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Soft X-Ray Microscopy Radiation Damage On Fixed Cells Investigated With SynchrotronRadiation FTIR Microscopy

机译:用同步加速器研究固定细胞的软X射线显微镜辐射损伤辐射FTIR显微镜

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摘要

Radiation damage of biological samples remains a limiting factor in high resolution X-ray microscopy (XRM). Several studies have attempted to evaluate the extent and the effects of radiation damage, proposing strategies to minimise or prevent it. The present work aims to assess the impact of soft X-rays on formalin fixed cells on a systematic manner. The novelty of this approach resides on investigating the radiation damage not only with XRM, as often reported in relevant literature on the topic, but by coupling it with two additional independent non-destructive microscopy methods: Atomic Force Microscopy (AFM) and FTIR Microscopy (FTIRM). Human Embryonic Kidney 293 cells were exposed to different radiation doses at 1 keV. In order to reveal possible morphological and biochemical changes, the irradiated cells were systematically analysed with AFM and FTIRM before and after. Results reveal that while cell morphology is not substantially affected, cellular biochemical profile changes significantly and progressively when increasing dose, resulting in a severe breakdown of the covalent bonding network. This information impacts most soft XRM studies on fixed cells and adds an in-depth understanding of the radiation damage for developing better prevention strategies.
机译:生物样品的辐射损伤仍然是高分辨率X射线显微镜(XRM)的限制因素。几项研究试图评估辐射损害的程度和影响,并提出了减少或预防辐射损害的策略。本工作旨在以系统的方式评估软X射线对福尔马林固定细胞的影响。这种方法的新颖性不仅在于研究XRM引起的辐射损伤,正如有关主题的相关文献中经常报道的那样,而且还通过将其与另外两种独立的非破坏性显微镜方法结合在一起:原子力显微镜(AFM)和FTIR显微镜( FTIRM)。人类胚胎肾脏293细胞以1 keV的剂量接受不同的辐射剂量。为了揭示可能的形态和生化变化,在辐照前后对细胞进行AFM和FTIRM分析。结果表明,虽然细胞形态基本没有受到影响,但是当增加剂量时,细胞生化特性会发生明显且逐渐的变化,从而导致共价键网络的严重破坏。该信息会影响大多数对固定细胞进行的软XRM研究,并为开发更好的预防策略增加对辐射损伤的深入了解。

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