Liu Ju-Chi, Hsiu Hsin, Hsu Yi-Ping, Tsai Hung-Chi, Kuo Chung-Hsien
Department of Internal Medicine, School of Medicine, College of Medicine, Taipei Medical UniversityTaipei, Taiwan; Division of Cardiology, Department of Internal Medicine, Shuang Ho HospitalTaipei, Taiwan.
Graduate Institute of Biomedical Engineering, National Taiwan University of Science and Technology Taipei, Taiwan.
Am J Cancer Res. 2016 Aug 1;6(8):1812-9. eCollection 2016.
This study investigated microcirculatory-blood-flow responses in nude mice following the injection of CT26 tumor cells by analyzing the frequency content of skin blood-flow signals recorded on the skin surface. CT26 cells were injected subcutaneously (10^4/100 μl) into the right back flank of each 7-week-old mouse. Three-minute laser Doppler flowmetry (LDF) signals were measured in 60 nude mice. The data sequences were obtained at 1, 2, and 3 weeks after injecting CT26 cells. Mouse tissue samples were cut into sections and examined microscopically to determine the condition of cancer metastasis. Spectral analysis performed after 1 week revealed a significant decrease in the relative energy contribution of the endothelium-related frequency band, and significant increases in those of the myogenic and respiration-related frequency bands of the LDF signals in the metastasis group (n=12). To the best of our knowledge, this is the first study demonstrating the feasibility of evaluating metastasis in animal subjects based on changes in noninvasively measured LDF parameters. Changes in the LDF spectral indexes can be attributed to differences in the microcirculatory regulatory activities. The present measurements performed on the skin surface provide a noninvasive and real-time method for evaluating the microcirculatory responses induced by implanting CT26 tumor cells.
本研究通过分析记录在皮肤表面的皮肤血流信号的频率成分,调查了裸鼠注射CT26肿瘤细胞后的微循环血流反应。将CT26细胞(10^4/100μl)皮下注射到每只7周龄小鼠的右后胁腹。在60只裸鼠中测量了三分钟的激光多普勒血流仪(LDF)信号。在注射CT26细胞后的第1、2和3周获取数据序列。将小鼠组织样本切成切片并进行显微镜检查以确定癌症转移情况。1周后进行的频谱分析显示,转移组(n = 12)中LDF信号的内皮相关频段的相对能量贡献显著降低,而肌源性和呼吸相关频段的相对能量贡献显著增加。据我们所知,这是第一项证明基于非侵入性测量的LDF参数变化评估动物受试者转移情况可行性的研究。LDF频谱指数的变化可归因于微循环调节活动的差异。目前在皮肤表面进行的测量提供了一种非侵入性的实时方法,用于评估植入CT26肿瘤细胞引起的微循环反应。