MDAN-21: A Bivalent Opioid Ligand Containing mu-Agonist and Delta-Antagonist Pharmacophores and Its Effects in Rhesus Monkeys.

International Journal of Medicinal Chemistry Pub Date : 2012-01-01 Epub Date: 2012-04-29 DOI:10.1155/2012/327257
Mario D Aceto, Louis S Harris, S Stevens Negus, Matthew L Banks, Larry D Hughes, Eyup Akgün, Philip S Portoghese
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引用次数: 26

Abstract

MDAN-21, 7'-{2-[(7-{2-[({(5α, 6α)-4,5-Epoxy-3,14-dihydroxy-17-methylmorphin-6-yl}-aminocarbonyl)metoxy]-acetylamino}-heptylaminocarbonyl)-methoxy]-acetylamino}-naltrindole, a bivalent opioid ligand containing a mu-opioid receptor agonist (derived from oxymorphone) linked to the delta-opioid receptor antagonist (related to naltrindole) by a spacer of 21 atoms, was reported to have potent analgesic properties in mice. Tolerance, physical dependence, and conditioned place preference were not evident in that species. The finding that bivalent ligands in this series, with spacers 19 atoms or greater, were devoid of tolerance and dependence led to the proposal that MDAN-21 targets heteromeric mu-delta-opioid receptors. The present study focused on its effects in nonhuman primates (Macaca mulatta), a species with a physiology and behavioral repertoire not unlike humans. With regard to opioids, this species usually better predicts clinical outcomes. MDAN-21 substituted for morphine in morphine-dependent monkeys in the remarkably low dose range 0.006-0.032 mg/kg, subcutaneously. Although MDAN-21 failed to produce reliable thermal analgesia in the dose range 0.0032-0.032 mg/kg, intramuscularly, it was active in the same dose range and by the same route of administration, in the capsaicin-induced thermal allodynia assay. The results suggest that MDAN-21 may be useful in the treatment of opioid dependence and allodynia. The data provide additional evidence that opioid withdrawal is associated with sensitized pain.

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MDAN-21:一种含mu激动剂和delta拮抗剂的二价阿片配体及其在恒河猴中的作用。
mdan - 21,7 '-{2-[(7-{2-[({(5α, 6α)-4,5-环氧-3,14-二羟基-17-甲基吗啡-6-基}-氨基羰基)甲氧基]-乙酰氨基氨基}-纳尔曲多是一种二价阿片配体,含有一种μ -阿片受体激动剂(衍生自氧吗啡酮),通过21个原子的间隔连接到δ -阿片受体拮抗剂(与纳尔曲多相关),据报道在小鼠中具有有效的镇痛作用。耐受性、身体依赖性和条件位置偏好在该物种中不明显。该系列的二价配体(间隔物为19个原子或更大)缺乏耐受性和依赖性,因此提出MDAN-21靶向异构体多δ阿片受体。目前的研究主要集中在它对非人灵长类动物(猕猴)的影响上,这是一种与人类有着生理和行为特征的物种。关于阿片类药物,这个物种通常能更好地预测临床结果。MDAN-21在吗啡依赖猴皮下注射0.006 ~ 0.032 mg/kg的极低剂量范围内替代吗啡。虽然MDAN-21在0.0032-0.032 mg/kg的剂量范围内不能产生可靠的热镇痛,但在相同剂量范围和相同给药途径下,在辣椒素诱导的热异常痛实验中,它是有活性的。结果表明,MDAN-21可能有助于治疗阿片类药物依赖和异常性疼痛。这些数据提供了阿片类药物戒断与致敏性疼痛相关的额外证据。
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期刊介绍: International Journal of Medicinal Chemistry is a peer-reviewed, Open Access journal that publishes original research articles as well as review articles in all areas of chemistry associated with drug discovery, design, and synthesis. International Journal of Medicinal Chemistry is a peer-reviewed, Open Access journal that publishes original research articles as well as review articles in all areas of chemistry associated with drug discovery, design, and synthesis.
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