Yohan Darren, Kim Anthony, Korpela Elina, Liu Stanley, Niu Carolyn, Wilson Brian C, Chin Lee Cl
Department of Physics, Ryerson University, Ontario, Canada ; These authors contributed equally to this work.
Department of Medical Physics, Odette Cancer Centre, Sunnybrook Health Sciences Centre Canada ; These authors contributed equally to this work.
Biomed Opt Express. 2014 Apr 1;5(5):1309-20. doi: 10.1364/BOE.5.001309. eCollection 2014 May 1.
Monitoring the onset of erythema following external beam radiation therapy has the potential to offer a means of managing skin toxicities via biological targeted agents - prior to full progression. However, current skin toxicity scoring systems are subjective and provide at best a qualitative evaluation. Here, we investigate the potential of diffuse optical spectroscopy (DOS) to provide quantitative metrics for scoring skin toxicity. A DOS fiberoptic reflectance probe was used to collect white light spectra at two probing depths using two short fixed source-collector pairs with optical probing depths sensitive to the skin surface. The acquired spectra were fit to a diffusion theory model of light transport in tissue to extract optical biomarkers (hemoglobin concentration, oxygen saturation, scattering power and slope) from superficial skin layers of nude mice, which were subjected to erythema inducing doses of ionizing radiation. A statistically significant increase in oxygenated hemoglobin (p < 0.0016) was found in the skin post-irradiation - confirming previous reports. More interesting, we observed for the first time that the spectral scattering parameters, A (p = 0.026) and k (p = 0.011), were an indicator of erythema at day 6 and could potentially serve as an early detection optical biomarker of skin toxicity. Our data suggests that reflectance DOS may be employed to provide quantitative assessment of skin toxicities following curative doses of external beam radiation.
监测外照射放疗后红斑的出现,有可能在皮肤毒性完全发展之前,通过生物靶向药物提供一种管理皮肤毒性的方法。然而,目前的皮肤毒性评分系统是主观的,充其量只能提供定性评估。在此,我们研究漫射光谱(DOS)为皮肤毒性评分提供定量指标的潜力。使用DOS光纤反射探头,通过两对短的固定源-收集器对,在两个探测深度收集白光光谱,其光学探测深度对皮肤表面敏感。将采集到的光谱与组织中光传输的扩散理论模型进行拟合,以从接受红斑诱导剂量电离辐射的裸鼠浅表皮肤层中提取光学生物标志物(血红蛋白浓度、氧饱和度、散射能力和斜率)。照射后皮肤中氧合血红蛋白出现统计学显著增加(p < 0.0016),这证实了先前的报道。更有趣的是,我们首次观察到光谱散射参数A(p = 0.026)和k(p = 0.011)在第6天是红斑的指标,并且有可能作为皮肤毒性的早期检测光学生物标志物。我们的数据表明,反射式DOS可用于对根治性剂量外照射放疗后的皮肤毒性进行定量评估。