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首页> 外文期刊>Arthritis research & therapy. >In vivo molecular imaging of experimental joint inflammation by combined (18)F-FDG positron emission tomography and computed tomography.
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In vivo molecular imaging of experimental joint inflammation by combined (18)F-FDG positron emission tomography and computed tomography.

机译:通过联合(18)F-FDG正电子发射断层扫描和计算机断层扫描对实验性关节炎症进行体内分子成像。

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INTRODUCTION: The purpose of this work was to establish and validate combined small animal positron emission tomography - computed tomography (PET/CT) as a new in vivo imaging method for visualisation and quantification of joint inflammation. METHODS: Signalling of radioisotope (1)F labelled Fluorodeoxyglucose ((1)F-FDG) injected in mice with glucose-6-phosphate isomerase (G6PI)-induced arthritis was analysed by PET/CT. Accumulation of (1)F-FDG in tissue was quantified by PET measurement, whereas high definition CT delivered anatomical information. The fusion of both images revealed in detail spatial and temporal distribution and metabolism of (1)F-FDG. RESULTS: A distinct (1)F-FDG signal could be measured by PET in carpal and tarsal joints, from mice with early or established arthritis. In contrast, no accumulation of (1)F-FDG was detectable before arthritis onset. Comparison of (1)F-FDG joint uptake with histopathological evaluation revealed a significant correlation of both methods. CONCLUSIONS: Small animal PET/CT using (1)F-FDG is a feasible method for monitoring and, more importantly, quantitative assessment of inflammation in G6PI-arthritis. Since it is possible to perform repeated non-invasive measurements in vivo, not only numbers of animals in preclinical studies can markedly be reduced by this method, but also longitudinal studies come into reach, e. g. for individual flare-up reactions or monitoring therapy response in progressive arthritis.
机译:引言:这项工作的目的是建立和验证组合的小动物正电子发射断层扫描-计算机断层扫描(PET / CT)作为一种新的体内成像方法,用于可视化和量化关节炎症。方法:通过PET / CT分析了用葡萄糖-6-磷酸异构酶(G6PI)诱导的小鼠中注射的放射性同位素(1)F标记的氟去氧葡萄糖((1)F-FDG)的信号传导。通过PET测量可量化组织中(1)F-FDG的积累,而高清晰度CT可提供解剖信息。两种图像的融合详细揭示了(1)F-FDG的时空分布和代谢。结果:早期(或早期)关节炎小鼠的腕关节和关节可通过PET测量到独特的(1)F-FDG信号。相反,在关节炎发作之前没有检测到(1)F-FDG的积累。 (1)F-FDG联合摄取与组织病理学评估的比较显示两种方法之间的显着相关性。结论:使用(1)F-FDG的小动物PET / CT是一种可行的方法,更重要的是,它可以监测和定量评估G6PI关节炎中的炎症。由于可以在体内进行重复的非侵入性测量,因此不仅可以通过这种方法显着减少临床前研究中的动物数量,而且还可以进行纵向研究。 G。用于进行性关节炎的个体发作反应或监测治疗反应。

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