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PNAS Plus: Noninvasive positron emission tomography and fluorescence imaging of CD133+ tumor stem cells

机译:PNAS Plus:CD133 +肿瘤干细胞的无创正电子发射断层扫描和荧光成像

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摘要

A technology that visualizes tumor stem cells with clinically relevant tracers could have a broad impact on cancer diagnosis and treatment. The AC133 epitope of CD133 currently is one of the best-characterized tumor stem cell markers for many intra- and extracranial tumor entities. Here we demonstrate the successful noninvasive detection of AC133+ tumor stem cells by PET and near-infrared fluorescence molecular tomography in subcutaneous and orthotopic glioma xenografts using antibody-based tracers. Particularly, microPET with 64Cu-NOTA-AC133 mAb yielded high-quality images with outstanding tumor-to-background contrast, clearly delineating subcutaneous tumor stem cell-derived xenografts from surrounding tissues. Intracerebral tumors as small as 2–3 mm also were clearly discernible, and the microPET images reflected the invasive growth pattern of orthotopic cancer stem cell-derived tumors with low density of AC133+ cells. These data provide a basis for further preclinical and clinical use of the developed tracers for high-sensitivity and high-resolution monitoring of AC133+ tumor stem cells.
机译:用临床相关示踪剂可视化肿瘤干细胞的技术可能会对癌症的诊断和治疗产生广泛影响。 CD133的AC133表位目前是许多颅内和颅外肿瘤实体的特征最丰富的肿瘤干细胞标记之一。在这里,我们证明了皮下和原位神经胶质瘤异种移植物中使用基于抗体的示踪剂通过PET和近红外荧光分子层析成像技术成功成功地无创检测AC133 + 肿瘤干细胞。特别是,带有 64 Cu-NOTA-AC133 mAb的microPET可以产生高质量的图像,具有出色的肿瘤与背景对比,清楚地描绘了来自周围组织的皮下肿瘤干细胞来源的异种移植物。清晰可见的脑肿瘤只有2–3 mm,microPET图像反映了原位癌干细胞来源的低密度AC133 + 细胞的侵袭性生长模式。这些数据为进一步开发先进的示踪剂用于AC133 + 肿瘤干细胞的高灵敏度和高分辨率监测提供了基础。

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