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首页> 外文期刊>Journal of Biophotonics >Measuring tumor cycling hypoxia and angiogenesis using a side-firing fiber optic probe
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Measuring tumor cycling hypoxia and angiogenesis using a side-firing fiber optic probe

机译:使用侧面发射光纤探头测量肿瘤循环的缺氧和血管生成

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Hypoxia and angiogenesis can significantly influence the efficacy of cancer therapy and the behavior of surviving tumor cells. There is a growing demand for technologies to measure tumor hypoxia and angiogenesis temporally in vivo to enable advances in drug development and optimization. This paper reports the use of frequency-domain photon migration with a side-firing probe to quantify tumor oxygenation and hemoglobin concentrations in nude rats bearing human headeck tumors administered with carbogen gas, cycling hypoxic gas or just room air. Significant increase (with carbogen gas breathing) or decrease (with hypoxic gas breathing) in tumor oxygenation was observed. The trend in tumor oxygenation during forced cycling hypoxia (CH) followed that of the blood oxygenation measured with a pulse oximeter. Natural CH was also observed in rats under room air. The studies demonstrated the potential of the technology for longitudinal monitoring of tumor CH during tumor growth or in response to therapy.
机译:缺氧和血管生成可以显着影响癌症治疗的功效以及存活的肿瘤细胞的行为。人们越来越需要能够在体内暂时测量肿瘤缺氧和血管生成的技术,以实现药物开发和优化的进步。这篇论文报道了使用频闪光子迁移和侧向发射探针来量化裸鼠体内的氧合和血红蛋白浓度,这些裸鼠患有人类头部/颈部肿瘤,并给予了碳原气体,循环性低氧气体或室内空气。观察到肿瘤氧合作用显着增加(使用碳氢化合物气体呼吸)或减少(通过低氧气体呼吸)。强制循环缺氧(CH)期间肿瘤氧合的趋势遵循用脉搏血氧仪测量的血液氧合的趋势。在室内空气下的大鼠中也观察到天然CH。研究证明了该技术在肿瘤生长过程中或对治疗的反应中纵向监测肿瘤CH的潜力。

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