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Differential induction of apoptosis in human breast cancer cell lines by phenethyl isothiocyanate, a glutathione depleting agent

机译:谷胱甘肽耗竭剂异硫氰酸苯乙酯差异诱导人乳腺癌细胞凋亡

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Phenethyl isothiocyanate (PEITC) is a naturally occurring electrophile which depletes intracellular glutathione (GSH) levels and triggers accumulation of reactive oxygen species (ROS). PEITC is of considerable interest as a potential chemopreventive/chemotherapeutic agent, and in this work, we have investigated the effects of PEITC on human breast cancer cell lines. Whereas PEITC readily induced apoptosis in MDA-MB-231 cells (associated with rapid activation of caspases 9 and 3, and decreased expression of BAX), MCF7 cells were relatively resistant to the apoptosis promoting effects of PEITC. The relative resistance of MCF7 cells was associated with high basal expression of NRF2, a transcription factor that coordinates cellular protective responses to oxidants and electrophiles and raised intracellular levels of GSH. This raised basal expression of NRF2 appeared to be a response to on-going production of ROS, since treatment with the antioxidant and GSH precursor N-acetylcysteine (NAC) reduced NRF2 expression. Moreover, pre-treatment of MDA-MB-231 cells with NAC rendered these cells relatively resistant to PEITC-induced apoptosis. In summary, our data confirm that PEITC may be an effective chemopreventive/therapeutic agents for breast cancer. However, differences in the basal expression of NRF2 and resultant changes in GSH levels may be an important determinant of sensitivity to PEITC-induced apoptosis.
机译:异硫氰酸苯乙基酯(PEITC)是一种天然存在的亲电试剂,可耗尽细胞内谷胱甘肽(GSH)的水平并触发活性氧(ROS)的积累。 PEITC作为潜在的化学预防剂/化学治疗剂引起了极大的兴趣,在这项工作中,我们研究了PEITC对人乳腺癌细胞系的影响。 PEITC容易诱导MDA-MB-231细胞凋亡(与胱冬酶9和3的快速活化有关,BAX表达降低),而MCF7细胞对PEITC的促凋亡作用相对抗性。 MCF7细胞的相对抗性与NRF2的高基础表达有关,NRF2是一种转录因子,可协调细胞对氧化剂和亲电试剂的保护反应,并提高细胞内GSH的水平。 NRF2的这种基础表达的升高似乎是对持续产生的ROS的反应,因为用抗氧化剂和GSH前体N-乙酰半胱氨酸(NAC)处理会降低NRF2的表达。此外,用NAC预处理MDA-MB-231细胞使这些细胞对PEITC诱导的凋亡具有相对抗性。总之,我们的数据证实PEITC可能是一种有效的乳腺癌化学预防/治疗药物。但是,NRF2的基础表达的差异以及由此导致的GSH水平变化可能是对PEITC诱导的细胞凋亡敏感性的重要决定因素。

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