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Multimodality imaging in an orthotopic mammary window chamber model

机译:原位乳腺窗腔模型中的多模态成像

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Window chamber models have been utilized for many years to investigate cancer development and the tumor microenvironment. Orthotopic mammary window chamber model have been developed for detailed study of breast cancer. Orthotopic window chamber models, due to the native environment, support more realistic growth and tumor behavior than ectopic models. The work by other groups thus far utilizing mammary window chamber models has focused solely on optical imaging techniques, limited to probing the first millimeter or less of tissue. These techniques do not take full advantage of the unrestricted, three-dimensional tumor growth the model supports. We have developed a custom plastic structure compatible with multimodality imaging. We present in this work the implementation of our custom window chamber in a mouse model and the successful imaging of the window chamber cancer model with MRI, nuclear imaging, and optical techniques. MRI provides a full three-dimensional view of the tumor growth and allows for additional, potentially clinically translatable, approaches to be utilized in investigating the cancer microenvironment. Nuclear imaging is accomplished using the Beta Imager, which is a novel approach to nuclear imaging of window chambers. The Beta Imager detects photons after the interaction of a single positron with a scintillator, instead of the coincidence detection of annihilation gamma ray pairs. We utilized the radioisotope glucose analog, 2-deoxy-2-(~(18)F)fluoro-D-glucose or FDG, with the Beta Imager to obtain information on the glycolytic metabolism of the tumor and surrounding region.
机译:窗室模型已经被使用了很多年,以研究癌症的发展和肿瘤的微环境。已经开发了原位乳腺窗室模型用于乳腺癌的详细研究。由于自然环境,原位窗腔模型比异位模型支持更现实的生长和肿瘤行为。迄今为止,其他小组利用乳腺窗腔室模型进行的工作仅集中在光学成像技术上,仅限于探测组织的第一毫米或更小。这些技术没有充分利用模型支持的不受限制的三维肿瘤生长。我们已经开发了与多模态成像兼容的定制塑料结构。我们在这项工作中介绍了在小鼠模型中自定义窗口室的实现以及通过MRI,核成像和光学技术对窗口室癌症模型的成功成像。 MRI提供了肿瘤生长的完整三维视图,并允许在研究癌症微环境中使用其他可能具有临床可翻译性的方法。核成像是使用Beta成像仪完成的,这是一种对窗室进行核成像的新颖方法。 Beta成像仪在单个正电子与闪烁体相互作用后检测光子,而不是同时检测of灭伽玛射线对。我们利用放射性同位素葡萄糖类似物2-脱氧-2-(〜(18)F)氟-D-葡萄糖或FDG,与Beta成像仪一起获得有关肿瘤及其周围区域糖酵解代谢的信息。

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