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Magnetic Resonance Imaging of the Tumor Microenvironment in Radiotherapy: Perfusion, Hypoxia, and Metabolism

机译:放射治疗中肿瘤微环境的磁共振成像:灌注,缺氧和代谢

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摘要

The tumor microenvironment is characterized by hypoxia, low pH, and high interstitial fluid pressure. Hypoxic regions in tumors with low partial pressure of oxygen (pO2) levels can result in resistance to radiotherapy, thus causing local failure. Therefore, it would be desirable to noninvasively measure pO2 levels in the tumor before, during, and after treatment to better customize therapy and follow treatment response. Several techniques used in preclinical and clinical studies to obtain the pO2 status of tissue, such as dynamic contrast-enhanced magnetic resonance imaging, blood oxygen level-dependent imaging, and electron paramagnetic resonance imaging, are reviewed. Furthermore, the ability to hyperpolarize specific metabolic substrates that are isotopically labeled with 13C coupled with magnetic resonance spectroscopy enables noninvasive imaging of tissue metabolism, such as glycolysis.
机译:肿瘤微环境的特征是缺氧,pH低和间质液压力高。氧分压(pO2)水平低的肿瘤中的缺氧区域可能导致对放射疗法的抵抗力,从而导致局部衰竭。因此,期望在治疗之前,期间和之后无创地测量肿瘤中的pO 2水平,以更好地定制治疗并跟踪治疗反应。回顾了临床前和临床研究中用于获取组织pO2状态的几种技术,例如动态对比增强磁共振成像,血氧水平依赖性成像和电子顺磁共振成像。此外,超极化被13C同位素标记的特定代谢底物并结合磁共振波谱的能力使组织代谢(例如糖酵解)的非侵入性成像成为可能。

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