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Comprehensive foodomics study on the mechanisms operating at various molecular levels in cancer cells in response to individual rosemary polyphenols

机译:全面的食品组学研究癌细胞对各种迷迭香多酚的反应在不同分子水平上的作用机理

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摘要

In this work, the contribution of carnosic acid (CA) and carnosol (CS), two major compounds present in rosemary, against colon cancer HT-29 cells proliferation is investigated using a comprehensive Foodomics approach. The Foodomics study reveals that CA induces transcriptional activation of genes that encode detoxifying enzymes and altered the expression of genes linked to transport and biosynthesis of terpenoids in the colon cancer cell line. Functional analysis highlighted the activation of the ROS metabolism and alteration of several genes involved in pathways describing oxidative degradation of relevant endogenous metabolites, providing new evidence about the transcriptional change induced by CA in HT-29 cells. Metabolomics analysis showed that the treatment with CA affected the intracellular levels of glutathione. Elevated levels of GSH provided additional evidence to transcriptomic results regarding chemopreventive response of cells to CA treatment. Moreover, the Foodomics approach was useful to establish the links between decreased levels of N-acetylputrescine and its degradation pathway at the gene level. The findings from this work and the predictions based on microarray data will help explore novel metabolic processes and potential signaling pathways to further elucidate the effect of CA in colon cancer cells.
机译:在这项工作中,使用全面的食品组学方法研究了迷迭香中存在的两种主要化合物肌酸(CA)和肌醇(CS)对结肠癌HT-29细胞增殖的贡献。 Foodomics研究表明,CA诱导了编码解毒酶的基因的转录激活,并改变了与结肠癌细胞系中萜类的转运和生物合成有关的基因的表达。功能分析突出了ROS代谢的激活和参与描述相关内源性代谢物氧化降解的途径中涉及的几个基因的改变,为CA在HT-29细胞中诱导的转录变化提供了新的证据。代谢组学分析表明,CA处理影响了细胞内谷胱甘肽水平。谷胱甘肽水平的升高为有关细胞对CA治疗的化学预防反应的转录组结果提供了更多证据。此外,食品组学方法可用于在基因水平上建立降低的N-乙酰基酪氨酸水平与其降解途径之间的联系。这项工作的发现和基于微阵列数据的预测将有助于探索新的代谢过程和潜在的信号通路,以进一步阐明CA在结肠癌细胞中的作用。

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