首页> 外文期刊>The Journal of Nuclear Medicine >Central Nervous System Expression and PET Imaging of the Translocator Protein in Relapsing–Remitting Experimental Autoimmune Encephalomyelitis
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Central Nervous System Expression and PET Imaging of the Translocator Protein in Relapsing–Remitting Experimental Autoimmune Encephalomyelitis

机译:复发性实验性自身免疫性脑脊髓炎中转位蛋白的中枢神经系统表达和PET成像

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Glial neuroinflammation is associated with the development and progression of multiple sclerosis. PET imaging offers a unique opportunity to evaluate neuroinflammatory processes longitudinally in a noninvasive and clinically translational manner. 18F-PBR111 is a newly developed PET radiopharmaceutical with high affinity and selectivity for the translocator protein (TSPO), expressed on activated glia. This study aimed to investigate neuroinflammation at different phases of relapsinga€“remitting (RR) experimental autoimmune encephalomyelitis (EAE) in the brains of SJL/J mice by postmortem histologic analysis and in vivo by PET imaging with 18F-PBR111. Methods: RR EAE was induced by immunization with PLP139a€“151 peptide in complete Freund's adjuvant. Naive female SJL/J mice and mice immunized with salinea€“complete Freund's adjuvant were used as controls. The biodistribution of 18F-PBR111 was measured in 13 areas of the central nervous system and compared with PET imaging results during different phases of RR EAE. The extents of TSPO expression and glial activation were assessed with immunohistochemistry, immunofluorescence, and a real-time polymerase chain reaction. Results: There was significant TSPO expression in all of the central nervous system areas studied at the peak of the first clinical episode and, importantly, at the preclinical stage. In contrast, only a few TSPO-positive cells were observed at the second episode. At the third episode, there was again an increase in TSPO expression. TSPO expression was associated with microglial cells or macrophages without obvious astrocyte labeling. The dynamics of 18F-PBR111 uptake in the brain, as measured by in vivo PET imaging and biodistribution, followed the pattern of TSPO expression during RR EAE. Conclusion: PET imaging with the TSPO ligand 18F-PBR111 clearly reflected the dynamics of microglial activation in the SJL/J mouse model of RR EAE. The results are the first to highlight the discrepancy between the clinical symptoms of EAE and TSPO expression in the brain, as measured by PET imaging at the peaks of various EAE episodes. The results suggest a significant role for PET imaging investigations of neuroinflammation in multiple sclerosis and allow for in vivo follow-up of antiinflammatory treatment strategies.
机译:胶质神经炎症与多发性硬化症的发生和发展有关。 PET成像提供了一种独特的机会,可以以非侵入性和临床翻译的方式纵向评估神经炎症过程。 18F-PBR111是一种新开发的PET放射性药物,对在活化神经胶质细胞上表达的转运蛋白(TSPO)具有高亲和力和选择性。这项研究旨在通过死后组织学分析和通过18F-PBR111的PET成像体内研究SJL / J小鼠大脑中复发缓解(RR)实验性自身免疫性脑脊髓炎(EAE)不同阶段的神经炎症。方法:用弗氏完全佐剂中的PLP139a“ 151”肽免疫诱导RR EAE。将幼稚的雌性SJL / J小鼠和用生理盐水或完全弗氏佐剂免疫的小鼠作为对照。在中枢神经系统的13个区域中测量了18F-PBR111的生物分布,并将其与RR EAE不同阶段的PET成像结果进行了比较。 TSPO表达和神经胶质激活的程度通过免疫组织化学,免疫荧光和实时聚合酶链反应进行评估。结果:在首次临床发作的高峰期,重要的是在临床前阶段,研究的所有中枢神经系统区域均存在明显的TSPO表达。相反,在第二次发作中仅观察到少量TSPO阳性细胞。在第三集中,TSPO表达再次增加。 TSPO表达与没有明显星形胶质细胞标记的小胶质细胞或巨噬细胞有关。通过体内PET成像和生物分布测定,大脑中18F-PBR111摄取的动力学遵循RR EAE期间TSPO表达的模式。结论:TSPO配体18F-PBR111的PET成像清楚地反映了RR EAE的SJL / J小鼠模型中小胶质细胞激活的动力学。该结果是第一个突出显示EAE临床症状与脑中TSPO表达之间差异的方法,该差异通过在各种EAE发作高峰时的PET成像测量得出。结果表明,对于多发性硬化症中神经炎症的PET影像学研究具有重要作用,并且可以在体内跟踪抗炎治疗策略。

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