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大鼠R3230Ac肿瘤和肌肉中氧张力及血流波动的傅里叶分析

Fourier analysis of fluctuations of oxygen tension and blood flow in R3230Ac tumors and muscle in rats.

作者信息

Braun R D, Lanzen J L, Dewhirst M W

机构信息

Department of Radiation Oncology, Duke University Medical Center, Durham, North Carolina 27710, USA.

出版信息

Am J Physiol. 1999 Aug;277(2):H551-68. doi: 10.1152/ajpheart.1999.277.2.H551.

DOI:10.1152/ajpheart.1999.277.2.H551
PMID:10444480
Abstract

Tumor hypoxia is a major barrier to tumor radiation therapy. Typically tumor hypoxia occurs in two forms: chronic and acute. Although the existence of acute hypoxia has long been acknowledged, its temporal characteristics have never been directly measured and documented. In this study tumor PO(2), blood flow (BF), and arterial blood pressure (BP) were measured simultaneously in nine Fischer 344 rats bearing R3230Ac rat mammary adenocarcinomas in the subcutis of the left hindleg. We measured PO(2) at a single location for 36-125 min using recessed-tip oxygen microelectrodes. Simultaneously, we measured tumor BF at two sites within the tumor using laser-Doppler flowmetry (LDF). Similar recordings were made in the quadriceps muscle of seven non-tumor-bearing rats. The PO(2), tumor BF, and BP records were subjected to Fourier analysis. PO(2) and BF showed low-frequency fluctuations (<2 cycles/min) in both tumor and muscle, but the magnitude of the changes in tumor was greater. Tumor BF showed more activity at low frequencies than muscle BF, and the magnitude tended to be greater. No strong correlations were found between PO(2) and BF power spectra for either tumor or muscle or between the frequency patterns of BP and tumor PO(2) spectra. These results quantitatively demonstrate, for the first time, that BF and PO(2) fluctuate at very low frequencies in tumors. In addition to having biological significance for tumor therapy, these fluctuations may have the potential to alter tumor cell behavior via induction of hypoxia reoxygenation injury and/or altered gene expression.

摘要

肿瘤缺氧是肿瘤放射治疗的主要障碍。典型的肿瘤缺氧以两种形式出现:慢性缺氧和急性缺氧。尽管急性缺氧的存在早已得到认可,但其时间特征从未被直接测量和记录。在本研究中,对9只左后肢皮下接种R3230Ac大鼠乳腺腺癌的Fischer 344大鼠同时测量肿瘤组织的氧分压(PO₂)、血流量(BF)和动脉血压(BP)。我们使用凹尖氧微电极在单个位置测量PO₂ 36 - 125分钟。同时,我们使用激光多普勒血流仪(LDF)在肿瘤内的两个部位测量肿瘤BF。对7只未接种肿瘤的大鼠的股四头肌进行了类似的记录。对PO₂、肿瘤BF和BP记录进行了傅里叶分析。PO₂和BF在肿瘤和肌肉中均显示出低频波动(<2次/分钟),但肿瘤中变化的幅度更大。肿瘤BF在低频时比肌肉BF表现出更多的活动,且幅度往往更大。在肿瘤或肌肉的PO₂和BF功率谱之间,以及BP和肿瘤PO₂谱的频率模式之间均未发现强相关性。这些结果首次定量证明,BF和PO₂在肿瘤中以非常低的频率波动。除了对肿瘤治疗具有生物学意义外,这些波动可能有潜力通过诱导缺氧复氧损伤和/或改变基因表达来改变肿瘤细胞行为。

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