Mukherjee J, Yang Z Y, Brown T, Roemer J, Cooper M
Franklin McLean Institute, Department of Radiology, University of Chicago, Il 60637, USA.
Life Sci. 1996;59(8):669-78. doi: 10.1016/0024-3205(96)00348-7.
We have developed (S)-N-[(1-allyl-2-pyrrolidinyl)methyl]-5-(3-18F-fluoropropyl)-2- methoxybenzamide (18F-desmethoxyfallypride) as a fluorine-18 radiotracer with properties analogous to that of 11C-raclopride. In vitro experiments in rat brain homogenates showed an association rate constant of 2.16 x 10(8) M(-1)min(-1) and a dissociation rate constant of 0.073 min(-1). High striatal uptake (up to 0.08% injected dose/cc) of 18F-desmethoxyfallypride in rhesus monkeys was observed in PET experiments. The radiotracer cleared from the striata with a dissociation rate of 1.80 x 10(-2) min(-1). Striatum to cerebellum ratios peaked at 3.0 in 30 min after which they decreased steadily. Intravenously administered haloperidol displaced specifically bound 18F-desmethoxyfallypride with a koff of 0.058 min(-1). Synaptic dopamine released by the treatment of the monkeys with d-amphetamine increased the dissociation rate of 18F-desmethoxyfallypride to 0.83 min(-1) thus reducing specifically bound 18F-desmethoxyfallypride by 56% over a period of 42 mins compared to a reduction of only 20% in controls during this time period. The sensitivity of 18F-desmethoxyfallypride towards competition with dopamine should make this radiotracer useful in PET studies to evaluate in vivo pharmacological effects of various agents that alter levels of endogenous dopamine.
我们已研发出(S)-N-[(1-烯丙基-2-吡咯烷基)甲基]-5-(3-18F-氟丙基)-2-甲氧基苯甲酰胺(18F-去甲氧基法立哌唑)作为一种氟-18放射性示踪剂,其性质与11C-雷氯必利类似。在大鼠脑匀浆的体外实验中,观察到其结合速率常数为2.16×10(8) M(-1)min(-1),解离速率常数为0.073 min(-1)。在正电子发射断层扫描(PET)实验中,恒河猴纹状体对18F-去甲氧基法立哌唑有较高摄取(高达0.08%注射剂量/立方厘米)。该放射性示踪剂从纹状体清除的解离速率为1.80×10(-2) min(-1)。纹状体与小脑的比值在30分钟时达到峰值3.0,之后稳步下降。静脉注射氟哌啶醇能特异性取代结合的18F-去甲氧基法立哌唑,其解离常数为0.058 min(-1)。用d-苯丙胺治疗猴子后释放的突触多巴胺使18F-去甲氧基法立哌唑的解离速率增加到0.83 min(-1),因此在42分钟内特异性结合的18F-去甲氧基法立哌唑减少了56%,而在此时间段内对照组仅减少了20%。18F-去甲氧基法立哌唑对与多巴胺竞争的敏感性应使该放射性示踪剂在PET研究中可用于评估各种改变内源性多巴胺水平的药物的体内药理作用。