Department of Physics, Carleton University, K1S 5B6, Ottawa, Canada.
Phys Med Biol. 2018 Jan 9;63(2):025002. doi: 10.1088/1361-6560/aaa176.
Recent findings in populations exposed to ionizing radiation (IR) indicate dose-related lens opacification occurs at much lower doses (<2 Gy) than indicated in radiation protection guidelines. As a result, research efforts are now being directed towards identifying early predictors of lens degeneration resulting in cataractogenesis. In this study, Raman micro-spectroscopy was used to investigate the effects of varying doses of radiation, ranging from 0.01 Gy to 5 Gy, on human lens epithelial (HLE) cells which were chemically fixed 24 h post-irradiation. Raman spectra were acquired from the nucleus and cytoplasm of the HLE cells. Spectra were collected from points in a 3 × 3 grid pattern and then averaged. The raw spectra were preprocessed and principal component analysis followed by linear discriminant analysis was used to discriminate between dose and control for 0.25, 0.5, 2, and 5 Gy. Using leave-one-out cross-validation accuracies of greater than 74% were attained for each dose/control combination. The ultra-low doses 0.01 and 0.05 Gy were included in an analysis of band intensities for Raman bands found to be significant in the linear discrimination, and an induced repair model survival curve was fit to a band-difference-ratio plot of this data, suggesting HLE cells undergo a nonlinear response to low-doses of IR. A survival curve was also fit to clonogenic assay data done on the irradiated HLE cells, showing a similar nonlinear response.
最近在接触电离辐射(IR)的人群中的发现表明,与辐射防护指南中所示的剂量相比,剂量相关的晶状体混浊发生在低得多的剂量(<2 Gy)下。因此,目前的研究工作旨在确定导致白内障形成的晶状体变性的早期预测因子。在这项研究中,使用拉曼微光谱技术研究了从 0.01 Gy 到 5 Gy 不等的不同剂量的辐射对人晶状体上皮(HLE)细胞的影响,这些细胞在照射后 24 小时被化学固定。从 HLE 细胞的核和细胞质中获取拉曼光谱。从 3 x 3 网格图案中的点采集光谱,然后进行平均。对原始光谱进行预处理,然后进行主成分分析和线性判别分析,以区分 0.25、0.5、2 和 5 Gy 的剂量和对照。对于每个剂量/对照组合,使用留一法交叉验证的准确率均超过 74%。对于在线性判别中发现具有显着性的拉曼带的强度分析,还包括超低剂量 0.01 和 0.05 Gy,并且对该数据的带差异比图拟合了诱导修复模型存活曲线,表明 HLE 细胞对低剂量的 IR 发生非线性反应。还对辐照的 HLE 细胞进行了克隆形成试验数据的拟合存活曲线,显示出类似的非线性反应。