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[3H]DuP 734 [1-(环丙基甲基)-4-(2'-(4''-氟苯基)-2'-氧代乙基)-哌啶溴化氢]:豚鼠脑中一种新型高亲和力σ受体配体的受体结合特征

[3H]DuP 734 [1-(cyclopropylmethyl)-4-(2'-(4''-fluorophenyl)-2'- oxoethyl)-piperidine HBr]: a receptor binding profile of a high-affinity novel sigma receptor ligand in guinea pig brain.

作者信息

Culp S G, Rominger D, Tam S W, De Souza E B

机构信息

Du Pont Merck Pharmaceutical Company, Wilmington, Delaware.

出版信息

J Pharmacol Exp Ther. 1992 Dec;263(3):1175-87.

PMID:1361573
Abstract

The in vitro binding properties of 1-(cyclopropylmethyl)-4-(2'-(4''-fluorophenyl)-2'-oxoethyl)pipe ridi ne HBr, [3H]DuP 734, a novel sigma receptor ligand, were examined in homogenates of guinea pig brain. Specific [3H]DuP 734 binding (10 microM haloperidol-displaceable) in cerebellum was dependent on pH, temperature and membrane protein concentration, reversible, saturable and of high affinity (KD = 228 +/- 34 pM; Bmax = 3856 +/- 340 fmol/mg protein). [3H]DuP 734 binding was substantially reduced by treating the membrane with proteases and completely abolished by heat denaturation. [3H]DuP 734 binding was unaffected by the presence of ions or guanine nucleotides. The pharmacological characteristics of [3H]DuP 734 binding in cerebellum displayed the same rank order and stereospecificity as previously reported for sigma receptors in brain. [3H]DuP 734-labeled sigma receptors were heterogeneously distributed throughout the central nervous systems with highest densities present in pons/medulla, hypothalamus, spinal cord and cerebellum. In addition to labeling sigma receptors, a second, lower affinity, haloperidol-insensitive [3H] DuP 734 binding site was observed in the cerebral cortex. This second site could not be positively identified as a neuronal receptor because a series of standard compounds were unable to displace [3H]DuP 734 from the haloperidol-insensitive site; only structural analogs of DuP 734 proved effective in displacing [3H]DuP 734 from the haloperidol-insensitive site. In summary, [3H]DuP 734 is a novel ligand that binds with high affinity to sigma receptors in brain.

摘要

新型σ受体配体1-(环丙基甲基)-4-(2'-(4''-氟苯基)-2'-氧代乙基)哌啶溴化氢([3H]DuP 734)的体外结合特性在豚鼠脑匀浆中进行了研究。小脑内特异性的[3H]DuP 734结合(10μM氟哌啶醇可置换)依赖于pH、温度和膜蛋白浓度,具有可逆性、饱和性且亲和力高(KD = 228±34 pM;Bmax = 3856±340 fmol/mg蛋白)。用蛋白酶处理膜可使[3H]DuP 734结合显著减少,热变性则可使其完全消除。离子或鸟嘌呤核苷酸的存在不影响[3H]DuP 734结合。小脑内[3H]DuP 734结合的药理学特性显示出与先前报道的脑内σ受体相同的排序和立体特异性。[3H]DuP 734标记的σ受体在整个中枢神经系统中呈异质性分布,在脑桥/延髓、下丘脑、脊髓和小脑中密度最高。除了标记σ受体外,在大脑皮层还观察到第二个亲和力较低、对氟哌啶醇不敏感的[3H]DuP 734结合位点。由于一系列标准化合物无法从对氟哌啶醇不敏感的位点置换[3H]DuP 734,因此无法明确将这个第二位点鉴定为神经元受体;只有DuP 734的结构类似物被证明能有效地从对氟哌啶醇不敏感的位点置换[3H]DuP 734。总之,[3H]DuP 734是一种新型配体,它与脑内的σ受体具有高亲和力结合。

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