Shao Xia, Koeppe Robert A, Butch Elizabeth R, Kilbourn Michael R, Snyder Scott E
Division of Nuclear Medicine, Department of Radiology, University of Michigan Medical Center, Ann Arbor, MI 48109, USA.
Bioorg Med Chem. 2005 Feb 1;13(3):869-75. doi: 10.1016/j.bmc.2004.10.034.
Four 18F-labeled acetylcholinesterase (AChE) substrates, (S)-N-[18F]fluoroethyl-2-piperidinemethyl acetate (1), (R)-N-[18F]fluoroethyl-3-pyrrolidinyl acetate (2), N-[18F]fluoroethyl-4-piperidinyl acetate (3), and (R)-N-[18F]fluoroethyl-3-piperidinyl acetate (4), were evaluated for in vivo blood and brain metabolism in mice, brain pharmacokinetics in rats monkeys (M. nemistrina) using PET imaging. All 18F-labeled compounds were compared to N-[11C]methyl-4-piperidinyl propionate (PMP). Compound 1 was completely metabolized within 1 min in mouse blood and brain. This compound had relatively fast regional brain pharmacokinetics and poor discrimination between brain regions with different AChE concentration. Compound 4 showed relatively slower blood metabolism and slower pharmacokinetics than compound 1 but again poor discrimination between brain regions. Both compounds 1 and 4 showed different kinetic profiles than PMP in PET studies. Compound 3 had the slowest blood metabolism and slower pharmacokinetics than PMP. Compound 2 showed highly encouraging characteristics with an in vivo metabolism rate, primate brain uptake, and regional brain pharmacokinetics similar to [11C]PMP. The apparent hydrolysis rate constant k3 in primate cortex was very close to that of [11C]PMP. This compound has potential to be a good PET radiotracer for measuring brain AChE activity. The longer lifetime of 18F would permit longer imaging times and allows preparation of radiotracer batches for multiple patients and delivery of the tracer to other facilities, making the technique more widely available to clinical investigators.
使用正电子发射断层扫描(PET)成像技术,对四种18F标记的乙酰胆碱酯酶(AChE)底物,即(S)-N-[18F]氟乙基-2-哌啶甲基乙酸酯(1)、(R)-N-[18F]氟乙基-3-吡咯烷基乙酸酯(2)、N-[18F]氟乙基-4-哌啶基乙酸酯(3)和(R)-N-[18F]氟乙基-3-哌啶基乙酸酯(4),进行了小鼠体内血液和脑代谢、大鼠和猕猴(食蟹猴)脑药代动力学的评估。将所有18F标记的化合物与N-[11C]甲基-4-哌啶基丙酸酯(PMP)进行了比较。化合物1在小鼠血液和脑中1分钟内完全代谢。该化合物具有相对较快的区域脑药代动力学,且对不同AChE浓度的脑区分辨能力较差。化合物4的血液代谢和药代动力学比化合物1相对较慢,但同样对脑区的分辨能力较差。在PET研究中,化合物1和4的动力学曲线均与PMP不同。化合物3的血液代谢最慢,药代动力学比PMP慢。化合物2表现出非常令人鼓舞的特性,其体内代谢率、灵长类动物脑摄取和区域脑药代动力学与[11C]PMP相似。灵长类动物皮层中的表观水解速率常数k3与[11C]PMP非常接近。该化合物有潜力成为一种用于测量脑AChE活性的良好PET放射性示踪剂。18F的半衰期更长,将允许更长的成像时间,并允许为多名患者制备放射性示踪剂批次,并将示踪剂运送到其他机构,从而使该技术更广泛地应用于临床研究人员。