Ward S J, Fries D S, Larson D L, Portoghese P S, Takemori A E
Eur J Pharmacol. 1985 Jan 8;107(3):323-30. doi: 10.1016/0014-2999(85)90257-2.
beta-Funaltrexamine (beta-FNA) bound to mouse brain membranes in a reversible and an irreversible (not removed by washing of the membrane) manner, and a portion of each type of binding was opioid-specific. Addition of 100 mM NaCl to the incubating medium enhanced the binding of beta-FNA to membranes. Using membranes preincubated with beta-FNA (1 microM) and then washed three times, the maximum number of binding sites available to [3H]morphine was markedly diminished whereas the affinity of morphine for binding sites was not significantly altered. The binding of [3H]naltrexone was also reduced markedly by beta-FNA pretreatment. In similarly pretreated membranes, the binding of [3H]methionine enkephalin [3H][D-Ala2,D-Leu5]enkephalin (DADLE) or [3H]ethylketazocine was reduced to a smaller extent. Using brain membranes from mice pretreated with a single subcutaneous injection of beta-FNA (100 mg/kg) 48 h prior to use, the binding of [3H]methionine enkephalin was unaffected whereas the number of binding sites available to [3H]morphine was significantly reduced. The inhibition by various ligands of the reversible binding of [3H] beta-FNA resembled the relative ability of the same ligands to inhibit the binding of [3H]ethylketazocine. It was concluded that the irreversible portion of the binding of beta-FNA demonstrates a selectivity for mu over delta binding sites, and that the reversible portion of the binding of beta-FNA demonstrates a selectivity for kappa binding sites over mu or delta binding sites. As such, the binding characteristics of beta-FNA are consistent with its profile in vivo and in isolated tissue studies in vitro.
β-芬太尼去甲胺(β-FNA)以可逆和不可逆(通过洗涤膜不能去除)的方式与小鼠脑膜结合,并且每种结合类型的一部分是阿片类特异性的。向孵育培养基中添加100 mM氯化钠可增强β-FNA与膜的结合。使用预先用β-FNA(1 μM)预孵育然后洗涤三次的膜,[3H]吗啡可利用的结合位点最大数量明显减少,而吗啡与结合位点的亲和力没有显著改变。β-FNA预处理也显著降低了[3H]纳曲酮的结合。在类似预处理的膜中,[3H]甲硫氨酸脑啡肽、[3H][D-Ala2,D-Leu5]脑啡肽(DADLE)或[3H]乙基酮唑辛的结合减少程度较小。使用在使用前48小时经皮下单次注射β-FNA(100 mg/kg)预处理的小鼠的脑膜,[3H]甲硫氨酸脑啡肽的结合不受影响,而[3H]吗啡可利用的结合位点数量显著减少。各种配体对[3H]β-FNA可逆结合的抑制作用类似于相同配体抑制[3H]乙基酮唑辛结合的相对能力。得出的结论是,β-FNA结合的不可逆部分显示出对μ型结合位点比对δ型结合位点具有选择性,并且β-FNA结合的可逆部分显示出对κ型结合位点比对μ型或δ型结合位点具有选择性。因此,β-FNA的结合特性与其体内和体外分离组织研究中的情况一致。