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Network Analysis Shows Novel Molecular Mechanisms of Action for Copper-Based Chemotherapy

机译:网络分析显示铜基化学疗法的新型分子作用机理

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摘要

The understanding of the mechanisms associated with the action of chemotherapeutic agents is fundamental to assess and account for possible side-effects of such treatments. Casiopeínas have demonstrated a cytotoxic effect by activation of pro-apoptotic processes in malignant cells. Such processes have been proved to activate the apoptotic intrinsic route, as well as cell cycle arrest. Despite this knowledge, the whole mechanism of action of Casiopeínas is yet to be completely understood. In this work we implement a systems biology approach based on two pathway analysis tools (Over-Representation Analysis and Causal Network Analysis) to observe changes in some hallmarks of cancer, induced by this copper-based chemotherapeutic agent in HeLa cell lines. We find that the metabolism of metal ions is exacerbated, as well as cell division processes being globally diminished. We also show that cellular migration and proliferation events are decreased. Moreover, the molecular mechanisms of liver protection are increased in the cell cultures under the actions of Casiopeínas, unlike the case in many other cytotoxic drugs. We argue that this chemotherapeutic agent may be promising, given its protective hepatic function, concomitant with its cytotoxic participation in the onset of apoptotic processes in malignant cells.
机译:对与化学治疗剂作用相关的机制的理解对于评估和解释此类治疗的可能副作用至关重要。 Casiopeínas已通过激活恶性细胞中的促凋亡过程证明了细胞毒性作用。已证明此类过程可激活凋亡内在途径以及细胞周期阻滞。尽管有这些知识,但还没有完全了解Casiopeínas的整个作用机理。在这项工作中,我们基于两种途径分析工具(过度表达分析和因果网络分析)实施系统生物学方法,以观察由这种基于铜的化学治疗剂诱导的HeLa细胞系诱导的某些癌症标志的变化。我们发现金属离子的代谢加剧,并且细胞分裂过程在全球范围内减少。我们还表明,细胞迁移和增殖事件减少。此外,与许多其他细胞毒性药物的情况不同,在卡西欧彼那斯的作用下,细胞培养中肝脏保护的分子机制得到了增强。我们认为,鉴于其具有保护性的肝功能,并且伴随其细胞毒性参与恶性细胞凋亡过程的发生,这种化学治疗剂可能很有希望。

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