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Antitumour activity of resveratrol on human melanoma cells: A possible mechanism related to its interaction with malignant cell telomerase

机译:白藜芦醇对人黑素瘤细胞的抗肿瘤活性:与其与恶性细胞端粒酶相互作用有关的可能机制

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Background: trans-Resveratrol (tRES) is a polyphenolic stilbene found in plant products which has attracted great attention because of its antioxidant, anti-inflammatory and anticancer properties. Methods: The possible correlation between tRES-induced suppression of melanoma cell growth and its influence on telomerase expression has been investigated by biological assays. Moreover, in order to gain new knowledge about possible mechanisms of action of tRES as antineoplastic agent, its interaction with biologically relevant secondary structure-forming DNA sequences, its aggregation properties and copper-binding activity have been studied by CD, UV and fluorescence spectroscopies. Results: Biological assays have confirmed that growth inhibitory properties of tRES well correlate with the reduction of telomerase activity and hTERT gene transcript levels in human melanoma cells. Biophysical studies in solution have proved that tRES binds all the studied DNA model systems with low affinity, however showing high ability to discriminate G-quadruplex vs. duplex DNA. In addition, tRES has shown no propensity to form aggregates in the explored concentration range and has been found able to bind Cu2+ ions with a 2:1 stoichiometry. Conclusions: From these biological and biophysical analyses it has emerged that tRES produces cytotoxic effects on human melanoma cells and, at a molecular level, is able to bind Cu2+ and cancer-involved G-quadruplexes, suggesting that multiple mechanisms of action could be involved in its antineoplastic activity. General significance: Expanding the knowledge on the putative mechanisms of action of tRES as antitumour agent can help to develop novel, effective tRES-based anticancer drugs.
机译:背景:Trans-Derveratrol(TRES)是一种在植物产品中发现的多酚甾醇,这是由于其抗氧化剂,抗炎和抗癌性能而引起了极大的关注。方法:通过生物测定研究了TRES诱导的黑素瘤细胞生长的抑制与其对端粒酶表达的影响。此外,为了获得关于TRES作为抗肿瘤剂的可能作用机制的新知识,通过CD,UV和荧光光谱研究其与生物相关的二级结构形成DNA序列的相互作用,其聚集性能和铜结合活性。结果:生物测定证实,TRES的生长抑制性能与人黑素瘤细胞中的端粒酶活性和HTERT基因转录物水平相关。证明,TRES的生物物理研究证明,TRES结合具有低亲和力的所有研究的DNA模型系统,然而显示出高能力区分G-Quadreplex与双链DNA。此外,TRES已经显示出在探测浓度范围内形成聚集体的倾向,并且已经发现能够将Cu 2 +离子与2:1的化学计量结合。结论:从这些生物和生物物理学分析中,它出现了TRES产生对人黑素瘤细胞的细胞毒性作用,并且在分子水平,能够结合CU2 +和癌症的G-Quadruplees,这表明可以参与多种行动机制其抗肿瘤活性。一般意义:扩大关于TRES的推定作用机制,因为抗胃病剂可以有助于开发新颖的有效TRES抗癌药物。

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