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Raman profile alterations of irradiated human nasopharyngeal cancer cells detected with laser tweezer Raman spectroscopy

机译:用激光镊子拉曼光谱检测辐照人鼻咽癌细胞的拉曼剖面改变

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Radiotherapy has been widely used for nasopharyngeal carcinoma (NPC) treatment, which causes DNA damage and alterations of macromolecules of cancer cells. However, the Raman profile alterations of irradiated NPC cells remain unclear. In the present study, we used laser tweezers Raman spectroscopy (LTRS) to monitor internal structural changes and chemical modifications in NPC cells after exposure at a clinical dose (2.3 Gy) to X-ray irradiation (IR) at a single-cell level. Two types of NPC cell lines, CNE2 (EBV-negative cell line) and C666-1 (EBV-positive cell line), were used. The Raman spectra of cells before and after radiation treatment were recorded by LTRS. The analysis of spectral differences indicated that the IR caused Raman profile alterations of intracellular proteins, DNA base and lipids. Moreover, by using the multivariate statistical analysis including principal component analysis (PCA) and linear discriminant analysis (LDA) algorithm, an accuracy of 90.0% for classification between CNE2 cells before and after IR could be achieved, which was 10% better than that of C666-1 cells. The results demonstrated that CNE2 cells were more sensitive to IR in comparison to C666-1 cells, providing useful information for creating a treatment strategy in clinical practice. This exploratory study suggested that LTRS combined with multivariate statistical analysis would be a novel and effective tool for evaluating the radiotherapeutic effect on tumor cells, and for detection of the corresponding alterations at the molecular level.
机译:放射疗法已广泛用于鼻咽癌(NPC)治疗,导致DNA损伤和癌细胞大分子的变化。然而,辐照的NPC细胞的拉曼轮廓改变仍不清楚。在本研究中,我们使用激光镊子拉曼光谱(LTR)在单细胞水平下暴露于临床剂量(2.3GY)到X射线照射(IR)之后监测NPC细胞中的内部结构变化和化学修饰。使用两种类型的NPC细胞系CNE2(EBV阴性细胞系)和C666-1(EBV阳性细胞系)。通过LTRS记录辐射处理前后细胞的拉曼光谱。光谱差异分析表明,IR导致细胞内蛋白,DNA碱和脂质的拉曼轮廓改变。此外,通过使用包括主成分分析(PCA)和线性判别分析(LDA)算法的多变量统计分析,可以实现IR在IR之前和之后CNE2细胞分类90.0%的准确度,这比它更好地为10% C666-1细胞。结果表明,与C666-1细胞相比,CNE2细胞对IR更敏感,提供了用于在临床实践中产生治疗策略的有用信息。该探索性研究表明,LTR与多元统计分析相结合将是用于评估对肿瘤细胞的放射治疗作用以及检测分子水平的相应改变的新颖有效工具。

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