首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Caffeic Acid Enhances the Anti-Leukemic Effect of Imatinib on Chronic Myeloid Leukemia Cells and Triggers Apoptosis in Cells Sensitive and Resistant to Imatinib
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Caffeic Acid Enhances the Anti-Leukemic Effect of Imatinib on Chronic Myeloid Leukemia Cells and Triggers Apoptosis in Cells Sensitive and Resistant to Imatinib

机译:咖啡酸提高伊马替尼对慢性骨髓白血病细胞的抗白血病效应并触发敏感和抗伊马替尼的细胞细胞凋亡

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摘要

Among the phenolic acids tested on the K562 cell line, a model of chronic myeloid leukemia (CML), caffeic acid (CA) was biologically active on sensitive and imatinib (IM)-resistant cells at micro-molar concentration, either in terms of reduction of cell proliferation or triggering of apoptosis. The CA treatment provoked mitochondrial membrane depolarization, genomic DNA fragmentation and phosphatidylserine exposure, hallmarks of apoptosis. Cell cycle analysis following the treatment with comparable cytotoxic concentrations of IM or CA showed marked differences in the distribution profiles. The reduction of cell proliferation by CA administration was associated with increased expression of two cell cycle repressor genes, CDKN1A and CHES1, while IM at a cytotoxic concentration increased the CHES1 but not the CDKN1A expression. In addition, CA treatment affected the proliferation and triggered the apoptosis in IM-resistant cells. Taken together, these data suggested that CA induced the anti-proliferative effect and triggered apoptosis of CML cells by a different mechanism than IM. Finally, the combined administration of IM and CA at suboptimal concentrations evidenced a synergy of action in determining the anti-proliferative effect and triggering apoptosis. The ability of CA to potentiate the anti-leukemic effect of IM highlighted the nutraceutical potential of CA in CML.
机译:在K562细胞系上测试的酚酸中,慢性骨髓白血病(CML),咖啡酸(CA)在微摩尔浓度下在敏感和伊马替尼(IM)的细胞上是生物活性的模型,无论是在还原细胞增殖或细胞凋亡的触发。 Ca治疗引发了线粒体膜去极化,基因组DNA碎裂和磷脂酰丝氨酸暴露,凋亡标志。在具有相当细胞毒性浓度的IM或Ca的处理后细胞周期分析显示出分布型材的显着差异。 Ca授权的细胞增殖的减少与两种细胞周期抑制基因,CDKN1A和CHES1的表达增加有关,而IM以细胞毒性浓度增加CHES1但不是CDKN1A表达。此外,Ca治疗影响了增殖并引发了抗抗细胞中的细胞凋亡。总之,这些数据表明CA诱导抗增殖效果并通过不同的机制引发CML细胞的凋亡。最后,在次优浓度下的IM和Ca的组合施用证明了在确定抗增殖效应和触发凋亡时的作用协同作用。 CA对IM的抗白血病效果的能力突出了CML中Ca的营养潜力。

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