Sihver W, Fasth K J, Ogren M, Bivehed H, Bergström M, Nordberg A, Watanabe Y, Långström B
Subfemtomole Biorecognition Project, Japan Science and Technology Corporation and PET Centre, Uppsala University, Sweden.
J Neurochem. 1998 Oct;71(4):1750-60. doi: 10.1046/j.1471-4159.1998.71041750.x.
The binding characteristics of the novel 11C-labeled nicotinic ligands (R,S)-1-methyl-2-(3-pyridyl) azetidine (MPA) and (S)-3-methyl-5-(1-methyl-2-pyrrolidinyl)isoxazole (ABT-418) were investigated in comparison with those of (S)-[11C]nicotine in vitro in the rat brain to be able to predict the binding properties of the new ligands for positron emission tomography studies in vivo. The data from time-resolved experiments for all ligands indicated fast binding kinetics, with the exception of a slower dissociation of [11C]MPA in comparison with (S)-[11C]nicotine and [11C]ABT-418. Saturation experiments revealed for all ligands two nicotinic receptor binding sites with affinity constants (K(D) values) of 2.4 and 560 nM and binding site densities (Bmax values) of 65.5 and 223 fmol/mg of protein for (S)-[11C]nicotine, K(D) values of 0.011 and 2.2 nM and Bmax values of 4.4 and 70.7 fmol/mg of protein for [11C]MPA, and K(D) values of 1.3 and 33.4 nM and Bmax values of 8.8 and 69.2 fmol/mg of protein for [11C]ABT-418. In competing with the 11C-ligands, epibatidine was most potent, followed by cytisine. A different rank order of potencies was found for (-)-nicotine, (+)-nicotine, MPA, and ABT-418 displacing each of the 11C-ligands. Autoradiograms displayed a similar pattern of receptor binding for all ligands, whereby [11C]MPA showed the most distinct binding pattern and the lowest nonspecific binding. We conclude that the three 11C-labeled nicotinic ligands were suitable for characterizing nicotinic receptors in vitro. The very high affinity of [11C]MPA to nicotinic acetylcholine receptors, its low nonspecific binding, and especially the slower dissociation kinetics of the [11C] MPA from the putative high-affinity nicotinic acetylcholine receptor binding site compared with (S)-[11C]nicotine and [11C]ABT-418 raise the level of interest in [11C]MPAfor application in positron emission tomography.
为了能够预测新型11C标记的烟碱类配体在体内正电子发射断层扫描研究中的结合特性,在体外大鼠脑中研究了新型11C标记的烟碱类配体(R,S)-1-甲基-2-(3-吡啶基)氮杂环丁烷(MPA)和(S)-3-甲基-5-(1-甲基-2-吡咯烷基)异恶唑(ABT-418)与(S)-[11C]尼古丁的结合特性。所有配体的时间分辨实验数据表明结合动力学很快,不过与(S)-[11C]尼古丁和[11C]ABT-418相比,[11C]MPA的解离较慢。饱和实验显示所有配体均有两个烟碱受体结合位点,(S)-[11C]尼古丁的亲和常数(KD值)为2.4和560 nM,结合位点密度(Bmax值)为65.5和223 fmol/mg蛋白质;[11C]MPA的KD值为0.011和2.2 nM,Bmax值为4.4和70.7 fmol/mg蛋白质;[11C]ABT-418的KD值为1.3和33.4 nM,Bmax值为8.8和69.2 fmol/mg蛋白质。在与11C-配体竞争时,埃博霉素最有效,其次是金雀花碱。对于(-)-尼古丁、(+)-尼古丁、MPA和ABT-418取代每种11C-配体,发现了不同的效价顺序。放射自显影显示所有配体的受体结合模式相似,其中[11C]MPA显示出最明显的结合模式和最低的非特异性结合。我们得出结论,这三种11C标记的烟碱类配体适用于体外表征烟碱受体。与(S)-[11C]尼古丁和[11C]ABT-418相比,[11C]MPA对烟碱型乙酰胆碱受体具有非常高的亲和力,其非特异性结合低,尤其是[11C]MPA从假定的高亲和力烟碱型乙酰胆碱受体结合位点的解离动力学较慢,这提高了人们对[11C]MPA在正电子发射断层扫描中应用的兴趣。