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首页> 外文期刊>Angiogenesis >Imaging tumor angiogenesis in breast cancer experimental lung metastasis with positron emission tomography, near-infrared fluorescence, and bioluminescence
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Imaging tumor angiogenesis in breast cancer experimental lung metastasis with positron emission tomography, near-infrared fluorescence, and bioluminescence

机译:用正电子发射断层扫描,近红外荧光和生物发光对乳腺癌实验性肺转移中的肿瘤血管生成进行成像

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摘要

The goal of this study was to develop a molecular imaging agent that can allow for both positron emission tomography (PET) and near-infrared fluorescence (NIRF) imaging of CD105 expression in metastatic breast cancer. TRC105, a chimeric anti-CD105 monoclonal antibody, was labeled with both a NIRF dye (i.e., IRDye 800CW) and 64Cu to yield 64Cu-NOTA-TRC105-800CW. Flow cytometry analysis revealed no difference in CD105 binding affinity/specificity between TRC105 and NOTA-TRC105-800CW. Serial bioluminescence imaging (BLI) was carried out to non-invasively monitor the lung tumor burden in BALB/c mice, after intravenous injection of firefly luciferase-transfected 4T1 (i.e., fLuc-4T1) murine breast cancer cells to establish the experimental lung metastasis model. Serial PET imaging revealed that fLuc-4T1 lung tumor uptake of 64Cu-NOTA-TRC105-800CW was 11.9 ± 1.2, 13.9 ± 3.9, and 13.4 ± 2.1 %ID/g at 4, 24, and 48 h post-injection respectively (n = 3). Biodistribution studies, blocking fLuc-4T1 lung tumor uptake with excess TRC105, control experiments with 64Cu-NOTA-cetuximab-800CW (which served as an isotype-matched control), ex vivo BLI/PET/NIRF imaging, autoradiography, and histology all confirmed CD105 specificity of 64Cu-NOTA-TRC105-800CW. Successful PET/NIRF imaging of tumor angiogenesis (i.e., CD105 expression) in the breast cancer experimental lung metastasis model warrants further investigation and clinical translation of dual-labeled TRC105-based agents, which can potentially enable early detection of small metastases and image-guided surgery for tumor removal.
机译:这项研究的目的是开发一种分子成像剂,该分子成像剂可用于转移性乳腺癌CD105表达的正电子发射断层扫描(PET)和近红外荧光(NIRF)成像。嵌合抗CD105单克隆抗体TRC105分别用NIRF染料(即IRDye 800CW)和64Cu标记,得到64Cu-NOTA-TRC105-800CW。流式细胞仪分析显示TRC105和NOTA-TRC105-800CW之间CD105结合亲和力/特异性没有差异。在静脉注射萤火虫荧光素酶转染的4T1(即fLuc-4T1)鼠乳腺癌细胞以建立实验性肺转移后,进行了系列生物发光成像(BLI)以无创地监测BALB / c小鼠的肺肿瘤负荷模型。连续PET成像显示,在注射后4、24和48 h,fLuc-4T1肺肿瘤对64Cu-NOTA-TRC105-800CW的摄取分别为11.9±1.2%,13.9±3.9和13.4±2.1%ID / g(n = 3)。生物分布研究,用过量的TRC105阻止fLuc-4T1肺肿瘤摄取,使用64Cu-NOTA-cetuximab-800CW(作为同型匹配对照)的对照实验,离体BLI / PET / NIRF成像,放射自显影和组织学均得到证实64Cu-NOTA-TRC105-800CW的CD105特异性。成功的PET / NIRF成像在乳腺癌实验性肺转移模型中对肿瘤血管生成(即CD105表达)进行成像,值得进一步研究和对基于双标记TRC105的药物进行临床翻译,这可以潜在地实现对小转移的早期检测和图像引导切除肿瘤的手术。

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