食品科学 ›› 2022, Vol. 43 ›› Issue (3): 129-136.doi: 10.7506/spkx1002-6630-20210308-094

• 营养卫生 • 上一篇    下一篇

香叶醇联合冬凌草甲素对MCF-7细胞协同抗癌作用及其机理

刘晓鸣,张媛媛,林晓蓉,高雄,周伟坚,李斌,陈忠正   

  1. (1.华南农业大学食品学院,广东 广州 510642;2.广东省科学院微生物研究所,广东 广州 510070;3.广东省功能食品活性物重点实验室,广东 广州 510642)
  • 出版日期:2022-02-15 发布日期:2022-03-08
  • 基金资助:
    国家农业农村部:现代农业产业技术体系(CARS-19)

Synergistic Anticancer Effect and Mechanism of Geraniol Combined with Oridonin on MCF-7 Cells

LIU Xiaoming, ZHANG Yuanyuan, LIN Xiaorong, GAO Xiong, ZHOU Weijian, LI Bin, CHEN Zhongzheng   

  1. (1. College of Food Science, South China Agricultural University, Guangzhou 510642, China; 2. Institute of Microbiology, Guangdong Academy of Sciences, Guangzhou 510070, China;3. Guangdong Provincial Key Laboratory of Nutraceuticals and Functional Foods, Guangzhou 510642, China)
  • Online:2022-02-15 Published:2022-03-08

摘要: 目的:探讨香叶醇(geraniol,GOH)联合冬凌草甲素(oridonin,ORI)对人乳腺癌MCF-7细胞活力、细胞凋亡、细胞内活性氧(reactive oxygen species,ROS)含量、线粒体膜电位及细胞周期的影响。方法:细胞分为对照组、GOH组(102.81 μg/mL)、ORI组(4.32 μg/mL)和GOH(102.81 μg/mL)+ORI(4.32 μg/mL)组,噻唑蓝法检测GOH、ORI单独及联合使用对MCF-7细胞增殖抑制率的影响;Chou-Talalay中效分析法评价两组分的联合效应;流式细胞术检测ROS水平、线粒体膜电位变化、细胞凋亡率以及细胞周期;Western blot测定细胞色素c的含量变化,分光光度法测定Caspase-9、Caspase-3活化程度。结果:GOH和ORI单独使用均能显著抑制MCF-7细胞生长,联用作用更强,且所有联合作用指数均小于1;GOH联合ORI能显著提高癌细胞中ROS水平至对照的27.03 倍,降低线粒体膜电位,将细胞周期阻滞在S期,促进细胞色素c的释放,并使其表达量达到对照组的3.01 倍,活化Caspase-9并激活下游Caspase-3,诱导MCF-7细胞凋亡。结论:GOH和ORI联用可显著促进MCF-7细胞凋亡,其机制为主要通过提高细胞内ROS水平进而引发线粒体功能紊乱,促进细胞色素c的释放并激活相关凋亡蛋白,诱导细胞经由线粒体途径凋亡。

关键词: 香叶醇;冬凌草甲素;协同作用;细胞凋亡;细胞周期

Abstract: Objective: To investigate the effects of geraniol (GOH) combined with oridonin (ORI) on the viability, apoptosis, intracellular reactive oxygen species (ROS) level, mitochondrial membrane potential and cell cycle in human breast cancer MCF-7 cells. Methods: The cells were divided into a control group, a GOH group (102.81 μg/mL), an ORI group (4.32 μg/mL) and a GOH (102.81 μg/mL) + ORI (4.32 μg/mL) group. The methylthiazolyldiphenyl-tetrazolium bromide (MTT) method was used to detect the effects of GOH and ORI on the survival rate of MCF-7 cells. Chou-Talalay median effect analysis was adopted to evaluate the synergy of GOH combined with ORI. ROS levels, mitochondrial membrane potential change, apoptotic rate and cell cycle were measured by flow cytometry, the expression level of cytochrome c, an apoptosis-related protein, was evaluated by Western blot, and the activation of caspase-9 and caspase-3 was determined by spectrophotometry. Results: GOH and ORI alone could significantly inhibit the growth of MCF-7 cells, while their combination was more effective, giving combination index less than 1. The combination treatment increased the ROS level in cancer cells by 27.03 folds compared with the control group, reduced the mitochondrial membrane potential, blocked the cell cycle in the S phase, increased the release of cytochrome c by 3.01 folds compared with the control group, activated caspase-9 and downstream caspase-3, and induced the apoptosis of MCF-7 cells. Conclusion: The combination of GOH and ORI can significantly promote the apoptosis of MCF-7 cells mainly through increasing the ROS level in the cells to trigger mitochondrial dysfunction, release cytochrome c and activate apoptosis-related proteins, and thereby induce the apoptosis of MCF-7 cells via the mitochondrial pathway.

Key words: geraniol; oridonin; synergistic effect; apoptosis; cell cycle

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