期刊
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
卷 134, 期 11, 页码 5149-5156出版社
AMER CHEMICAL SOC
DOI: 10.1021/ja209868g
关键词
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资金
- NIH/NCI [P50CA86355, 4R00CA126839]
- NIH/NINDS [P30NS045776, R01NS070835, R01NS072167, K08HL081170]
We have developed a multifaceted, highly specific reporter for multimodal in vivo imaging and applied it for detection of brain tumors. A metabolically biotinylated, membrane-bound form of Gaussia luciferase was synthesized, termed mbGluc-biotin. We engineered glioma cells to express this reporter and showed that brain tumor formation can be temporally imaged by bioluminescence following systemic administration of coelenterazine. Brain tumors expressing this reporter had high sensitivity for detection by magnetic resonance and fluorescence tomographic imaging upon injection of streptavidin conjugated to magnetic nanoparticles or fluorophore, respectively. Moreover, single photon emission computed tomography showed enhanced imaging of these tumors upon injection with streptavidin complexed to wIn-DTPA-biotin. This work shows for the first time a single small reporter (similar to 40 kDa) which can be monitored with most available molecular imaging modalities and can be extended for single cell imaging using intravital microscopy, allowing real-time tracking of any cell expressing it in vivo.
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