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Bifunctional μ?δ Opioid Peptides: Variation of the Type and Length of the Linker Connecting the Two Components

机译:双功能μδδ阿片肽:连接两个组件的接头类型和长度的变化

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On the basis of evidence that opioid compounds with a mixed μ agonist ? δ antagonist profile may produce an antinociceptive effect with low propensity to induce side effects, bifunctional opioid peptides containing the μ agonist H-Dmt-D-Arg-Phe-Lys-NH_2 ([Dmt~1]DALDA; Dmt = 2',6'-dimethyltyrosine) connected tail-to-tail via various α,ω-diaminoalkyl- or diaminocyclohexane linkers to the δ antagonists H-Tyr-TicΨ[CH_2-NH]Cha-Phe-OH (TICP[Ψ]; Cha = cyclohexylalanine, Tic = 1,2,3,4-tetrahydroisoquinoline- 3-carboxylic acid), H-Dmt-Tic-OH or H-Bcp- Tic-OH (Bcp = 4'-[N-((4'-phenyl)phenethyl)carboxamido] phenylalanine) were synthesized and pharmacologically characterized in vitro. Bifunctional [Dmt~1]DALDA→NH-(CH_2)_n-NH←CP[Ψ] compounds (n = 0-12) showed decreasing μ and δ receptor binding affinities with increasing linker length. As expected, several of the bifunctional peptides were l agonist ? δ antagonists with low nanomolar μ and δ receptor binding affinities. However, compounds with unexpected opioid activity profiles, including a μ partial agonist ? δ partial agonist, μ antagonist ? δ antagonists and μ agonist ? δ agonists, were also identified. These results indicate that the binding affinities and intrinsic efficacies of these bifunctional compounds at both receptors depend on the length and type of the linker connecting the μ and d components. An important recommendation emerging from this study is that the in vitro activity profiles of bifunctional compounds containing an agonist and an antagonist component connected via a linker need to be determined prior to their pharmacological evaluation in vivo.
机译:根据证据,阿片类化合物具有混合的μ激动剂? δ拮抗剂谱可能产生低伤害性的抗伤害作用,以诱导产生副作用,双功能阿片肽含有μ激动剂H-Dmt-D-Arg-Phe-Lys-NH_2([Dmt〜1] DALDA; Dmt = 2',6 (-二甲基酪氨酸)通过各种α,ω-二氨基烷基-或二氨基环己烷接头与δ拮抗剂H-Tyr-TicΨ[CH_2-NH] Cha-Phe-OH(TICP [Ψ]; Cha =环己基丙氨酸, Tic = 1,2,3,4-四氢异喹啉3-羧酸),H-Dmt-Tic-OH或H-Bcp- Tic-OH(Bcp = 4'-[N-(((4'-苯基))苯乙基(羧酰胺基)苯丙氨酸)的合成和体外药理学表征。双功能[Dmt〜1] DALDA→NH-(CH_2)_n-NH←CP [Ψ]化合物(n = 0-12)显示随着连接子长度的增加,μ和δ受体结合亲和力降低。如预期的那样,几种双功能肽是l激动剂?具有低纳摩尔μ和δ受体结合亲和力的δ拮抗剂。但是,化合物具有意想不到的阿片类药物活性,包括μ部分激动剂? δ部分激动剂,μ拮抗剂? δ拮抗剂和μ激动剂?还确定了δ激动剂。这些结果表明,这些双功能化合物在两个受体上的结合亲和力和内在效力取决于连接μ和d组分的接头的长度和类型。这项研究提出的一个重要建议是,在体内进行药理评估之前,需要确定包含通过连接子连接的激动剂和拮抗剂成分的双功能化合物的体外活性谱。

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