Glutathione inhibits lung cancer development by reducing interleukin-6 expression and reversing the Warburg effect

IF 3.9 3区 生物学 Q2 CELL BIOLOGY Mitochondrion Pub Date : 2024-08-29 DOI:10.1016/j.mito.2024.101953
Chenchen Fan , Guojie Chen , Russel J. Reiter , Yidong Bai , Tiansheng Zheng , Lihong Fan
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Abstract

Reduced glutathione (GSH) is widely used as an antioxidant in clinical practice, but whether GSH affects the development of early lung cancer remains unclear. Herein, we investigated the mechanism underlying the anticancer effect of GSH in patients with pulmonary nodules. Thirty patients with pulmonary nodules were treated with GSH intravenously for 10 days at a dose of 1.8 g/d, followed by oral administration of the drug at a dose of 0.4 g three times daily for 6 months. The results showed that GSH treatment promoted nodule absorption and reduced the IL-6 level in the peripheral blood of the patients. GSH reduced IL-6 expression in inflammatory BEAS-2B and lung cancer cells and inhibited the proliferation of lung cancer cell lines in vitro. In addition, GSH reduced IL-6 expression by decreasing ROS via down-regulating PI3K/AKT/FoxO pathways. Finally, GSH reversed the Warburg effect, restored mitochondrial function, and reduced the IL-6 expression via PI3K/AKT/FoxO pathways. The in vivo experiment confirmed that GSH inhibited lung cancer growth, improved mitochondrial function, and reduced the IL-6 expression by regulating key enzymes via the PI3K/AKT/FoxO pathway. In conclusion, we uncovered that GSH exerts an unprecedentedly potent anti-cancer effect to prevent the transformation of lung nodules to lung cancer by improving the mitochondrial function and suppressing inflammation via PI3K/AKT/FoxO pathway. This investigation innovatively positions GSH as a potentially safe and efficacious old drug with new uses, inhibiting inflammation and early lung cancer. The use of the drug offers a promising preventive strategy when administered during the early stages of lung cancer.

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谷胱甘肽通过减少白细胞介素-6的表达和逆转沃伯格效应来抑制肺癌的发展。
还原型谷胱甘肽(GSH)作为一种抗氧化剂被广泛应用于临床,但GSH是否会影响早期肺癌的发生仍不清楚。在此,我们研究了 GSH 在肺结节患者中的抗癌作用机制。我们对30名肺部结节患者进行了为期10天的GSH静脉注射治疗,剂量为1.8克/天,随后又进行了为期6个月的口服治疗,剂量为0.4克/天,每天三次。结果显示,GSH 治疗促进了结节的吸收,并降低了患者外周血中的 IL-6 水平。GSH 降低了炎性 BEAS-2B 和肺癌细胞中 IL-6 的表达,并抑制了肺癌细胞株在体外的增殖。此外,GSH 还能通过下调 PI3K/AKT/FoxO 通路减少 ROS,从而降低 IL-6 的表达。最后,GSH 逆转了沃伯格效应,恢复了线粒体功能,并通过 PI3K/AKT/FoxO 途径降低了 IL-6 的表达。体内实验证实,GSH 可通过 PI3K/AKT/FoxO 途径调节关键酶,从而抑制肺癌生长、改善线粒体功能并降低 IL-6 的表达。总之,我们发现 GSH 可通过 PI3K/AKT/FoxO 途径改善线粒体功能和抑制炎症,从而发挥前所未有的强效抗癌作用,防止肺结节转化为肺癌。这项研究创新性地将 GSH 定位为一种潜在的安全、有效的老药新用,可抑制炎症和早期肺癌。在肺癌早期阶段使用该药物是一种很有前景的预防策略。
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来源期刊
Mitochondrion
Mitochondrion 生物-细胞生物学
CiteScore
9.40
自引率
4.50%
发文量
86
审稿时长
13.6 weeks
期刊介绍: Mitochondrion is a definitive, high profile, peer-reviewed international research journal. The scope of Mitochondrion is broad, reporting on basic science of mitochondria from all organisms and from basic research to pathology and clinical aspects of mitochondrial diseases. The journal welcomes original contributions from investigators working in diverse sub-disciplines such as evolution, biophysics, biochemistry, molecular and cell biology, genetics, pharmacology, toxicology, forensic science, programmed cell death, aging, cancer and clinical features of mitochondrial diseases.
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