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

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 demonstra...

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Veröffentlicht in:Proceedings of the National Academy of Sciences - PNAS 2014-02, Vol.111 (6), p.E692-E701
Hauptverfasser: Gaedicke, Simone, Braun, Friederike, Prasad, Shruthi, Machein, Marcia, Firat, Elke, Hettich, Michael, Gudihal, Ravindra, Zhu, Xuekai, Klingner, Kerstin, Schüler, Julia, Herold-Mende, Christel C, Grosu, Anca-Ligia, Behe, Martin, Weber, Wolfgang, Mäcke, Helmut, Niedermann, Gabriele
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Sprache:eng
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Zusammenfassung: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.
ISSN:0027-8424
1091-6490
DOI:10.1073/pnas.1314189111