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癌症放射抗性的特征是在细胞周期中脂滴含量存在差异。

Cancer radioresistance is characterized by a differential lipid droplet content along the cell cycle.

作者信息

Pagliari Francesca, Jansen Jeannette, Knoll Jan, Hanley Rachel, Seco Joao, Tirinato Luca

机构信息

Division of Biomedical Physics in Radiation Oncology, German Cancer Research Center (DKFZ), 69120, Heidelberg, Germany.

Department of Physics and Astronomy, Heidelberg University, Im Neuenheimer Feld, 69120, Heidelberg, Germany.

出版信息

Cell Div. 2024 Apr 20;19(1):14. doi: 10.1186/s13008-024-00116-y.

Abstract

BACKGROUND

Cancer radiation treatments have seen substantial advancements, yet the biomolecular mechanisms underlying cancer cell radioresistance continue to elude full understanding. The effectiveness of radiation on cancer is hindered by various factors, such as oxygen concentrations within tumors, cells' ability to repair DNA damage and metabolic changes. Moreover, the initial and radiation-induced cell cycle profiles can significantly influence radiotherapy responses as radiation sensitivity fluctuates across different cell cycle stages. Given this evidence and our prior studies establishing a correlation between cancer radiation resistance and an increased number of cytoplasmic Lipid Droplets (LDs), we investigated if LD accumulation was modulated along the cell cycle and if this correlated with differential radioresistance in lung and bladder cell lines.

RESULTS

Our findings identified the S phase as the most radioresistant cell cycle phase being characterized by an increase in LDs. Analysis of the expression of perilipin genes (a family of proteins involved in the LD structure and functions) throughout the cell cycle also uncovered a unique gene cell cycle pattern.

CONCLUSIONS

In summary, although these results require further molecular studies about the mechanisms of radioresistance, the findings presented here are the first evidence that LD accumulation could participate in cancer cells' ability to better survive X-Ray radiation when cells are in the S phase. LDs can represent new players in the radioresistance processes associated with cancer metabolism. This could open new therapeutic avenues in which the use of LD-interfering drugs might enhance cancer sensitivity to radiation.

摘要

背景

癌症放射治疗已取得显著进展,但癌细胞放射抗性背后的生物分子机制仍未完全明晰。辐射对癌症的有效性受到多种因素的阻碍,如肿瘤内的氧气浓度、细胞修复DNA损伤的能力以及代谢变化。此外,初始和辐射诱导的细胞周期谱可显著影响放疗反应,因为辐射敏感性在不同细胞周期阶段会发生波动。鉴于此证据以及我们之前建立癌症辐射抗性与细胞质脂滴(LDs)数量增加之间相关性的研究,我们调查了LD积累是否在细胞周期中受到调节,以及这是否与肺和膀胱细胞系中的差异放射抗性相关。

结果

我们的研究结果确定S期是最具放射抗性的细胞周期阶段,其特征是LDs增加。对整个细胞周期中脂联素基因(参与LD结构和功能的一类蛋白质)表达的分析也揭示了一种独特的基因细胞周期模式。

结论

总之,尽管这些结果需要进一步对放射抗性机制进行分子研究,但此处呈现的研究结果是首个证据,表明当细胞处于S期时,LD积累可能参与癌细胞更好地在X射线辐射下存活的能力。LDs可能是与癌症代谢相关的放射抗性过程中的新参与者。这可能开辟新的治疗途径,其中使用LD干扰药物可能会增强癌症对辐射的敏感性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b049/11031927/c8e7f1691a57/13008_2024_116_Fig1_HTML.jpg

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