Kiesewetter D O, Eckelman W C, Cohen R M, Finn R D, Larson S M
Int J Rad Appl Instrum A. 1986;37(12):1181-8. doi: 10.1016/0883-2889(86)90003-1.
The development of a high affinity dopamine receptor ligand labeled with the positron emitting radionuclide, 18F (t 1/2 = 110 min), is of considerable interest for imaging and quantification of dopamine receptors in vivo. Derivatives of spiperone, a dopamine antagonist, labeled with 18F have been prepared, but the syntheses either proceed with inefficient fluoride utilization or involve several synthetic steps subsequent to 18F incorporation. To date, only the short-lived radioisotope of carbon, 11C (t 1/2 = 20.4 min), has been efficiently incorporated in the final synthetic step of 3-N-[11C]methyl-spiperone. 3-N-Fluoroethyl, 3-N-chloroethyl, and 3-N-bromoethyl spiperone derivatives are prepared by alkylation of spiperone with the appropriate 2-tosyloxy ethyl halide. In addition, alpha-fluorospiperone, containing fluorine alpha to the butyrophenone carbonyl, has been prepared. The 3-N-haloethyl spiperones display high affinity for dopamine receptor in vitro. Incorporation of [18F]fluoride during the final synthetic step yields a high affinity, 18F-labeled dopamine receptor-binding ligand.
开发一种用发射正电子的放射性核素18F(半衰期 = 110分钟)标记的高亲和力多巴胺受体配体,对于体内多巴胺受体的成像和定量具有相当大的意义。已制备了用18F标记的多巴胺拮抗剂螺哌隆的衍生物,但合成过程要么氟利用率低,要么在引入18F后涉及几个合成步骤。迄今为止,只有碳的短寿命放射性同位素11C(半衰期 = 20.4分钟)已有效地引入到3-N-[11C]甲基-螺哌隆的最终合成步骤中。通过用适当的2-对甲苯磺酰氧基乙基卤对螺哌隆进行烷基化反应制备3-N-氟乙基、3-N-氯乙基和3-N-溴乙基螺哌隆衍生物。此外,还制备了在丁酰苯羰基的α位含有氟的α-氟螺哌隆。3-N-卤代乙基螺哌隆在体外对多巴胺受体显示出高亲和力。在最终合成步骤中引入[18F]氟化物可产生一种高亲和力的、18F标记的多巴胺受体结合配体。