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反位α-N-(从甲基到癸基)-N-去甲美他佐辛(5,9α-二甲基-2'-羟基-6,7-苯并吗啡烷):体内外性质

Antipodal alpha-N-(methyl through decyl)-N-normetazocines (5,9 alpha-dimethyl-2'-hydroxy-6,7-benzomorphans): in vitro and in vivo properties.

作者信息

May E L, Aceto M D, Bowman E R, Bentley C, Martin B R, Harris L S, Medzihradsky F, Mattson M V, Jacobson A E

机构信息

Department of Pharmacology and Toxicology, Medical College of Virginia, Virginia Commonwealth University, Richmond 23298-0613.

出版信息

J Med Chem. 1994 Sep 30;37(20):3408-18. doi: 10.1021/jm00046a026.

Abstract

The enantiomeric (-)- and (+)-N-(methyl through decyl) normetazocines (5,9 alpha-dimethyl-2'-hydroxy-6,7-benzomorphans) were synthesized and their in vitro and in vivo activities determined. Increasingly bulky enantiomeric N-alkyl homologs were prepared until their interaction with the sigma 1 receptor decreased and their insolubility became a hindrance to their evaluation in vivo and/or in vitro. The (-)-methyl, -pentyl, -hexyl, and -heptyl homologs were essentially as potent as, or more potent than, morphine in the tail-flick, phenylquinone, and hot-plate assays for antinociceptive activity; the (-)-propyl homolog had narcotic antagonist activity between that of nalorphine and naloxone in the tail-flick vs morphine assay, and it also displayed antagonist properties in the single-dose suppression assay in the rhesus monkey. The antinociceptively potent (-)-heptyl homolog did not substitute for morphine in monkeys but did show morphine-like properties in a primary physical-dependence study in continuously infused rats. All five potent compounds showed high affinity for the mu opioid receptor from both rat and monkey preparations and the kappa opioid receptor (< 0.05 microM), and all except the (-)-methyl homolog interacted reasonably well at the delta receptor (K(i) < 0.1 microM). The (-)-propyl compound was equipotent (K(i) 1.5-2.0 nM) at mu and kappa receptors. The pattern of interaction of the (-)-enantiomeric homologs with mu receptors from rat and monkey preparations was similar, but not identical. The enantioselectivity of the homologs for mu receptors was greater in the rat than in the monkey preparation for all but the N-H and butyl compounds, and the enantioselectivity of the lower homologs (methyl through butyl) for the mu (monkey) receptor was greater than for the kappa or delta receptors. However, bulkier homologs (hexyl through decyl) displayed higher enantioselectivity at kappa or delta receptors than at the mu (monkey) receptor. The (+)-butyl through (+)-octyl homologs were essentially equipotent with, or more potent than, (+)-pentazocine at the sigma receptor. Only the (+)-H and (+)-methyl homologs had high affinity (< 0.05 microM) at PCP binding sites.

摘要

合成了对映体(-)-和(+)-N-(甲基至癸基)去甲美沙酮(5,9α-二甲基-2'-羟基-6,7-苯并吗啡烷),并测定了它们的体外和体内活性。制备了越来越庞大的对映体N-烷基同系物,直到它们与σ1受体的相互作用降低,且它们的不溶性成为其体内和/或体外评估的障碍。(-)-甲基、-戊基、-己基和-庚基同系物在甩尾、苯醌和热板试验中对抗伤害感受活性的效力基本上与吗啡相同,或比吗啡更强;(-)-丙基同系物在甩尾与吗啡试验中的麻醉拮抗活性介于纳洛芬和纳洛酮之间,并且在恒河猴的单剂量抑制试验中也表现出拮抗特性。具有抗伤害感受活性的强效(-)-庚基同系物在猴子中不能替代吗啡,但在连续输注大鼠的主要身体依赖性研究中确实表现出吗啡样特性。所有这五种强效化合物对大鼠和猴子制剂中的μ阿片受体以及κ阿片受体均表现出高亲和力(<0.05μM),并且除了(-)-甲基同系物外,所有化合物在δ受体处的相互作用都相当良好(K(i)<0.1μM)。(-)-丙基化合物在μ和κ受体处的效力相当(K(i)1.5 - 2.0 nM)。(-)-对映体同系物与大鼠和猴子制剂中的μ受体的相互作用模式相似,但不完全相同。除了N-H和丁基化合物外,同系物对大鼠μ受体的对映选择性大于对猴子制剂的对映选择性,并且较低同系物(甲基至丁基)对μ(猴子)受体的对映选择性大于对κ或δ受体的对映选择性。然而,更庞大的同系物(己基至癸基)在κ或δ受体处的对映选择性高于在μ(猴子)受体处的对映选择性。(+)-丁基至(+)-辛基同系物在σ受体处的效力基本上与(+)-喷他佐辛相同,或比(+)-喷他佐辛更强。只有(+)-H和(+)-甲基同系物在PCP结合位点具有高亲和力(<0.05μM)。

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