Synchrotron-based infrared microspectroscopy unveils the biomolecular response of healthy and tumour cell lines to neon minibeam radiation therapy

被引:0
作者
Gonzalez-Vegas, R. [1 ]
Seksek, O. [2 ]
Bertho, A. [3 ,4 ]
Bergs, J. [5 ]
Hirayama, R. [6 ]
Inaniwa, T. [6 ,7 ]
Matsufuji, N. [6 ,7 ]
Shimokawa, T. [6 ,7 ]
Prezado, Y. [3 ,4 ,8 ,9 ]
Yousef, I. [10 ]
Martinez-Rovira, I. [1 ]
机构
[1] Univ Autonoma Barcelona UAB, Phys Dept, Barcelona 08193, Spain
[2] French Natl Ctr Sci Res, IJCLab, F-91450 ORSAY, France
[3] Univ PSL, Inst Curie, CNRS UMR3347, INSERM,U1021,Signalisat Radiobiol & Canc, F-91400 Orsay, France
[4] Univ Paris Saclay, CNRS UMR3347, INSERM, Signalisat Radiobiol & Canc,U1021, F-91400 Orsay, France
[5] Charite Univ Med Berlin, Radiol Dept, D-10117 Berlin, Germany
[6] Natl Inst Quantum Sci & Technol QST, Inst Quantum Med Sci, Dept Charged Particle Therapy Res, 4-9-1 Anagawa,Inage Ku, Chiba 2638555, Japan
[7] QST, Dept Accelerator & Med Phys, 4-9-1 Anagawa,Inage Ku, Chiba 2638555, Japan
[8] Univ Santiago De Compostela, Ctr Res Mol Med & Chron Dis CIMUS, New Approaches Radiotherapy Lab, Inst Invest Sanitaria Santiago de Compostela IDIS, Santiago De Compostela 15706, A Coruna, Spain
[9] Galician Agcy Innovat GAIN, Oportunius Program, Santiago De Compostela, A Coruna, Spain
[10] ALBA Synchrotron, MIRAS Beamline, Barcelona 08209, Spain
基金
欧洲研究理事会;
关键词
SPECTROSCOPY; DAMAGE; IONS; FTIR;
D O I
10.1039/d4an01038h
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Radioresistant tumours remain complex to manage with current radiotherapy (RT) techniques. Heavy ion beams were proposed for their treatment given their advantageous radiobiological properties. However, previous studies with patients resulted in serious adverse effects in the surrounding healthy tissues. Heavy ion RT could therefore benefit from the tissue-sparing effects of minibeam radiation therapy (MBRT). To investigate the potential of this combination, here we assessed the biochemical response to neon MBRT (NeMBRT) through synchrotron-based Fourier transform infrared microspectroscopy (SR-FTIRM). Healthy (BJ) and tumour (B16-F10) cell lines were subjected to seamless (broad beam) neon RT (NeBB) and NeMBRT at HIMAC. SR-FTIRM measurements were conducted at the MIRAS beamline of ALBA Synchrotron. Principal component analysis (PCA) permitted to assess the biochemical effects after the irradiations and 24 hours post-irradiation for the different RT modalities and doses. For the healthy cells, NeMBRT resulted in the most dissimilar spectral signatures from non-irradiated cells early after irradiations, mainly due to protein conformational modifications. Nevertheless, most of the damage appeared to recover one day post-RT; conversely, protein- and nucleic acid-related IR bands were strongly affected by NeBB 24 hours after treatment, suggesting superior oxidative damage and nucleic acid degradation. Tumour cells appeared to be less sensitive to NeBB than to NeMBRT shortly after RT. Still, after one day, both NeBB and the high-dose NeMBRT regions yielded important spectral modifications, suggestive of cell death processes, protein oxidation or oxidative stress. Lipid-associated spectral changes, especially due to the NeBB and NeMBRT peak groups for the tumour cell line, were consistent with reactive oxygen species attacks.
引用
收藏
页码:342 / 352
页数:11
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