Preclinical Imaging, Department of Radiological Sciences, University of California-Irvine, Irvine, CA 92697, USA.
Molecules. 2023 Dec 16;28(24):8128. doi: 10.3390/molecules28248128.
Nicotinic acetylcholine receptors (nAChRs) are involved in various central nervous system functions and have also been implicated in several neurodegenerative disorders. The heteromeric α4β2* and homomeric α7 are two major nAChR subtypes which have been studied in the brain using positron emission tomography (PET). Our comparative autoradiographic studies of the two receptor types in the mouse and rat brains show major differences in the thalamus (α4β2* >> α7), hippocampus (α7 >> α4β2*), and subiculum (α4β2* >> α7). A relatively newer heteromeric α7β2 nAChR subtype has been identified in the brain which may have a greater role in neurodegeneration. We report the development of KS7 (3-(2-()-azetidinylmethoxy)-5-(1,4-diaza-bicyclo[3.2.2]nonane)pyridine) which incorporates structural features of Nifzetidine (high affinity for α4β2* nAChR) and ASEM (high affinity for α7 nAChR) in an effort to target α7 and β2 subunits in α7β2 nAChR. KS7 exhibited higher affinities (IC = 50 to 172 nM) for [H]cytisine radiolabeled sites and weaker affinities (IC = 10 μM) for [I]-α-bungarotoxin radiolabeled rat brain sites in several brain regions. The weaker affinity of KS7 to α7 nAChR may suggest lack of binding at the α7 subunit of α7β2 nAChR. A radiolabeled derivative of KS7 may be required to identify any specific binding to brain regions suggested to contain α7β2 nAChR.
烟碱型乙酰胆碱受体 (nAChRs) 参与多种中枢神经系统功能,也与几种神经退行性疾病有关。异源二聚体 α4β2和同源二聚体 α7 是两种主要的 nAChR 亚型,已经在大脑中使用正电子发射断层扫描 (PET) 进行了研究。我们在小鼠和大鼠大脑中对这两种受体类型的比较放射自显影研究表明,在丘脑(α4β2 > α7)、海马(α7 > α4β2*)和下托(α4β2* > α7)中存在主要差异。在大脑中已经鉴定出一种相对较新的异源二聚体 α7β2 nAChR 亚型,它可能在神经退行性变中起更大作用。我们报告了 KS7(3-(2-(-)-氮杂环丁烷-1-基甲氧基)-5-(1,4-二氮杂双环[3.2.2]壬烷)吡啶)的开发,该药物结合了 Nifzetidine(对 α4β2* nAChR 的高亲和力)和 ASEM(对 α7 nAChR 的高亲和力)的结构特征,旨在靶向 α7 和 β2 亚基在 α7β2 nAChR 中。KS7 对 [H]烟碱标记的位点表现出更高的亲和力(IC = 50 至 172 nM),对几种脑区中 [I]-α-银环蛇毒素标记的大鼠脑位点的亲和力较弱(IC = 10 μM)。KS7 对 α7 nAChR 的亲和力较弱可能表明其缺乏与 α7β2 nAChR 的 α7 亚基结合。需要放射性标记的 KS7 衍生物来鉴定任何对据报道含有 α7β2 nAChR 的脑区的特异性结合。