Berry C R, Garg P K, Zalutsky M R, Coleman R E, DeGrado T R
Department of Anatomy, Physiological Sciences and Radiology, North Carolina State University, College of Veterinary Medicine, Raleigh 27606, USA.
J Nucl Med. 1996 Dec;37(12):2011-6.
Para-[18F]fluorobenzylguanidine ([18F]PFBG) is a newly developed tracer for imaging myocardial sympathetic neuronal innervation. This study investigated the uptake and retention mechanisms of [18F]PFBG in perfused, isolated rat heart.
Fluorine-18-PFBG was administered to working rat hearts within the perfusion medium at a constant activity concentration (1.5-2 MBq/liter) for 8 min, followed by a washout period (50 min). External scintillation probes with coincidence detection circuitry were used to measure myocardial radioactivity. Six groups of hearts (n = 6, except in Group 6) were studied: (Group 1) control; (Group 2) 100 nM desipramine (DMI); (Group 3) 0.8 microM SKF550; (Group 4) DMI + SKF550; (Group 5) SKF550 + 1.0 microM Ro 4-1284; and (Group 6) SKF550 with DMI chase at 30 min (n = 4).
Groups 2, 3 and 4 showed a mean reduction of 19% (uptake-1 blockade), 58% (uptake-2 blockade) and 95% (uptake-1 and uptake-2 blockade) in uptake rates, respectively, compared with control (p < 0.01). A further 33% reduction in the uptake rate was noted with vesicular transport inhibition (Group 5 compared with 3, p = 0.054). Biphasic clearance consisting of rapid (T1/2 = 5.32 +/- 1.1 min) and slow (T1/2 = 35.2 +/- 9.6 min) components were noted in control hearts. The rapid (T1/2 = 1.6 +/- 0.3 min) and slow (T1/2 = 10.9 +/- 1.4 min) clearance rates were accelerated (p < 0.0001) in Group 5 compared to control. DMI chase conditions (Group 6) caused an inhibition of [18F]PFBG washout (p = 0.004) suggesting a role for reverse transport through the uptake-1 carrier.
Fluorine-18-PFBG is specifically accumulated by sympathetic nerve terminals. However, further work is recommended in humans to evaluate the potential implications of specific extraneuronal uptake of [18F]PFBG through the uptake-2 mechanism.
对-[18F]氟苄胍([18F]PFBG)是一种新开发的用于心肌交感神经神经元支配成像的示踪剂。本研究调查了[18F]PFBG在灌注的离体大鼠心脏中的摄取和保留机制。
将氟-18-PFBG以恒定活度浓度(1.5 - 2 MBq/升)加入灌注介质中给予工作状态的大鼠心脏8分钟,随后进行洗脱期(50分钟)。使用带有符合检测电路的外部闪烁探测器测量心肌放射性。研究了六组心脏(第6组n = 4,其他组n = 6):(第1组)对照组;(第2组)100 nM地昔帕明(DMI);(第3组)0.8 microM SKF550;(第4组)DMI + SKF550;(第5组)SKF550 + 1.0 microM Ro 4 - 1284;以及(第6组)30分钟时用DMI追赶的SKF550组(n = 4)。
与对照组相比,第2、3和4组的摄取率平均分别降低了19%(摄取-1阻断)、58%(摄取-2阻断)和95%(摄取-1和摄取-2阻断)(p < 0.01)。与第3组相比,第5组(囊泡转运抑制)摄取率进一步降低33%(p = 0.054)。对照组心脏中观察到由快速(T1/2 = 5.32 ± 1.1分钟)和缓慢(T1/2 = 35.2 ± 9.6分钟)成分组成的双相清除。与对照组相比,第5组的快速(T1/2 = 1.6 ± 0.3分钟)和缓慢(T1/2 = 10.9 ± 1.4分钟)清除率加快(p < 0.