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首页> 外文期刊>Biomedical Optics Express >Quantitative monitoring of radiation induced skin toxicities in nude mice using optical biomarkers measured from diffuse optical reflectance spectroscopy
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Quantitative monitoring of radiation induced skin toxicities in nude mice using optical biomarkers measured from diffuse optical reflectance spectroscopy

机译:使用漫反射光谱法测量的光学生物标记物定量监测裸鼠体内辐射诱发的皮肤毒性

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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.
机译:外部束放射治疗后监测红斑的发作有可能提供一种在完全发展之前通过生物靶向剂管理皮肤毒性的方法。但是,当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。在这里,我们调查了漫射光谱(DOS)的潜力,以提供定量的皮肤毒性指标。使用DOS光纤反射探头,使用两个短的固定光源-收集器对,在两个探测深度处收集白光光谱,其光学探测深度对皮肤表面敏感。所获得的光谱适合于光在组织中传播的扩散理论模型,以从裸鼠的浅表皮肤层提取光学生物标记物(血红蛋白浓度,氧饱和度,散射功率和斜率),并对其进行红斑诱导剂量的电离辐射。辐照后的皮肤中发现氧化性血红蛋白有统计学意义的增加(p <0.0016)–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)是第6天红斑的指标,并有可能作为皮肤毒性的早期检测光学生物标记。我们的数据表明,可反射剂量的DOS可用于定量治疗外照射后的皮肤毒性。

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