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首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Bovine serum amine oxidase and spm potentiate docetaxel and interferon-alpha effects in inducing apoptosis on human cancer cells through the generation of oxidative stress.
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Bovine serum amine oxidase and spm potentiate docetaxel and interferon-alpha effects in inducing apoptosis on human cancer cells through the generation of oxidative stress.

机译:牛血清胺氧化酶和spm增强多西他赛和干扰素α通过产生氧化应激诱导人类癌细胞凋亡的作用。

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摘要

It was previously demonstrated that bovine serum amine-oxidase (BSAO) and SPM (SPM) addition to cancer cells induces cell growth inhibition and over-run the multi-drug resistance (MDR) phenotype through the oxidative stress caused by polyamine metabolites. In this study, it is reported that BSAO/SPM enzymatic system antagonizes the survival pathway induced by either docetaxel (DTX) or interferon alpha (IFNalpha) in human epidermoid cancer KB cells. The combination of BSAO/SPM with either DTX or IFNalpha had a synergistic effect on cell growth inhibition through apoptosis in both human epidermoid KB and breast cancer MCF-7 cell lines. The effects of the BSAO/SPM-DTX combination on apoptosis were caspase 3 and 9-dependent and were paralleled by the enhancement of intracellular O(2-), nitric oxide levels and of lipo-oxidation. The scavenger moiety N-acetyl-cysteine antagonized the effects on apoptosis and cell growth inhibition induced by the combination suggesting a role of the oxidative products of SPM. These effects occurred together with a decrease of the physiological scavenger MnSOD and an increase of both p38 kinase activity and DNA damage. The results suggest that DTX and IFNalpha could sensitize tumour cells to the oxidative stress and apoptosis induced by BSAO/SPM through the induction of a survival ras-dependent pathway and the consequent elevation of the intracellular polyamine pool. These data allow the design of new therapeutic strategy based on the use of this combination in human neoplasms.
机译:先前已证明,向癌细胞添加牛血清胺氧化酶(BSAO)和SPM(SPM)会诱导细胞生长抑制,并通过由多胺代谢物引起的氧化应激而使多药耐药性(MDR)表型超载。在这项研究中,据报道,BSAO / SPM酶系统拮抗多西他赛(DTX)或干扰素α(IFNalpha)在人表皮癌KB细胞中诱导的存活途径。 BSAO / SPM与DTX或IFNα的组合通过人表皮样KB和乳腺癌MCF-7细胞系的凋亡对细胞生长抑制具有协同作用。 BSAO / SPM-DTX组合对细胞凋亡的影响是caspase 3和9依赖性的,并且与细胞内O(2-),一氧化氮水平和脂质氧化的增强平行。清除剂部分N-乙酰基-半胱氨酸拮抗了由该组合诱导的对细胞凋亡和细胞生长抑制的影响,暗示了SPM的氧化产物的作用。这些影响与生理清除剂MnSOD的减少以及p38激酶活性和DNA损伤的增加一起发生。结果表明,DTX和IFNalpha可以通过诱导存活ras依赖性途径和随之而来的细胞内多胺池升高,使肿瘤细胞对BSAO / SPM诱导的氧化应激和细胞凋亡敏感。这些数据允许基于在人类肿瘤中使用该组合设计新的治疗策略。

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