Interval-Principal Component Analysis of Raman spectra of single cells exposed to X-ray radiation

I. Delfino, V. Capozzi, G. Perna, C. Camerlingo, L. Manti, M. Lepore
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引用次数: 1

Abstract

A Micro-Raman spectroscopy investigation has been performed on human mammary epithelial cells after irradiation by different X-ray doses. The analysis by interval-Principal Component Analysis (iPCA) has allowed us to outline the subtle differences in the Raman spectra induced by irradiation. In particular, this experimental approach has enabled to delineate radiation-induced changes in structure, protein, nucleic acid, lipid, and carbohydrate content. This has further confirmed that micro-Raman spectroscopy coupled to properly chosen data analysis methods is a very sensitive technique to detect molecular changes even in single human cells following exposure to ionising radiation. This would help developing innovative approaches to monitor radiation treatment effects so as to reduce the overall radiation dose and minimize damage to the surrounding healthy cells, both aspects being of great importance in the field of radiation therapy.
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x射线辐照下单细胞拉曼光谱的区间主成分分析
用微拉曼光谱对不同剂量x射线照射后的人乳腺上皮细胞进行了研究。通过区间主成分分析(iPCA),我们得到了辐照引起的拉曼光谱的细微差异。特别是,这种实验方法能够描述辐射引起的结构、蛋白质、核酸、脂质和碳水化合物含量的变化。这进一步证实,微拉曼光谱与适当选择的数据分析方法相结合,是一种非常敏感的技术,即使在暴露于电离辐射后的单个人类细胞中,也能检测到分子变化。这将有助于开发监测放射治疗效果的创新方法,以减少总辐射剂量并尽量减少对周围健康细胞的损害,这两个方面在放射治疗领域都非常重要。
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