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首页> 外文期刊>Cancer research: The official organ of the American Association for Cancer Research, Inc >Oxygen-Enhanced and Dynamic Contrast-Enhanced Optoacoustic Tomography Provide Surrogate Biomarkers of Tumor Vascular Function, Hypoxia, and Necrosis
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Oxygen-Enhanced and Dynamic Contrast-Enhanced Optoacoustic Tomography Provide Surrogate Biomarkers of Tumor Vascular Function, Hypoxia, and Necrosis

机译:氧气增强和动态对比增强的光声层析成像提供肿瘤血管功能,缺氧和坏死的替代生物标志物

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摘要

Measuring the functional status of tumor vasculature, including blood flow fluctuations and changes in oxygenation, is important in cancer staging and therapy monitoring. Current clinically approved imaging modalities suffer long procedure times and limited spatiotemporal resolution. Optoacoustic tomography (OT) is an emerging clinical imaging modality that may overcome these challenges. By acquiring data at multiple wavelengths, OT can interrogate hemoglobin concentration and oxygenation directly and resolve contributions from injected contrast agents. In this study, we tested whether two dynamic OT techniques, oxygen-enhanced (OE) and dynamic contrast-enhanced (DCE)-OT, could provide surrogate biomarkers of tumor vascular function, hypoxia, and necrosis. We found that vascular maturity led to changes in vascular function that affected tumor perfusion, modulating the DCE-OT signal. Perfusion in turn regulated oxygen availability, driving the OE-OT signal. In particular, we demonstrate for the first time a strong per-tumor and spatial correlation between imaging biomarkers derived from these in vivo techniques and tumor hypoxia quantified ex vivo. Our findings indicate that OT may offer a significant advantage for localized imaging of tumor response to vascular-targeted therapies when compared with existing clinical DCE methods.
机译:测量肿瘤脉管系统的功能状态,包括血流量波动和氧气变化,在癌症分期和治疗监测中是重要的。目前的临床批准的成像方式遭受长程序时间和有限的时空分辨率。光声断层扫描(OT)是一种新兴临床成像模型,可能会克服这些挑战。通过以多个波长获取数据,OT可以直接询问血红蛋白浓度和氧合,并从注入的造影剂中解析贡献。在这项研究中,我们测试了两种动态OT技术,氧增强(OE)和动态对比增强(DCE) - 滴度,可提供肿瘤血管功能,缺氧和坏死的替代生物标志物。我们发现血管成熟度导致血管功能的变化影响肿瘤灌注,调制DCE-OT信号。灌注依次调节氧可用性,驱动OE-OT信号。特别是,我们首次证明了从这些体内技术和肿瘤缺氧中衍生的成像生物标志物之间具有强烈的每肿瘤和空间相关性的肿瘤和肿瘤缺氧量化。我们的研究结果表明,与现有的临床DCE方法相比,OT可以为肿瘤靶向疗法的局部成像提供显着的优势。

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