Brust Peter, Patt Jörg Thomas, Deuther-Conrad Winnie, Becker Georg, Patt Marianne, Schildan Andreas, Sorger Dietlind, Kendziorra Kai, Meyer Philipp, Steinbach Jörg, Sabri Osama
Department of Radiopharmacy, Institute of Interdisciplinary Isotope Research, Permoserstrasse 15, Leipzig, Germany.
Synapse. 2008 Mar;62(3):205-18. doi: 10.1002/syn.20480.
Functional changes of nicotinic acetylcholine receptors (nAChR) are important during age-related neuronal degeneration. Recent studies demonstrate the applicability of the nAChR ligand 2-[(18)F]F-A-85380 for neuroimaging of patients with dementias. However, its binding kinetics demands a 7-h acquisition time limiting its practicality for clinical PET studies. Thus, the authors developed [(18)F]norchloro-fluoro-homoepibatidine ([(18)F]NCFHEB) for nAChR imaging. The kinetics of the two enantiomers of [(18)F]NCFHEB were compared with 2-[(18)F]F-A85380 in porcine brain to evaluate their potential for human neuroimaging. Twenty-four juvenile female pigs were studied with PET using [(18)F]NCFHEB. Nine animals received an additional i.v. injection (1 mg/kg) of the nAChR agonist A81418 before radiotracer administration followed by infusion (2 mg/kg/7h) thereafter. Several compartment models were applied for quantification. (-)- and (+)-[(18)F]NCFHEB showed a twofold to threefold higher brain uptake than 2-[(18)F]F-A-85380. All three radiotracers displayed spatially heterogeneous binding kinetics in regions with high, moderate, or low specific binding. The equilibrium of specific binding of (-)-[(18)F]NCFHEB was reached earlier than that of (+)-[(18)F]NCFHEB or 2-[(18)F]F-A85380. Continuous administration of the nAChR agonist A81418 inhibited the specific binding of (-)- and (+)-[(18)F]NCFHEB but not of 2-[(18)F]F-A85380. The peripheral metabolism of (+)-[(18)F]NCFHEB proceeded somewhat slower than that of the other radiotracers. Both enantiomers of [(18)F]NCFHEB are appropriate radiotracers for neuroimaging of nAChR in pigs. Their binding profile in vivo appears to be more selective than that of 2-[(18)F]F-A85380. (-)-[(18)F]NCFHEB offers a faster equilibrium of specific binding than 2-[(18)F]F-A85380.
烟碱型乙酰胆碱受体(nAChR)的功能变化在与年龄相关的神经元变性过程中很重要。最近的研究表明,nAChR配体2-[(18)F]F-A-85380可用于痴呆患者的神经成像。然而,其结合动力学要求7小时的采集时间,这限制了其在临床PET研究中的实用性。因此,作者开发了[(18)F]去氯氟高表巴蒂啶([(18)F]NCFHEB)用于nAChR成像。在猪脑中比较了[(18)F]NCFHEB的两种对映体与2-[(18)F]F-A85380的动力学,以评估它们在人类神经成像中的潜力。使用[(18)F]NCFHEB对24只幼年雌性猪进行了PET研究。9只动物在注射放射性示踪剂前额外静脉注射(1mg/kg)nAChR激动剂A81418,随后进行输注(2mg/kg/7h)。应用了几种房室模型进行定量分析。(-)-和(+)-[(18)F]NCFHEB的脑摄取量比2-[(18)F]F-A-85380高2至3倍。所有三种放射性示踪剂在具有高、中或低特异性结合的区域均表现出空间异质性的结合动力学。(-)-[(18)F]NCFHEB的特异性结合平衡比(+)-[(18)F]NCFHEB或2-[(18)F]F-A85380更早达到。持续给予nAChR激动剂A81418可抑制(-)-和(+)-[(18)F]NCFHEB的特异性结合,但不抑制2-[(18)F]F-A85380的特异性结合。(+)-[(18)F]NCFHEB的外周代谢比其他放射性示踪剂稍慢。[(18)F]NCFHEB的两种对映体都是用于猪nAChR神经成像的合适放射性示踪剂。它们在体内的结合图谱似乎比2-[(18)F]F-A85380更具选择性。(-)-[(18)F]NCFHEB比2-[(18)F]F-A85380具有更快的特异性结合平衡。