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糖基化吗啡肽:具有强效且持久镇痛活性以及增强血脑屏障穿透能力的阿片肽。

Glycodermorphins: opioid peptides with potent and prolonged analgesic activity and enhanced blood-brain barrier penetration.

作者信息

Negri L, Lattanzi R, Tabacco F, Scolaro B, Rocchi R

机构信息

Institute of Medical Pharmacology, University La Sapienza, Rome, Italy.

出版信息

Br J Pharmacol. 1998 Aug;124(7):1516-22. doi: 10.1038/sj.bjp.0701971.

Abstract
  1. In order to improve the in vivo stability of the opioid peptide dermorphin we synthesized O-betaglucosylated analogs ([Ser7-O-betaGlc]dermorphin and [Ser7-O-betaGlc(Ac)4]-dermorphin) and C-alphagalactosylated analogs ([Ala7-C-alphaGal]dermorphin and [Ala7-C-alphaGal(Ac)4]-dermorphin). 2. O- and C-glycosylation of dermorphin halved the peptide affinity for brain mu-opioid receptors and the biological potency in guinea-pig ileum assay (GPI). Despite their lower opioid receptor affinity, when administered intracerebroventricularly (i.c.v., 8-40 pmol) and subcutaneously (s.c., 0.5-3 micromol kg(-1)) in rats, glycosylated analogs were two times more potent than dermorphin in reducing the nociceptive response to radiant heat. Acetylation of sugar hydroxyl groups reduces 5-10 times both biological activity on GPI and mu-receptor affinity, whereas the antinociceptive potency was equal to (i.c.v.) or only two-three times lower (s.c.) than dermorphin potency. 3. Blood-Brain Barrier Permeability Index (BBB-PI) of the glycodermorphins was significantly higher than that of dermorphin, indicating a facilitated entry into the brain: O-beta-linked glucoconiugates are expected to enter CNS by the glucose transporter GLUT-1 of the endothelial barrier. However the calculated BBB-PI for the C-alphagalactoside was about two times higher than that of the O-betaglucoside, excluding the implication of GLUT-1 that is known to be selective for O-beta-links and preferring for the exose glucose. 4. The enhanced brain permeability with the subsequent decrease in peripheral dosage of these opioid peptides did not result in lowering constipation.
摘要
  1. 为提高阿片肽德莫啡肽的体内稳定性,我们合成了O-β-葡萄糖基化类似物([Ser7-O-βGlc]德莫啡肽和[Ser7-O-βGlc(Ac)4]-德莫啡肽)以及C-α-半乳糖基化类似物([Ala7-C-αGal]德莫啡肽和[Ala7-C-αGal(Ac)4]-德莫啡肽)。2. 德莫啡肽的O-和C-糖基化使该肽对脑μ-阿片受体的亲和力以及在豚鼠回肠试验(GPI)中的生物活性减半。尽管它们对阿片受体的亲和力较低,但当在大鼠中脑室内(i.c.v.,8 - 40 pmol)和皮下(s.c.,0.5 - 3 μmol kg(-1))给药时,糖基化类似物在减轻对辐射热的伤害性反应方面比德莫啡肽强两倍。糖羟基的乙酰化使GPI上的生物活性和μ-受体亲和力均降低5 - 10倍,而抗伤害感受活性与德莫啡肽相当(脑室内给药)或仅比德莫啡肽活性低两到三倍(皮下给药)。3. 糖基化德莫啡肽的血脑屏障通透性指数(BBB-PI)显著高于德莫啡肽,表明其更容易进入脑内:O-β-连接的葡萄糖共轭物预计通过内皮屏障的葡萄糖转运蛋白GLUT-1进入中枢神经系统。然而,计算得出的C-α-半乳糖苷的BBB-PI比O-β-葡萄糖苷高约两倍,排除了已知对O-β-连接具有选择性且更倾向于外切葡萄糖的GLUT-1的作用。4. 这些阿片肽脑通透性增强,随后外周给药剂量降低,但并未导致便秘减轻。

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