Kornum Birgitte R, Lind Nanna M, Gillings Nic, Marner Lisbeth, Andersen Flemming, Knudsen Gitte M
Neurobiology Research Unit and Center for Integrated Molecular Brain Imaging, Copenhagen University Hospital, Rigshospitalet, Denmark.
J Cereb Blood Flow Metab. 2009 Jan;29(1):186-96. doi: 10.1038/jcbfm.2008.110. Epub 2008 Sep 17.
This study investigates 5-hydroxytryptamine 4 (5-HT(4)) receptor binding in the minipig brain with positron emission tomography (PET), tissue homogenate-binding assays, and autoradiography in vitro. The cerebral uptake and binding of the novel 5-HT(4) receptor radioligand [(11)C]SB207145 in vivo was modelled and the outcome compared with postmortem receptor binding. Different models for quantification of [(11)C]SB207145 binding were evaluated: One-tissue and two-tissue compartment kinetic modelling, Logan arterial input, and three different reference tissue models. We report that the pig autoradiographic 5-HT(4) receptor distribution resembles the human 5-HT(4) receptor distribution with the highest binding in the striatum and no detectable binding in the cerebellum. We found that in the minipig brain [(11)C]SB207145 follows one-tissue compartment kinetics, and the simplified reference tissue model provides stable and precise estimates of the binding potential in all regions. The binding potentials calculated for striatum, midbrain, and cortex from the PET data were highly correlated with 5-HT(4) receptor concentrations determined in brain homogenates from the same regions, except for hippocampus where PET-measurements significantly underestimate the 5-HT(4) receptor binding, probably because of partial volume effects. This study validates the use of [(11)C]SB207145 as a promising PET radioligand for in vivo brain imaging of the 5-HT(4) receptor in humans.
本研究采用正电子发射断层扫描(PET)、组织匀浆结合测定法和体外放射自显影技术,对小型猪大脑中的5-羟色胺4(5-HT(4))受体结合情况进行了研究。对新型5-HT(4)受体放射性配体[(11)C]SB207145在体内的脑摄取和结合情况进行了建模,并将结果与死后受体结合情况进行了比较。评估了用于定量[(11)C]SB207145结合的不同模型:单组织和双组织隔室动力学建模、洛根动脉输入模型以及三种不同的参考组织模型。我们报告称,猪的放射自显影5-HT(4)受体分布类似于人类的5-HT(4)受体分布,纹状体中的结合最高,小脑中未检测到结合。我们发现,在小型猪大脑中,[(11)C]SB207145遵循单组织隔室动力学,简化的参考组织模型能够稳定且精确地估计所有区域的结合潜力。从PET数据计算得出的纹状体、中脑和皮质的结合潜力与在相同区域的脑匀浆中测定的5-HT(4)受体浓度高度相关,但海马体除外,在海马体中PET测量显著低估了5-HT(4)受体结合,这可能是由于部分容积效应所致。本研究验证了[(11)C]SB207145作为一种有前景的PET放射性配体用于人类5-HT(4)受体体内脑成像的用途。