Raffel David M, Jung Yong-Woon, Gildersleeve David L, Sherman Phillip S, Moskwa James J, Tluczek Louis J, Chen Wei
Division of Nuclear Medicine, Department of Radiology, 3480 Kresge III Building, University of Michigan Medical School, Ann Arbor, Michigan 48109, USA.
J Med Chem. 2007 May 3;50(9):2078-88. doi: 10.1021/jm061398y. Epub 2007 Apr 10.
The norepinephrine transporter (NET) substrates [123I]-m-iodobenzylguanidine (MIBG) and [11C]-m-hydroxyephedrine (HED) are used as markers of cardiac sympathetic neurons and adrenergic tumors (pheochromocytoma, neuroblastoma). However, their rapid NET transport rates limit their ability to provide accurate measurements of cardiac nerve density. [11C]Phenethylguanidine ([11C]1a) and 12 analogues ([11C]1b-m) were synthesized and evaluated as radiotracers with improved kinetics for quantifying cardiac nerve density. In isolated rat hearts, neuronal uptake rates of [11C]1a-m ranged from 0.24 to 1.96 mL min-1 (g wet wt)-1, and six compounds had extremely long neuronal retention times (clearance T1/2 > 20 h) due to efficient vesicular storage. Positron emission tomography (PET) studies in nonhuman primates with [11C]1e, N-[11C]guanyl-m-octopamine, which has a slow NET transport rate, showed improved myocardial kinetics compared to HED. Compound [11C]1c, [11C]-p-hydroxyphenethylguanidine, which has a rapid NET transport rate, avidly accumulated into rat pheochromocytoma xenograft tumors in mice. These encouraging findings demonstrate that radiolabeled phenethylguanidines deserve further investigation as radiotracers of cardiac sympathetic innervation and adrenergic tumors.
去甲肾上腺素转运体(NET)底物[123I]-间碘苄胍(MIBG)和[11C]-间羟基麻黄碱(HED)被用作心脏交感神经元和肾上腺能肿瘤(嗜铬细胞瘤、神经母细胞瘤)的标志物。然而,它们快速的NET转运速率限制了其准确测量心脏神经密度的能力。合成了[11C]苯乙胍([11C]1a)及其12种类似物([11C]1b - m),并将其作为放射性示踪剂进行评估,这些示踪剂具有改善的动力学特性,可用于定量心脏神经密度。在离体大鼠心脏中,[11C]1a - m的神经元摄取速率范围为0.24至1.96 mL·min-1·(g湿重)-1,并且由于有效的囊泡储存,六种化合物具有极长的神经元保留时间(清除半衰期>20小时)。在非人类灵长类动物中使用[11C]1e(N-[11C]胍基间章鱼胺,其NET转运速率较慢)进行的正电子发射断层扫描(PET)研究表明,与HED相比,心肌动力学有所改善。化合物[11C]1c([11C]-对羟基苯乙胍),其NET转运速率较快,在小鼠体内能大量积聚到大鼠嗜铬细胞瘤异种移植瘤中。这些令人鼓舞的发现表明,放射性标记的苯乙胍作为心脏交感神经支配和肾上腺能肿瘤的放射性示踪剂值得进一步研究。