期刊论文详细信息
Journal of Nuclear Medicine
Quantification of the Specific Translocator Protein Signal of 18F-PBR111 in Healthy Humans: A Genetic Polymorphism Effect on In Vivo Binding
Aruloly Kamalakaran1  Roger N. Gunn1  Idriss Bennacef1  Paul M. Matthews1  Qi Guo1  David R. Owen1  Eugenii A. Rabiner1  Alessandro Colasanti1  Federico E. Turkheimer1  Mayca Onega1 
关键词: 18F-PBR111;    TSPO;    specific binding;    neuroinflammation;    rs6971 polymorphism;   
DOI  :  10.2967/jnumed.113.121020
学科分类:医学(综合)
来源: Society of Nuclear Medicine
PDF
【 摘 要 】

PET is used to image active inflammatory processes by targeting the translocator protein (TSPO). In vitro, second-generation TSPO radioligands, such as PBR111, have been shown to bind to human tissue samples with either high affinity (high-affinity binders, HABs), low affinity (low-affinity binders, LABs), or an intermediate, mixed affinity (mixed-affinity binders, MABs). We previously explained these differences in affinity in human tissue via the rs6971 polymorphism in the TSPO gene and predicted that the specific signal from PET ligands in vivo would vary accordingly. In silico modeling predicted that 18F-PBR111 would have a moderate to high specific-to-nonspecific ratio in the normal human brain. To test these predictions, we present here the analysis and modeling of 18F-PBR111 data in healthy humans. Methods: Twenty-one subjects (9 HABs, 8 MABs, and 4 LABs), 28–62 y old, genotyped for the rs6971 polymorphism, underwent 120-min PET scans with arterial sampling after a bolus injection of 18F-PBR111. Compartmental models and Logan graphical methods enabled estimation of the total volume of distribution (VT) in regions of interest (ROIs). To evaluate the specific signal, we developed 2 methods to estimate the nondisplaceable volume of distribution (VND): the first assumed that the in vitro affinity ratio of 18F-PBR111 in HABs relative to LABs (4-fold) is preserved in vivo; the second modeled the difference in the HAB and MAB signals in the context of an occupancy plot. Results: A 2-tissue-compartment model described the data well, and a significant difference was found between the VT of HABs, MABs, and LABs across all ROIs examined (P < 0.05). We also found a significant correlation between VT and age for both HABs and MABs in most ROIs. The average VND estimated by the 2 methods was 1.18 ± 0.35 (method I: VND = 0.93, method II: VND = 1.42), implying that the 18F-PBR111 BPND was 2.78 ± 0.46 in HABs, 1.48 ± 0.28 in MABs, and 0.51 ± 0.17 in LABs and that the in vivo affinity ratio was similar to that measured in vitro. Conclusion: 18F-PBR111 shows a high specific signal in the healthy human brain in vivo. A large component of the variability in the signal across subjects is explained by genetic variation and age, indicating that 18F-PBR111 can be used for the quantitative assessment of TSPO expression.

【 授权许可】

Unknown   

【 预 览 】
附件列表
Files Size Format View
RO201912010198621ZK.pdf 1159KB PDF download
  文献评价指标  
  下载次数:7次 浏览次数:8次