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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Glutathione reductase mediates drug resistance in glioblastoma cells by regulating redox homeostasis
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Glutathione reductase mediates drug resistance in glioblastoma cells by regulating redox homeostasis

机译:谷胱甘肽还原酶通过调节氧化还原稳态瘤细胞中介导胶质母细胞瘤细胞的耐药性

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摘要

Abstract Glutathione ( GSH ) and GSH ‐related enzymes constitute the most important defense system that protects cells from free radical, radiotherapy, and chemotherapy attacks. In this study, we aim to explore the potential role and regulatory mechanism of the GSH redox cycle in drug resistance in glioblastoma multiforme ( GBM ) cells. We found that temozolomide ( TMZ )‐resistant glioma cells displayed lower levels of endogenous reactive oxygen species and higher levels of total antioxidant capacity and GSH than sensitive cells. Moreover, the expression of glutathione reductase ( GSR ), the key enzyme of the GSH redox cycle, was higher in TMZ ‐resistant cells than in sensitive cells. Furthermore, silencing GSR in drug‐resistant cells improved the sensitivity of cells to TMZ or cisplatin. Conversely, the over‐expression of GSR in sensitive cells resulted in resistance to chemotherapy. In addition, the GSR enzyme partially prevented the oxidative stress caused by pro‐oxidant L‐buthionine ‐sulfoximine. The modulation of redox state by GSH or L‐buthionine –sulfoximine regulated GSR ‐mediated drug resistance, suggesting that the action of GSR in drug resistance is associated with the modulation of redox homeostasis. Intriguingly, a trend toward shorter progress‐free survival was observed among GBM patients with high GSR expression. These results indicated that GSR is involved in mediating drug resistance and is a potential target for improving GBM treatment.
机译:摘要谷胱甘肽(GSH)和GSH -Reled酶构成最重要的防御系统,可保护细胞免受自由基,放射治疗和化疗攻击。在这项研究中,我们的目标是探讨GSH氧化还原循环在胶质母细胞瘤多形(GBM)细胞中耐药性的潜在作用和调节机制。我们发现替莫唑胺(TMZ)-Resistant胶质瘤细胞显示出较低水平的内源性反应性氧和较高水平的总抗氧化能力和GSH,而不是敏感细胞。此外,TMZ -Resistant细胞中谷胱甘肽还原酶(GSR),GSH氧化还原循环的关键酶的表达比在敏感细胞中较高。此外,耐药细胞中的GSR沉默改善了细胞对TMZ或顺铂的敏感性。相反,GSR在敏感细胞中的过表达导致耐化疗。此外,GSR酶部分地防止了由促氧化剂L-苯胺胺引起的氧化应激。通过GSH或L-丁基硫氨酸氧杂胺调节的GSR介质的耐药性调节氧化还原状态,表明GSR在耐药性中的作用与氧化还原稳态的调节有关。有趣的是,GBM患者高GSR表达的患者中观察到无与伦比的无进程存活的趋势。这些结果表明,GSR涉及介导耐药性,是改善GBM治疗的潜在靶标。

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