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Raman spectroscopy monitoring of MCF10A cells irradiated by protons at clinical doses

机译:在临床剂量下质子辐照的MCF10A细胞的拉曼光谱监测

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摘要

Purpose: Proton therapy has been recently proposed as a radiotherapy form for breast cancer treatment in view of its potentially decreased normal-tissue toxicity compared with conventional photon-based radiotherapy. However, the risks for the healthy tissue cannot be completely eliminated. In the present study, the suitability of Raman spectroscopy to monitor the radiosensitivity of normal cells exposed to clinical proton beam was investigated. Materials and methods: MCF10A normal human breast cells were irradiated at two different proton doses: 0.5 Gy and 4 Gy. They were fixed immediately after irradiation and measured by means of Raman spectroscopy technique. The obtained data were analyzed both by evaluating the intensity ratio of specific Raman spectral peaks and through Multivariate Distance Matrix Regression technique. Results: Certain Raman peaks associated with DNA showed a systematic suppression at both dose levels. In particular, the intensity of a Raman peak at 784 cm(-1), related to a stretching mode inside the phosphate group of DNA, is very sensitive to the proton beam exposure, even at the lowest investigated dose. Therefore, it could be considered as a spectral marker of cytogenetic damage. Conclusions: The obtained results are encouraging for the future of Raman spectroscopy in radiobiology research, particularly for improving risk assessment in the field of proton radiotherapy. Specifically, these findings validate Raman spectroscopy to measure biological response in human breast cells exposed to standard proton therapy doses used in clinical setting.
机译:目的:最近提出了质子疗法作为乳腺癌处理的放射疗法形式,考虑到与常规的光子的放射疗法相比其潜在的常规组织毒性可能降低。然而,不能完全消除健康组织的风险。在本研究中,研究了拉曼光谱法监测暴露于临床质子梁的正常细胞的放射敏感性的适用性。材料和方法:在两种不同的质子剂量下照射MCF10A正常人类乳腺细胞:0.5Gy和4 Gy。它们在照射后立即固定并通过拉曼光谱技术测量。通过评估特定拉曼光谱峰值的强度比和通过多变量距离矩阵回归技术来分析所获得的数据。结果:与DNA相关的某些拉曼峰表现为两种剂量水平的系统抑制。特别地,与DNA的磷酸盐组内的拉伸模式有关的拉曼峰的强度对于质子束暴露非常敏感,即使在最低的研究剂量上也是如此。因此,它可以被认为是细胞遗传学损伤的光谱标记。结论:获得的结果是令人鼓舞的raman光谱在放射生物学研究中的未来,特别是改善质子放射疗法领域的风险评估。具体而言,这些发现验证了拉曼光谱,以测量暴露于临床环境中使用的标准质子治疗剂量的人乳腺细胞中的生物反应。

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