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Prooxidative Activity of Celastrol Induces Apoptosis DNA Damage and Cell Cycle Arrest in Drug-Resistant Human Colon Cancer Cells

机译:Celastrol的前氧化活性诱导抗药性人结肠癌细胞凋亡DNA损伤和细胞周期阻滞。

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摘要

Cancer resistance to chemotherapy is closely related to tumor heterogeneity, i.e., the existence of distinct subpopulations of cancer cells in a tumor mass. An important role is assigned to cancer stem cells (CSCs), a small subset of cancer cells with high tumorigenic potential and capacity of self-renewal and differentiation. These properties of CSCs are sustained by the ability of those cells to maintain a low intracellular reactive oxygen species (ROS) levels, via upregulation of ROS scavenging systems. However, the accumulation of ROS over a critical threshold disturbs CSCs—redox homeostasis causing severe cytotoxic consequences. In the present study, we investigated the capacity of celastrol, a natural pentacyclic triterpenoid, to induce the formation of ROS and, consequently, cell death of the colon cancer cells with acquired resistant to cytotoxic drugs (LOVO/DX cell line). LOVO/DX cells express several important stem-like cell features, including a higher frequency of side population (SP) cells, higher expression of multidrug resistant proteins, overexpression of CSC-specific cell surface marker (CD44), increased expression of DNA repair gene (PARP1), and low intracellular ROS level. We found that celastrol, at higher concentrations (above 1 μM), significantly increased ROS amount in LOVO/DX cells at both cytoplasmic and mitochondrial levels. This prooxidant activity was associated with the induction of DNA double-strand breaks (DSBs) and apoptoticecrotic cell death, as well as with inhibition of cell proliferation by S phase cell cycle arrest. Coincubation with NAC, a ROS scavenger, completely reversed the above effects. In summary, our results provide evidence that celastrol exhibits effective cytotoxic effects via ROS-dependent mechanisms on drug-resistant colon cancer cells. These findings strongly suggest the potential of celastrol to effectively kill cancer stem-like cells, and thus, it is a promising agent to treat severe, resistant to conventional therapy, colon cancers.
机译:癌症对化学疗法的抗性与肿瘤异质性密切相关,即肿瘤块中癌细胞的不同亚群的存在。癌症干细胞(CSC)是具有高致癌潜力和自我更新和分化能力的一小部分癌细胞,具有重要作用。这些细胞通过上调ROS清除系统保持低细胞内活性氧(ROS)水平的能力来维持CSC的这些特性。但是,ROS超过临界阈值的积累会扰乱CSC——氧化还原稳态,从而导致严重的细胞毒性后果。在本研究中,我们研究了天然五环三萜类化合物Celastrol诱导ROS形成的能力,以及由此引起的对细胞毒性药物(LOVO / DX细胞系)具有耐药性的结肠癌细胞的细胞死亡。 LOVO / DX细胞表达几种重要的干样细胞特征,包括更高的侧群(SP)细胞频率,更高的耐多药蛋白表达,CSC特异性细胞表面标志物(CD44)过表达,DNA修复基因表达增加(PARP1)和较低的细胞内ROS水平。我们发现,在细胞质和线粒体水平上,较高浓度(高于1μM)的Celastrol均可显着增加LOVO / DX细胞中的ROS含量。这种抗氧化剂活性与DNA双链断裂(DSB)的诱导和凋亡/坏死细胞死亡有关,并与S期细胞周期停滞对细胞增殖的抑制有关。与NAC(一种ROS清除剂)共同孵育可完全逆转上述作用。总之,我们的结果提供了证据,表明Celastrol通过ROS依赖性机制对耐药性结肠癌细胞表现出有效的细胞毒性作用。这些发现强烈暗示了Celastrol有效杀死癌症干细胞样细胞的潜力,因此,它是治疗严重,对常规疗法有抵抗力的结肠癌的有前途的药物。

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