Active extracts of black tea (Camellia Sinensis) induce apoptosis of PC-3 prostate cancer cells via mitochondrial dysfunction

文献类型: 外文期刊

第一作者: Sun, Shili

作者: Sun, Shili;Pan, Shunshun;Miao, Aiqing;Ling, Caijin;Pang, Shi;Tang, Jinchi;Chen, Dong;Zhao, Chaoyi

作者机构:

关键词: Black tea;Cytochrome cytochrome c;Mitochondria;PC-3 cells;Theaflavins

期刊名称:ONCOLOGY REPORTS ( 影响因子:3.906; 五年影响因子:4.011 )

ISSN:

年卷期:

页码:

收录情况: SCI

摘要: Cancer of the prostate gland is the most common invasive malignancy and the second leading cause of cancer-related death in human males. Many studies have shown that black tea reduces the risk of several types of cancer. We studied the effects of active extracts of black tea and the black tea polyphenols theaflavins (TFs), on the cellular prolifera tion and mitochondria of the human prostate cancer cell line PC-3. Our studies revealed that Yinghong black tea extracts (YBT), Assam black tea extracts (ABT) and TFs inhibited cell proliferation in a dose-dependent manner. We also showed that TFs, YBT and ABT affected the morphology of PC-3 cells and induced apoptosis or even necrosis in PC-3 cells. In addition, it was observed that the samples signifi cantly caused loss of the mitochondrial membrane potential, release of cytochrome c from the intermembrane space into the cytosol, decrease of the ATP content and activation of caspase-3 compared with the control. Taken together, these findings suggest that black tea could act as an effective anti-proliferative agent in PC-3 cells, and TFs, YBT and ABT induced apoptosis of PC-3 cells through mitochondrial dysfunction.

分类号: R73

  • 相关文献

[1]Mechanism of Free Zn(2+) Enhancing Inhibitory Effects of EGCG on the Growth of PC-3 Cells: Interactions with Mitochondria. Shen, Shengrong,Yu, Haining,Sun, Shili,Das, Undurti N.. 2009

[2]Flavonoids, phenolic acids, alkaloids and theanine in different types of authentic Chinese white tea samples. Tan, Junfeng,Lin, Zhi,Tan, Junfeng,Engelhardt, Ulrich H.,Kaiser, Nils,Maiwald, Beate.

[3]Research progress on theaflavins: efficacy, formation, and preparation. He, Hua-Feng,He, Hua-Feng. 2017

[4]Effects of potassium and magnesium nutrition on the quality components of different types of tea. Ruan, JY,Wu, X,Hardter, R. 1999

[5]Prediction of black tea fermentation quality indices using NIRS and nonlinear tools. Dong, Chunwang,Zhao, Jiewen,Chen, Quansheng,Dong, Chunwang,Zhu, Hongkai,Wang, Jinjin,Yuan, Haibo. 2017

[6]Comprehensive Lipidome-Wide Profiling Reveals Dynamic Changes of Tea Lipids during Manufacturing Process of Black Tea. Li, Jia,Hua, Jinjie,Dong, Chunwang,Wang, Jinjin,Deng, Yuliang,Yuan, Haibo,Jiang, Yongwen,Zhou, Qinghua. 2017

[7]Determination of flavonol glycosides in green tea, oolong tea and black tea by UHPLC compared to HPLC. Jiang, Heyuan,Jiang, Heyuan,Engelhardt, Ulrich H.,Thraene, Claudia,Maiwald, Beate,Stark, Janina,Jiang, Heyuan.

[8]Study of the dynamic changes in the non-volatile chemical constituents of black tea during fermentation processing by a non-targeted metabolomics approach. Tan, Junfeng,Dai, Weidong,Lv, Haipeng,Guo, Li,Zhang, Yue,Zhu, Yin,Peng, Qunhua,Lin, Zhi,Lu, Meiling.

[9]Aroma changes of black tea prepared from methyl jasmonate treated tea plants. Shi, Jiang,Ma, Cheng-ying,Lv, Hai-peng,Chen, Zong-mao,Lin, Zhi,Shi, Jiang,Wang, Li. 2014

[10]Comparative characterisation of green tea and black tea cream: Physicochemical and phytochemical nature. Lin, Xiaorong,Chen, Zhongzheng,Zhang, Yuanyuan,Luo, Wei,Tang, Hao,Deng, Baibiao,Deng, Jian,Li, Bin,Tang, Hao.

[11]Free radical scavenging effect of Pu-erh tea extracts and their protective effect on oxidative damage in human fibroblast cells. Jie, Guoliang,Lin, Zhi,Zhang, Longze,Lv, Haipeng,He, Puming,Zhao, Baolu.

[12]Sulfide-based ATP production in Urechis unicinctus. Ma Zhuojun,Bao Zhenmin,Wang Sifeng,Zhang Zhifeng,Ma Zhuojun,Wang Sifeng. 2010

[13]Reduced mitochondrial and ascorbate-glutathione activity after artificial ageing in soybean seed. Xin, Xia,Tian, Qian,Yin, Guangkun,Chen, Xiaoling,Zhang, Jinmei,Lu, Xinxiong,Tian, Qian,Ng, Sophia,Ng, Sophia. 2014

[14]Systematic identification of mitochondrial lysine succinylome in silkworm (Bombyx mori) midgut during the larval gluttonous stage. Chen, Jine,Li, Fengbo,Liu, Yan,Shen, Weifeng,Du, Xin,He, Lihua,Meng, Zhiqi,Wang, Yongqiang,Ma, Xianliang. 2018

[15]Nitric oxide suppresses aluminum-induced programmed cell death in peanut (Arachis hypoganea L.) root tips by improving mitochondrial physiological properties. Huang, Wenjing,Oo, Thet Lwin,Gu, Minghua,Zhan, Jie,Wang, Aiqin,He, Long-Fei,He, Huyi,He, Long-Fei. 2018

[16]Transport of Calcium Ions into Mitochondria. Xu, Zhaolong,Zhang, Dayong,He, Xiaolan,Huang, Yihong,Shao, Hongbo,Shao, Hongbo. 2016

[17]The E-Subgroup Pentatricopeptide Repeat Protein Family in Arabidopsis thaliana and Confirmation of the Responsiveness PPR96 to Abiotic Stresses. Liu, Jia-Ming,Zhao, Juan-Ying,Guo, Chang-Hong,Liu, Jia-Ming,Zhao, Juan-Ying,Lu, Pan-Pan,Chen, Ming,Xu, Zhao-Shi,Ma, You-Zhi. 2016

[18]iTRAQ Mitoproteome Analysis Reveals Mechanisms of Programmed Cell Death in Arabidopsis thaliana Induced by Ochratoxin A. Xu, Wentao,Luo, Yunbo,Huang, Kunlun,Wang, Yan,Wang, Yan,Peng, Xiaoli,Yang, Zhuojun,Zhao, Weiwei,Xu, Wentao,Hao, Junran,Wu, Weihong,Shen, Xiao Li,Luo, Yunbo,Huang, Kunlun,Peng, Xiaoli,Shen, Xiao Li. 2017

[19]Protective effect of Momordica charantia water extract against liver injury in restraint-stressed mice and the underlying mechanism. Deng, Yuanyuan,Tang, Qin,Zhang, Yan,Zhang, Ruifen,Wei, Zhencheng,Tang, Xiaojun,Zhang, Mingwei. 2017

[20]Anemone rivularis inhibits pyruvate dehydrogenase kinase activity and tumor growth. Chung, Tae-Wook,Lee, Jung Hee,Choi, Hee-Jung,Park, Mi-Ju,Kim, Eun-Yeong,Han, Jung Ho,Ha, Ki-Tae,Chung, Tae-Wook,Lee, Jung Hee,Choi, Hee-Jung,Park, Mi-Ju,Kim, Eun-Yeong,Han, Jung Ho,Ha, Ki-Tae,Jang, Se Bok,Lee, Syng-Ook,Lee, Sang Woo,Hang, Jin,Yi, Li Wan.

作者其他论文 更多>>