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4-[18F]氟-间羟苯乙胺:一种正电子发射断层扫描用放射性药物,可定量评估区域性心脏交感神经密度。

4-[18F]Fluoro-m-hydroxyphenethylguanidine: a radiopharmaceutical for quantifying regional cardiac sympathetic nerve density with positron emission tomography.

机构信息

Division of Nuclear Medicine, Department of Radiology, University of Michigan Medical School , 2276 Medical Sciences I Building, Ann Arbor, Michigan 48109, United States.

出版信息

J Med Chem. 2013 Sep 26;56(18):7312-23. doi: 10.1021/jm400770g. Epub 2013 Sep 5.

Abstract

4-[(18)F]Fluoro-m-hydroxyphenethylguanidine ([(18)F]4F-MHPG, [(18)F]1) is a new cardiac sympathetic nerve radiotracer with kinetic properties favorable for quantifying regional nerve density with PET and tracer kinetic analysis. An automated synthesis of [(18)F]1 was developed in which the intermediate 4-[(18)F]fluoro-m-tyramine ([(18)F]16) was prepared using a diaryliodonium salt precursor for nucleophilic aromatic [(18)F]fluorination. In PET imaging studies in rhesus macaque monkeys, [(18)F]1 demonstrated high quality cardiac images with low uptake in lungs and the liver. Compartmental modeling of [(18)F]1 kinetics provided net uptake rate constants Ki (mL/min/g wet), and Patlak graphical analysis of [(18)F]1 kinetics provided Patlak slopes Kp (mL/min/g). In pharmacological blocking studies with the norepinephrine transporter inhibitor desipramine (DMI), each of these quantitative measures declined in a dose-dependent manner with increasing DMI doses. These initial results strongly suggest that [(18)F]1 can provide quantitative measures of regional cardiac sympathetic nerve density in human hearts using PET.

摘要

4-[(18)F]氟-间-羟苯乙胺([(18)F]4F-MHPG,[(18)F]1)是一种新的心脏交感神经放射性示踪剂,具有适合使用 PET 和示踪动力学分析定量区域性神经密度的动力学特性。开发了一种自动合成[(18)F]1的方法,其中使用二芳基碘鎓盐前体制备中间产物 4-[(18)F]氟-间-酪氨酸([(18)F]16)进行亲核芳香[(18)F]氟化。在恒河猴的 PET 成像研究中,[(18)F]1 显示出高质量的心脏图像,肺部和肝脏的摄取量低。[(18)F]1 动力学的房室模型分析提供了净摄取率常数 Ki (mL/min/g 湿重),[(18)F]1 动力学的 Patlak 图形分析提供了 Patlak 斜率 Kp (mL/min/g)。在使用去甲肾上腺素转运蛋白抑制剂去甲丙咪嗪(DMI)的药理学阻断研究中,这些定量测量中的每一个都随着 DMI 剂量的增加而呈剂量依赖性下降。这些初步结果强烈表明,[(18)F]1 可以使用 PET 提供人类心脏区域心脏交感神经密度的定量测量。

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