口腔鳞状细胞癌放射耐药性中铁蛋白-防御性 xCT/GPX4 轴的参与及其对预后的影响

Kohei Ishikawa, Y. Matsuoka, Kosuke Shinohara, Junki Inoue, H. Yano, Takafumi Eto, Tatsuro Yamamoto, K. Yamana, Shunsuke Gohara, H. Takeshita, Masatoshi Hirayama, K. Kawahara, A. Hirosue, Y. Fukugawa, R. Yoshida, Yoshihiro Komohara, Hideki Nakayama
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引用次数: 0

摘要

放疗是晚期口腔鳞状细胞癌(OSCC)患者的主要治疗方法,但临床疗效不佳,导致预后不良。辐射会诱导铁中毒,这是一种由铁依赖性脂质过氧化驱动的细胞死亡形式。我们使用免疫组化方法检测了活检标本肿瘤细胞中 xCT 和 GPX4 的表达,并评估了铁氧化诱导剂依拉斯汀和 RSL3(分别通过抑制 xCT 和 GPX4 起作用)在辐射介导下的抗肿瘤效果。单变量分析显示,xCT免疫组化高表达与较短的生存期相关,而GPX4高表达是一个独立的不良预后因素,这表明xCT/GPX4轴影响OSCC的临床预后。利用两种OSCC细胞系进行的分析表明,铁色素沉着抑制剂ferrostatin-1可提高辐照细胞的克隆存活率,而erastin和RSL3可降低其存活率。依拉斯汀和 RSL3 的抗肿瘤作用增强的同时,脂质过氧化作用也增强了,而铁螯合剂去铁胺抑制了脂质过氧化作用。在小鼠异种移植模型中,依拉斯汀和RSL3增强了辐射对OSCC细胞的作用;这些作用与肿瘤细胞中脂质过氧化标记物4-羟基壬烯醛的表达增加有关。此外,通过靶向xCT/GPX4轴,放疗与诱导铁氧化结合可改善晚期OSCC患者的预后。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Involvement of ferroptosis‐defensive xCT/GPX4 axis in radioresistance and its impacts on prognosis in oral squamous cell carcinoma
Radiotherapy, the mainstay treatment for patients with advanced oral squamous cell carcinoma (OSCC), has low clinical efficacy, resulting in poor prognosis. Radiation induces ferroptosis, a form of cell death driven by iron‐dependent lipid peroxidation. Since the xCT/glutathione peroxidase 4 (GPX4) axis is predominantly involved in the ferroptosis defense system, targeting this axis may potentiate cancer cell vulnerability to ferroptosis.We examined the expression of xCT and GPX4 in the tumor cells of biopsy specimens using immunohistochemistry and evaluated the radiation‐mediated antitumor effects of the ferroptosis inducers, erastin and RSL3, that act by inhibiting xCT and GPX4, respectively.Univariate analysis revealed that high immunohistochemical expression of xCT was correlated with shorter survival, and high GPX4 expression was an independent poor prognostic factor, indicating that the xCT/GPX4 axis influences the clinical outcome of OSCC. Analyses using two types of OSCC cell lines revealed that the clonogenic survival of irradiated cells was increased by the ferroptosis inhibitor ferrostatin‐1 and decreased by erastin and RSL3. The enhanced antitumor effects of erastin and RSL3 were accompanied by increased lipid peroxidation, which was suppressed by the iron chelator deferoxamine. Erastin and RSL3 enhance the effects of radiation on OSCC cells in a mouse xenograft model; these effects were associated with increased expression of the lipid peroxidation marker 4‐hydroxynonenal in tumor cells.xCT/GPX4 axis is involved in the tumor resistance against radiation through the inhibition of ferroptosis in OSCC. Furthermore, radiotherapy combined with ferroptosis induction by targeting the xCT/GPX4 axis may improve patient prognosis in advanced OSCC.
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