首页> 美国卫生研究院文献>Oxidative Medicine and Cellular Longevity >Resveratrol Enhances Apoptotic and Oxidant Effects of Paclitaxel through TRPM2 Channel Activation in DBTRG Glioblastoma Cells
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Resveratrol Enhances Apoptotic and Oxidant Effects of Paclitaxel through TRPM2 Channel Activation in DBTRG Glioblastoma Cells

机译:白藜芦醇通过TRTR2通道激活DBTRG胶质母细胞瘤细胞增强紫杉醇的凋亡和氧化作用。

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摘要

Numerous studies have reported a strong association between increased production of reactive oxygen species (ROS) and the pathobiology of several diseases, and cancer in particular. Therefore, manipulation of cellular oxidative stress levels represents an important therapeutic target. Recently, resveratrol (RESV), a naturally occurring phytochemical, has been shown to sensitize several cell lines to the anticancer effects of other chemotherapeutic agents, including paclitaxel (PAX). However, the molecular mechanisms of action of RESV through oxidative sensitive TRPM2 channel activation remain unclear. The aim of this study was to evaluate the effect of combination therapy of RESV and PAX on activation of TRPM2 in DBTRG glioblastoma cells. DBTRG cells were divided into four treatment groups: control, RESV (50 μM), PAX (50 μM), and PAX + RESV for 24 hours. Our data shows that markers for apoptosis, mitochondrial membrane depolarization and mitochondrial function, intracellular steady-state ROS levels, caspase 3 activity, TRPM2 current density, and Ca2+ florescence intensity were significantly increased in DBTRG cells following treatment with PAX and RESV, respectively, although cell viability was also decreased by these treatments. These biochemical markers were further increased to favor the anticancer effects of PAX in DBTRG cells in combination with RESV. The PAX and RESV-mediated increase in current density and Ca2+ florescence intensity was decreased with a TRPM2 blocker. This suggests that for this combination therapy to have a substantial effect on apoptosis and cell viability, the TRPM2 channel must be stimulated.
机译:大量研究报告了活性氧(ROS)的产生增加与几种疾病(尤其是癌症)的病理生物学之间的密切联系。因此,对细胞氧化应激水平的控制代表了重要的治疗目标。近来,已显示白藜芦醇(RESV),一种天然存在的植物化学物质,使几种细胞系对包括紫杉醇(PAX)在内的其他化学治疗剂的抗癌作用敏感。然而,RESV通过氧化敏感性TRPM2通道激活的分子机制尚不清楚。这项研究的目的是评估RESV和PAX联合治疗对DBTRG胶质母细胞瘤细胞TRPM2活化的影响。将DBTRG细胞分为四个处理组:对照组,RESV(50μm),PAX(50μm)和PAX ++ RESV,持续24小时。我们的数据表明,在DBTRG细胞中,凋亡,线粒体膜去极化和线粒体功能,细胞内稳态ROS水平,caspase 3活性,TRPM2电流密度和Ca 2 + 荧光强度的标记物显着增加。分别用PAX和RESV进行治疗,尽管这些方法也降低了细胞活力。这些生化标志物进一步增加,以促进PAX与RESV结合使用对DBTRG细胞的抗癌作用。 TRPM2阻滞剂降低了PAX和RESV介导的电流密度增加和Ca 2 + 荧光强度。这表明,要使这种联合疗法对细胞凋亡和细胞活力产生实质性影响,必须刺激TRPM2通道。

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