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The molecular mechanisms of chemoresistance in cancers

机译:癌症化学抗性的分子机制

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摘要

Overcoming intrinsic and acquired drug resistance is a major challenge in treating cancer patients because chemoresistance causes recurrence, cancer dissemination and death. This review summarizes numerous molecular aspects of multi-resistance, including transporter pumps, oncogenes (EGFR, PI3K/Akt, Erk and NF-κB), tumor suppressor gene (p53), mitochondrial alteration, DNA repair, autophagy, epithelial-mesenchymal transition (EMT), cancer stemness, and exosome. The chemoresistance-related proteins are localized to extracellular ligand, membrane receptor, cytosolic signal messenger, and nuclear transcription factors for various events, including proliferation, apoptosis, EMT, autophagy and exosome. Their cross-talk frequently appears, such as the regulatory effects of EGFR-Akt-NF-κB signal pathway on the transcription of Bcl-2, Bcl-xL and survivin or EMT-related stemness. It is essential for the realization of the target, individualized and combine therapy to clarify these molecular mechanisms, explore the therapy target, screen chemosensitive population, and determine the efficacy of chemoreagents by cell culture and orthotopic model.
机译:克服内在和获得性耐药是治疗癌症患者的主要挑战,因为化学耐药性会导致复发,癌症扩散和死亡。这篇综述总结了多重抗性的许多分子方面,包括转运蛋白泵,致癌基因(EGFR,PI3K / Akt,Erk和NF-κB),抑癌基因(p53),线粒体改变,DNA修复,自噬,上皮-间质转化( EMT),癌症干和外来体。与化学抗性相关的蛋白质位于细胞外配体,膜受体,胞质信号信使和核转录因子上,用于各种事件,包括增殖,凋亡,EMT,自噬和外来体。它们的串扰经常出现,例如EGFR-Akt-NF-κB信号通路对Bcl-2,Bcl-xL和survivin或EMT相关干细胞的转录的调节作用。对于实现靶标,个体化和联合治疗至关重要,以阐明这些分子机制,探索治疗靶标,筛选化学敏感性种群,并通过细胞培养和原位模型确定化学试剂的功效。

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