似的抑制作用,表明M6G是一种μ激动剂。M6G的激动剂性质通过其抗伤害感受特性得到进一步证实:在扭体试验(45倍)和甩尾试验(61倍)中,M6G(脑室内注射)比吗啡的效力要强得多。此外,M6G诱导的镇痛作用比吗啡更持久。这些数据有力地表明,M6G可能对吗啡的药理活性有显著贡献。

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