Amokhtari M, Andersen K, Ibazizene M, Dhilly M, Dauphin F, Barre L
CEA-DSV/DRM-GDM-TEP, Universite de Caen, France.
Nucl Med Biol. 1998 Aug;25(6):517-22. doi: 10.1016/s0969-8051(98)00021-3.
For mapping 5-HT2 receptors in the central nervous system with positron emission tomography (PET), 2,5-dimethyl-3-(4-fluorophenyl)-1-(1-[11C]methyl-4-piperidinyl)-1H-indol e ([11C]Lu29-024) has been prepared. The precursor for the radiosynthesis of [11C]Lu29-024 was obtained in an overall yield of 53% by a convenient five-step synthesis; its reaction with [11C]methyl iodide afforded [11C]Lu29-024 in 35-50% radiochemical yield (decay corrected) in 45 to 50 min with a specific radioactivity ranging from 11 to 15 GBq/micromol. Following i.v. injections into rats, the analysis of plasma samples showed that the metabolism of [11C]Lu29-024 was rapid and extensive (60% of the original tracer was metabolized at 40 min). In contrast, only unmetabolized [11C]Lu29-024 could be detected in brain tissue. These biological results suggest that labeled metabolites have no access to brain tissue and further propose [11C]Lu29-024 as an interesting tool for PET studies of brain 5HT2 receptors.
为了利用正电子发射断层扫描(PET)对中枢神经系统中的5-羟色胺2(5-HT2)受体进行成像,已制备了2,5-二甲基-3-(4-氟苯基)-1-(1-[11C]甲基-4-哌啶基)-1H-吲哚([11C]Lu29-024)。通过简便的五步合成法,以53%的总收率获得了[11C]Lu29-024的放射性合成前体;它与[11C]甲基碘反应,在45至50分钟内以35 - 50%的放射性化学产率(衰变校正)得到[11C]Lu29-024,比活度范围为11至15 GBq/微摩尔。静脉注射到大鼠体内后,血浆样品分析表明,[11C]Lu29-024的代谢迅速且广泛(40分钟时,60%的原始示踪剂已被代谢)。相比之下,在脑组织中仅能检测到未代谢的[11C]Lu29-024。这些生物学结果表明,标记代谢物无法进入脑组织,并进一步提出[11C]Lu29-024是用于脑5HT2受体PET研究的一种有趣工具。