Investigating the biochemical response of proton minibeam radiation therapy by means of synchrotron-based infrared microspectroscopy
Roberto González-Vegas,
Ibraheem Yousef,
Olivier Seksek
et al.
Abstract:The biology underlying proton minibeam radiation therapy (pMBRT) is not fully understood. Here we aim to elucidate the biological effects of pMBRT using Fourier Transform Infrared Microspectroscopy (FTIRM). In vitro (CTX-TNA2 astrocytes and F98 glioma rat cell lines) and in vivo (healthy and F98-bearing Fischer rats) irradiations were conducted, with conventional proton radiotherapy and pMBRT. FTIRM measurements were performed at ALBA Synchrotron, and multivariate data analysis methods were employed to assess … Show more
The biochemical impact of neon minibeam radiation therapy (NeMBRT) on BJ (healthy) and B16-F10 (tumour) cell lines was investigated through synchrotron-based infrared microspectroscopy.
The biochemical impact of neon minibeam radiation therapy (NeMBRT) on BJ (healthy) and B16-F10 (tumour) cell lines was investigated through synchrotron-based infrared microspectroscopy.
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