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首页> 外文期刊>The Journal of Nuclear Medicine >Molecular imaging with macrophage crig-targeting nanobodies for early and preclinical diagnosis in a mouse model of rheumatoid arthritis
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Molecular imaging with macrophage crig-targeting nanobodies for early and preclinical diagnosis in a mouse model of rheumatoid arthritis

机译:靶向巨噬细胞的纳米分子的分子成像在类风湿关节炎小鼠模型中的早期和临床前诊断

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An accurate and noninvasive tracer able to detect molecular events underlying the development of rheumatoid arthritis (RA) would be useful for RA diagnosis and drug efficacy assessment. A complement receptor of the Ig superfamily (CRIg) is expressed on synovial macrophages of RA patients, making it an interesting target for molecular imaging of RA. We aim to develop a radiotracer for the visualization of CRIg in a mouse model for RA using radiolabeled single-domain variable antibody VHH fragments (Nanobodies). Methods: Quantitative polymerase chain reaction was used to locate CRIg expression in mice with collagen-induced arthritis (CIA). A Nanobody, NbV4m119, was generated to specifically target CRIg. Flow cytometry, phosphorimaging, and confocal microscopy were used to confirm NbVm119 binding to CRIg-positive cells. SPECT (SPECT/CT) was used to image arthritic lesions in the inflamed paws of 29 mice using 99mTc- NbV4m119 Nanobody. Results: CRIg is constitutively expressed in the liver and was found to be upregulated in synovial tissues of CIA mice. SPECT/CT imaging revealed that 99mTc-NbV4m119 specifically targeted CRIg-positive liver macrophages in na?ve wild-type but not in CRIg-/- (CRIg knockout) mice. In CIA mice, 99mTc-NbV4m119 accumulation in arthritic lesions increased according to the severity of the inflammation. In the knees of mice with CIA, 99mTc-NbV4m119 was found to accumulate even before the onset of macroscopic clinical symptoms. Conclusion: SPECT/CT imaging with 99mTc- NbV4m119 visualizes joint inflammation in CIA. Furthermore, imaging could predict which mice will develop clinical symptoms during CIA. Consequently, imaging of joint inflammation with CRIg-specific Nanobodies offers perspectives for clinical applications in RA patients.
机译:能够检测类风湿关节炎(RA)发生的分子事件的准确,无创的示踪剂将有助于RA诊断和药物疗效评估。 Ig超家族的补体受体(CRIg)在RA患者的滑膜巨噬细胞上表达,使其成为RA分子成像的有趣靶标。我们旨在开发一种放射性示踪剂,用于使用放射性标记的单域可变抗体VHH片段(纳米抗体)在RA小鼠模型中显示CRIg。方法:采用定量聚合酶链反应法定位胶原性关节炎(CIA)小鼠的CRIg表达。产生了纳米抗体NbV4m119,以特异性靶向CRIg。流式细胞仪,荧光显像和共聚焦显微镜用于确认NbVm119与CRIg阳性细胞的结合。使用99mTc-NbV4m119纳米抗体,将SPECT(SPECT / CT)用于对29只小鼠发炎的足的关节炎病变进行成像。结果:CRIg在肝脏中组成性表达,并在CIA小鼠的滑膜组织中被上调。 SPECT / CT成像显示99mTc-NbV4m119特别针对天然野生型的CRIg阳性肝巨噬细胞,但未针对CRIg-/-(CRIg敲除)小鼠。在CIA小鼠中,关节炎病变中99mTc-NbV4m119的积累根据炎症的严重程度而增加。在CIA小鼠的膝盖中,甚至在宏观临床症状发作之前就发现了99mTc-NbV4m119的积累。结论:用99mTc- NbV4m119进行的SPECT / CT成像可观察到CIA的关节炎症。此外,成像可以预测哪些小鼠在CIA期间会出现临床症状。因此,使用CRIg特异性纳米抗体对关节炎症进行成像可为RA患者的临床应用提供前景。

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