Molecular Imaging Chemical Laboratory, Wolfson Brain Imaging Centre, Department of Clinical Neurosciences, University of Cambridge, Biomedical Campus, Cambridge, CB2 0SZ, UK.
School of Chemistry, The University of Sydney, Building F11, Eastern Avenue, Sydney, NSW, 2006, Australia.
ChemMedChem. 2019 May 6;14(9):982-993. doi: 10.1002/cmdc.201900023. Epub 2019 Apr 8.
Translocator protein (TSPO) is a biomarker of neuroinflammation, which is a hallmark of many neurodegenerative diseases and has been exploited as a positron emission tomography (PET) target. Carbon-11-labelled PK11195 remains the most applied agent for imaging TSPO, despite its short-lived isotope and low brain permeability. Second-generation radiotracers show variance in affinity amongst subjects (low-, mixed-, and high-affinity binders) caused by the genetic polymorphism (rs6971) of the TSPO gene. To overcome these limitations, a new structural scaffold was explored based on the TSPO pharmacophore, and the analogue with a low-affinity binder/high-affinity binder (LAB/HAB) ratio similar (1.2 vs. 1.3) to that of (R)-[ C]PK11195 was investigated. The synthesis of the reference compound was accomplished in six steps and 9 % overall yield, and the precursor was prepared in eight steps and 8 % overall yield. The chiral separation of the reference and precursor compounds was performed using supercritical fluid chromatography with >95 % ee. The absolute configuration was determined by circular dichroism. Optimisation of reaction conditions for manual radiolabelling revealed acetonitrile as a preferred solvent at 100 °C. Automation of this radiolabelling method provided R and S enantiomers in respective 21.3±16.7 and 25.6±7.1 % decay-corrected yields and molar activities of 55.8±35.6 and 63.5±39.5 GBq μmol (n=3). Injection of the racemic analogue into a healthy rat confirmed passage through the blood-brain barrier.
转位蛋白(TSPO)是神经炎症的生物标志物,它是许多神经退行性疾病的标志,并被用作正电子发射断层扫描(PET)的靶点。尽管碳-11 标记的 PK11195 半衰期短,脑穿透性低,但仍是最常用的 TSPO 成像剂。第二代放射性示踪剂在亲和力方面存在差异(低亲和力结合物、混合亲和力结合物和高亲和力结合物),这是由 TSPO 基因的遗传多态性(rs6971)引起的。为了克服这些限制,我们基于 TSPO 的药效基团探索了一种新的结构骨架,并研究了一种具有类似低亲和力结合物/高亲和力结合物(LAB/HAB)比值(1.2 对 1.3)的类似物。参考化合物的合成分六步进行,总收率为 9%,前体分 8 步进行,总收率为 8%。使用超临界流体色谱法对参考和前体化合物进行手性分离,ee 值大于 95%。通过圆二色性确定绝对构型。优化手动放射性标记的反应条件表明,乙腈是 100°C 时的首选溶剂。该放射性标记方法的自动化提供了 R 和 S 对映体,分别在 21.3±16.7%和 25.6±7.1%衰变校正产率和摩尔活度为 55.8±35.6 和 63.5±39.5GBq·μmol(n=3)。将外消旋类似物注入健康大鼠体内,证实其可穿过血脑屏障。