Sadeghi-Naini Ali, Zhou Stephanie, Gangeh Mehrdad J, Jahedmotlagh Zahra, Falou Omar, Ranieri Shawn, Azrif Muhammad, Giles Anoja, Czarnota Gregory J
Physical Sciences, Sunnybrook Research Institute, Sunnybrook Health Sciences Centre, Toronto, ON, Canada ; Department of Radiation Oncology, Odette Cancer Centre, Sunnybrook Health Sciences Centre, Toronto, ON, Canada ; Department of Medical Biophysics, Faculty of Medicine, University of Toronto, Toronto, ON, Canada ; Department of Radiation Oncology, Faculty of Medicine, University of Toronto, Toronto, ON, Canada.
Physical Sciences, Sunnybrook Research Institute, Sunnybrook Health Sciences Centre, Toronto, ON, Canada.
Oncoscience. 2015 Sep 3;2(8):716-26. doi: 10.18632/oncoscience.235. eCollection 2015.
Previous studies using high-frequency ultrasound have suggested that radiofrequency (RF) spectral analysis can be used to quantify changes in cell morphology to detect cell death response to therapy non-invasively. The study here investigated this at conventional-frequencies, frequently used in clinical settings. Spectral analysis was performed using ultrasound RF data collected with a clinical ultrasound platform. Acute myeloid leukemia (AML-5) cells were exposed to cisplatinum for 0-72 hours in vitro and prepared for ultrasound data collection. Preclinical in vivo experiments were also performed on AML-5 tumour-bearing mice receiving chemotherapy. The mid-band fit (MBF) spectral parameter demonstrated an increase of 4.4 ± 1.5 dBr for in vitro samples assessed 48 hours after treatment, a statistically significant change (p < 0.05) compared to control. Further, in vitro concentration-based analysis of a mixture of apoptotic and untreated cells indicated a mean change of 10.9 ± 2.4 dBr in MBF between 0% and 40% apoptotic cell mixtures. Similar effects were reproduced in vivo with an increase of 4.6 ± 0.3 dBr in MBF compared to control, for tumours with considerable apoptotic areas within histological samples. The alterations in the size of cells and nuclei corresponded well with changes measured in the quantitative ultrasound (QUS) parameters.
以往使用高频超声的研究表明,射频(RF)频谱分析可用于量化细胞形态变化,以无创检测细胞对治疗的死亡反应。本研究在临床环境中常用的常规频率下对此进行了调查。使用临床超声平台收集的超声RF数据进行频谱分析。急性髓系白血病(AML-5)细胞在体外暴露于顺铂0至72小时,并准备好进行超声数据收集。还对接受化疗的AML-5荷瘤小鼠进行了临床前体内实验。对于治疗后48小时评估的体外样本,中频拟合(MBF)频谱参数显示增加了4.4±1.5 dBr,与对照组相比有统计学显著变化(p<0.05)。此外,对凋亡细胞和未处理细胞混合物的体外浓度分析表明,在0%至40%凋亡细胞混合物之间,MBF的平均变化为10.9±2.4 dBr。在体内也再现了类似的效果,对于组织学样本中有相当大凋亡区域的肿瘤,与对照组相比,MBF增加了4.6±0.3 dBr。细胞和细胞核大小的变化与定量超声(QUS)参数测量的变化非常吻合。