Department of Chemistry, Wayne State University, Detroit, MI 48202.
Department of Integrative Physiology, Baylor College of Medicine, Houston, TX 77030.
Proc Natl Acad Sci U S A. 2023 Apr 11;120(15):e2220891120. doi: 10.1073/pnas.2220891120. Epub 2023 Apr 5.
Hypoxia is a prognostic biomarker of rapidly growing cancers, where the extent of hypoxia is an indication of tumor progression and prognosis; therefore, hypoxia is also used for staging while performing chemo- and radiotherapeutics for cancer. Contrast-enhanced MRI using Eu-based contrast agents is a noninvasive method that can be used to map hypoxic tumors, but quantification of hypoxia using these agents is challenging due to the dependence of signal on the concentration of both oxygen and Eu. Here, we report a ratiometric method to eliminate concentration dependence of contrast enhancement of hypoxia using fluorinated Eu-containing probes. We studied three different Eu couples of complexes containing 4, 12, or 24 fluorine atoms to balance fluorine signal-to-noise ratio with aqueous solubility. The ratio between the longitudinal relaxation time () and F signal of solutions containing different ratios of Eu- and Eu-containing complexes was plotted against the percentage of Eu-containing complexes in solution. We denote the slope of the resulting curves as hypoxia indices because they can be used to quantify signal enhancement from Eu, that is related to oxygen concentration, without knowledge of the absolute concentration of Eu. This mapping of hypoxia was demonstrated in vivo in an orthotopic syngeneic tumor model. Our studies significantly contribute toward improving the ability to radiographically map and quantify hypoxia in real time, which is critical to the study of cancer and a wide range of diseases.
缺氧是快速生长的癌症的预后生物标志物,缺氧的程度是肿瘤进展和预后的指标;因此,在进行癌症的化疗和放疗时,缺氧也用于分期。使用基于 Eu 的对比剂的对比增强 MRI 是一种非侵入性方法,可用于绘制缺氧肿瘤,但由于信号对氧气和 Eu 浓度的依赖性,使用这些试剂定量缺氧具有挑战性。在这里,我们报告了一种比率方法,用于消除使用含氟 Eu 探针对缺氧对比增强的浓度依赖性。我们研究了三种不同的 Eu 配合物,分别含有 4、12 或 24 个氟原子,以平衡氟信号与水溶解度的信噪比。含有不同比例 Eu 和 Eu 配合物的溶液的纵向弛豫时间 (T1) 和 F 信号之间的比率与溶液中 Eu 配合物的百分比作图。我们将所得曲线的斜率表示为缺氧指数,因为它们可用于定量增强与氧浓度有关的 Eu 信号,而无需知道 Eu 的绝对浓度。这一缺氧的映射在同种异体原位肿瘤模型中进行了体内研究。我们的研究极大地提高了实时放射成像和定量缺氧的能力,这对癌症和广泛疾病的研究至关重要。