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Oxygen-enhanced MRI accurately identifies quantifies and maps tumor hypoxia in preclinical cancer models

机译:氧气增强的MRI可以准确识别量化和绘制临床前癌症模型中的肿瘤缺氧图

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摘要

There is a clinical need for non-invasive biomarkers of tumor hypoxia for prognostic and predictive studies, radiotherapy planning and therapy monitoring. Oxygen enhanced MRI (OE-MRI) is an emerging imaging technique for quantifying the spatial distribution and extent of tumor oxygen delivery in vivo. In OE-MRI, the longitudinal relaxation rate of protons (ΔR1) changes in proportion to the concentration of molecular oxygen dissolved in plasma or interstitial tissue fluid. Therefore, well-oxygenated tissues show positive ΔR1. We hypothesized that the fraction of tumor tissue refractory to oxygen challenge (lack of positive ΔR1, termed “Oxy-R fraction”) would be a robust biomarker of hypoxia in models with varying vascular and hypoxic features. Here we demonstrate that OE-MRI signals are accurate, precise and sensitive to changes in tumor pO2 in highly vascular 786-0 renal cancer xenografts. Furthermore, we show that Oxy-R fraction can quantify the hypoxic fraction in multiple models with differing hypoxic and vascular phenotypes, when used in combination with measurements of tumor perfusion. Finally, Oxy-R fraction can detect dynamic changes in hypoxia induced by the vasomodulator agent hydralazine. In contrast, more conventional biomarkers of hypoxia (derived from blood oxygenation-level dependent MRI and dynamic contrast-enhanced MRI) did not relate to tumor hypoxia consistently. Our results show that the Oxy-R fraction accurately quantifies tumor hypoxia non-invasively and is immediately translatable to the clinic.
机译:临床上需要肿瘤缺氧的非侵入性生物标志物用于预后和预测研究,放疗计划和治疗监测。氧气增强MRI(OE-MRI)是一种新兴的成像技术,用于量化体内体内氧气输送的空间分布和范围。在OE-MRI中,质子的纵向弛豫率(ΔR1)与溶解在血浆或间质组织液中的分子氧浓度成比例地变化。因此,充氧的组织显示正ΔR1。我们假设,在具有变化的血管和低氧特征的模型中,难治性氧挑战的肿瘤组织分数(缺乏正ΔR1,称为“ Oxy-R分数”)将是缺氧的有力生物标志。在这里,我们证明OE-MRI信号对于高度血管性786-0肾癌异种移植物中的肿瘤pO2的变化是准确,精确和敏感的。此外,当与肿瘤灌注测量结合使用时,我们显示Oxy-R分数可以量化具有不同低氧和血管表型的多个模型中的低氧分数。最后,Oxy-R馏分可以检测到由血管调节剂肼苯哒嗪引起的缺氧动态变化。相比之下,更多常规的缺氧生物标志物(源自血液氧合水平依赖性MRI和动态对比增强MRI)与肿瘤的缺氧性并不一致。我们的结果表明,Oxy-R分数可准确地无创地量化肿瘤缺氧,并可立即转化为临床。

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