组织特异性铁水平调节脂质过氧化和FLASH放疗效果。

IF 9.6 1区 生物学 Q1 CELL BIOLOGY
Nuria Vilaplana-Lopera, Jiyoung Kim, Gilyeong Nam, Iain D C Tullis, Salome Paillas, Jia-Ling Ruan, Pei Ju Lee, Yanyan Jiang, Sohee Park, Tianxu Hou, Ayesha Nasir, Eve Charlesworth, Ellie Walker, Ammar Abu-Halawa, Mark A Hill, Changhoon Choi, Ik Jae Lee, Youngtae Jeong, Samira Lakhal-Littleton, Chee Kin Then, Shing-Chuan Shen, Amato J Giaccia, Kristoffer Petersson, Eui Jung Moon
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引用次数: 0

摘要

铁对活细胞至关重要,在细胞呼吸、DNA合成和各种代谢功能中起着关键作用。重要的是,与正常细胞相比,癌细胞对铁的依赖性更高,以支持它们的快速生长和存活。由于这个事实,肿瘤更容易发生铁下垂,铁下垂是一种依赖铁的调节细胞死亡形式。放射治疗(RT)是许多癌症患者的标准治疗方法,已知会诱发铁下垂。超高剂量率FLASH RT提供了一个改进的治疗窗口,最大限度地减少对正常组织的损伤,同时保持肿瘤控制。然而,FLASH RT对正常组织的保护作用背后的确切生物学机制尚不清楚。在这项研究中,我们提出脂质过氧化和铁下垂的变化,由正常和癌组织之间铁水平的内在差异驱动,有助于这种影响。我们的研究结果表明,与常规RT相比,FLASH RT增加了肿瘤细胞的脂质过氧化和诱导铁凋亡,但没有显著提高正常组织的脂质过氧化和铁凋亡。为了确定提高正常组织中的铁水平是否可以取消FLASH的保护作用,我们在RT之前和之后给小鼠喂食高铁饮食。导致肠道损伤和脂质过氧化。这表明,基线铁水平和铁驱动的脂质过氧化是介导FLASH RT保护结果的关键因素。总体而言,我们的研究揭示了铁在调节RT反应中的作用,并为FLASH RT如何影响正常和癌组织提供了新的机制见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Tissue-specific iron levels modulate lipid peroxidation and the FLASH radiotherapy effect.

Tissue-specific iron levels modulate lipid peroxidation and the FLASH radiotherapy effect.

Tissue-specific iron levels modulate lipid peroxidation and the FLASH radiotherapy effect.

Tissue-specific iron levels modulate lipid peroxidation and the FLASH radiotherapy effect.

Iron is vital to living cells, playing a key role in cellular respiration, DNA synthesis, and various metabolic functions. Importantly, cancer cells have a higher dependency on iron compared to normal cells to support their rapid growth and survival. Due to this fact, tumors are more vulnerable to ferroptosis, an iron-dependent form of regulated cell death. Radiation therapy (RT), a standard treatment for many cancer patients, is known to induce ferroptosis. Ultra-high dose rate FLASH RT offers an improved therapeutic window by minimizing damage to normal tissues while preserving tumor control. However, the precise biological mechanisms behind the protective effects of FLASH RT on normal tissues remain unclear. In this study, we propose that variations in lipid peroxidation and ferroptosis, driven by intrinsic differences in iron levels between normal and cancerous tissues, contribute to this effect. Our findings show that FLASH RT increases lipid peroxidation and induces ferroptosis in tumor cells but does not significantly elevate lipid peroxidation and ferroptosis in normal tissues compared to conventional RT. To determine whether raising iron levels in normal tissues could abrogate the protective effects of FLASH, mice were fed a high-iron diet before RT. A high-iron diet before and after RT reversed the protective effect of FLASH, resulting in increased intestinal damage and lipid peroxidation. This suggests that baseline iron levels and iron-driven lipid peroxidation are critical factors in mediating the protective outcomes of FLASH RT. Overall, our study sheds light on the role of iron in modulating RT responses and provides new mechanistic insights into how FLASH RT influences normal and cancerous tissues.

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来源期刊
Cell Death & Disease
Cell Death & Disease CELL BIOLOGY-
CiteScore
15.10
自引率
2.20%
发文量
935
审稿时长
2 months
期刊介绍: Brought to readers by the editorial team of Cell Death & Differentiation, Cell Death & Disease is an online peer-reviewed journal specializing in translational cell death research. It covers a wide range of topics in experimental and internal medicine, including cancer, immunity, neuroscience, and now cancer metabolism. Cell Death & Disease seeks to encompass the breadth of translational implications of cell death, and topics of particular concentration will include, but are not limited to, the following: Experimental medicine Cancer Immunity Internal medicine Neuroscience Cancer metabolism
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