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首页> 外文期刊>Journal of clinical biochemistry and nutrition. >Reactive oxygen species induced by non-steroidal anti-inflammatory drugs enhance the effects of photodynamic therapy in gastric cancer cells
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Reactive oxygen species induced by non-steroidal anti-inflammatory drugs enhance the effects of photodynamic therapy in gastric cancer cells

机译:非甾体抗炎药诱导的活性氧增强胃癌细胞光动力疗法的作用

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摘要

Photodynamic therapy is useful for the treatment of cancer because it is minimally invasive for patients. Certain porphyrin compounds and their derivatives have been used as the photo sensitizer because they accumulate specifically in cancerous tissues. However, the detailed mechanism of this phenomenon has not been clarified. We previously reported that a proton-coupled folate transporter, HCP1, transported porphyrins and that regulation of the protein was associated with cancer-specific reactive oxygen species from mitochondria (mitROS). Therefore, over-generation of mitROS could increase HCP1 expression and the effect of photodynamic therapy. We investigated whether pretreatment with indomethacin influenced photodynamic therapy by using a rat normal gastric mucosal cell line, RGM1, its cancer-like mutated cell line, RGK1, and a manganese superoxide dismutase (MnSOD)-overexpressing RGK cell line, RGK-MnSOD. Indomethacin promotes the generation of cellular mitROS by inhibiting the electron transport chain, and MnSOD scavenges the mitROS. We elucidated that indomethacin enhanced cancer-specific mitROS generation and increased HCP1 expression. Furthermore, RGK1 cells showed higher cellular incorporation of hematoporphyrin and better therapeutic effect with indomethacin treatment whereas RGK-MnSOD cells did not show a difference. Thus, we concluded that indomethacin improved the effect of photodynamic
机译:光动力疗法对癌症的治疗非常有用,因为它对患者的侵袭性最小。某些卟啉化合物及其衍生物已被用作光敏剂,因为它们特别在癌组织中蓄积。但是,此现象的详细机制尚未阐明。我们以前曾报道过质子偶联的叶酸转运蛋白HCP1转运卟啉,并且蛋白质的调节与线粒体(mitROS)的癌症特异性活性氧有关。因此,过量的mitROS可以增加HCP1表达和光动力疗法的效果。我们调查了吲哚美辛预处理是否通过使用大鼠正常胃粘膜细胞系RGM1,其癌样突变细胞系RGK1和过表达锰超氧化物歧化酶(MnSOD)的RGK细胞系RGK-MnSOD来影响光动力疗法。消炎痛通过抑制电子传输链来促进细胞mitROS的生成,而MnSOD清除mitROS。我们阐明了消炎痛增强了癌症特异性mitROS的产生并增加了HCP1的表达。此外,RGK1细胞显示更高的血卟啉细胞掺入率和吲哚美辛治疗的治疗效果更好,而RGK-MnSOD细胞则没有差异。因此,我们得出的结论是消炎痛改善了光动力作用

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