首页> 美国卫生研究院文献>Stem Cells International >Differential Regulation of Methylation-Regulating Enzymes by Senescent Stromal Cells Drives Colorectal Cancer Cell Response to DNA-Demethylating Epi-Drugs
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Differential Regulation of Methylation-Regulating Enzymes by Senescent Stromal Cells Drives Colorectal Cancer Cell Response to DNA-Demethylating Epi-Drugs

机译:衰老的基质细胞对甲基化调节酶的差异调节驱动大肠癌细胞对DNA脱甲基Epi药物的反应。

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摘要

The advanced-stage colon cancer spreads from primary tumor site to distant organs where the colon-unassociated stromal population provides a favorable niche for the growth of tumor cells. The heterocellular interactions between colon cancer cells and colon-unassociated fibroblasts at distant metastatic sites are important, yet these cell-cell interactions for therapeutic strategies for metastatic colon cancer remain underestimated. Recent studies have shown the therapeutic potential of DNA-demethylating epi-drugs 5-azacytidine (AZA) and 5-aza-2′-deoxycytidine (DAC) for the treatment of solid tumors. While the effects of these epi-drugs alone or in combination with other anticancer therapies are well described, the influence of stromal cells and their secretome on cancer cell response to these agents remain elusive. In this study, we determined the effect of normal and senescent colon-unassociated fibroblasts and their conditioned medium on colorectal cancer (CRC) cell response to AZA and DAC using a cell-based DNA demethylation reporter system. Our data show that fibroblasts accelerate cell proliferation and differentially regulate the expression of DNA methylation-regulating enzymes, enhancing DAC-induced demethylation in CRC cells. In contrast, the conditioned medium from senescent fibroblasts that upregulated NF-κB activity altered deoxycytidine kinase levels in drug-untreated CRC cells and abrogated DAC effect on degradation of DNA methyltransferase 1. Similar to 2D cultures, senescent fibroblasts increased DNA demethylation of CRC cells in coculture spheroids, in addition to increasing the stemness of CRC cells. This study presents the first evidence of the effect of normal and senescent stromal cells and their conditioned medium on DNA demethylation by DAC. The data show an increased activity of DAC in high stromal cell cocultures and suggest the potential of the tumor-stroma ratio in predicting the outcome of DNA-demethylating epigenetic cancer therapy.
机译:晚期结肠癌从原发肿瘤部位扩散到远处器官,在那里与结肠无关的基质种群为肿瘤细胞的生长提供了有利的环境。结肠癌细胞与远处转移部位的结肠不相关的成纤维细胞之间的异源细胞相互作用很重要,但是,这些用于转移性结肠癌治疗策略的细胞间相互作用仍然被低估了。最近的研究表明,DNA去甲基化的前药5-氮胞苷(AZA)和5-氮杂2'-脱氧胞苷(DAC)在治疗实体瘤方面具有治疗潜力。尽管对这些Epi药物单独或与其他抗癌疗法联合使用的效果进行了很好的描述,但基质细胞及其分泌组对癌细胞对这些药物反应的影响仍然难以捉摸。在这项研究中,我们使用基于细胞的DNA脱甲基报告系统,确定了正常和衰老的结肠未结合的成纤维细胞及其条件培养基对结直肠癌(CRC)细胞对AZA和DAC的反应。我们的数据表明,成纤维细胞可加速细胞增殖并差异调节DNA甲基化调节酶的表达,从而增强CRC诱导的DAC诱导的去甲基化。相反,来自衰老的成纤维细胞的条件培养基上调了NF-κB活性,改变了未经药物处理的CRC细胞中的脱氧胞苷激酶水平,并且废除了DAC对DNA甲基转移酶1降解的影响。与2D培养类似,衰老的成纤维细胞增加了CRC细胞的DNA去甲基化。共培养球体,除了增加CRC细胞的干性。这项研究提供了正常和衰老的基质细胞及其条件培养基对DAC DNA脱甲基作用的第一个证据。数据显示在高基质细胞共培养物中DAC的活性增加,并暗示了肿瘤-基质比率在预测DNA脱甲基表观遗传学癌症治疗结果中的潜力。

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