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针对 18 kDa 转位蛋白 PET 数据的 [C]PBR28 的动力学建模:使用 XBD173 和组织分析对大脑血管建模的验证研究。

Kinetic modelling of [C]PBR28 for 18 kDa translocator protein PET data: A validation study of vascular modelling in the brain using XBD173 and tissue analysis.

机构信息

1 Department of Neuroimaging, IoPPN, King's College London, London, UK.

2 Department of Psychosis Studies, IoPPN, King's College London, London, UK.

出版信息

J Cereb Blood Flow Metab. 2018 Jul;38(7):1227-1242. doi: 10.1177/0271678X17712388. Epub 2017 Jun 5.

Abstract

The 18 kDa translocator protein (TSPO) is a marker of microglia activation in the central nervous system and represents the main target of radiotracers for the in vivo quantification of neuroinflammation with positron emission tomography (PET). TSPO PET is methodologically challenging given the heterogeneous distribution of TSPO in blood and brain. Our previous studies with the TSPO tracers [C]PBR28 and [C]PK11195 demonstrated that a model accounting for TSPO binding to the endothelium improves the quantification of PET data. Here, we performed a validation of the kinetic model with the additional endothelial compartment through a displacement study. Seven subjects with schizophrenia, all high-affinity binders, underwent two [C]PBR28 PET scans before and after oral administration of 90 mg of the TSPO ligand XBD173. The addition of the endothelial component provided a signal compartmentalization much more consistent with the underlying biology, as only in this model, the blocking study produced the expected reduction in the tracer concentration of the specific tissue compartment, whereas the non-displaceable compartment remained unchanged. In addition, we also studied TSPO expression in vessels using 3D reconstructions of histological data of frontal lobe and cerebellum, demonstrating that TSPO positive vessels account for 30% of the vascular volume in cortical and white matter.

摘要

18 kDa 转位蛋白(TSPO)是中枢神经系统中小胶质细胞激活的标志物,也是正电子发射断层扫描(PET)用于体内神经炎症定量的放射性示踪剂的主要靶点。鉴于 TSPO 在血液和大脑中的分布不均,TSPO PET 在方法学上具有挑战性。我们之前使用 TSPO 示踪剂 [C]PBR28 和 [C]PK11195 的研究表明,一种考虑到 TSPO 与内皮结合的模型可以改善 PET 数据的定量。在这里,我们通过置换研究对具有附加内皮隔室的动力学模型进行了验证。7 名患有精神分裂症的受试者均为高亲和力结合者,在口服 90mg TSPO 配体 XBD173 前后接受了两次 [C]PBR28 PET 扫描。添加内皮成分提供了一个与基础生物学更一致的信号分隔,只有在这个模型中,阻断研究才产生了预期的特定组织隔室示踪剂浓度降低,而不可置换隔室保持不变。此外,我们还使用额极和小脑组织学数据的 3D 重建研究了血管中的 TSPO 表达,结果表明 TSPO 阳性血管占皮质和白质血管体积的 30%。

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