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Sulforaphane-cysteine induces apoptosis by sustained activation of ERK1/2 and caspase 3 in human glioblastoma U373MG and U87MG cells
被引:23
作者:
Wu, Sai
[1
]
Zhou, Yan
[1
]
Yang, Gaoxiang
[1
]
Tian, Hua
[1
]
Geng, Yang
[1
]
Hu, Yabin
[1
]
Lin, Kai
[1
]
Wu, Wei
[1
,2
]
机构:
[1] Capital Med Univ, Sch Basic Med Sci, Dept Biochem & Mol Biol, 10 Xitoutiao,You An Men Wai Ave, Beijing 100069, Peoples R China
[2] Capital Med Univ, Beijing Inst Brain Disorders, Inst Brain Tumor, Beijing, Peoples R China
基金:
中国国家自然科学基金;
关键词:
sulforaphane-cysteine;
ERK1/2;
cleaved caspase 3;
apoptosis;
glioblastoma;
PANCREATIC-CANCER CELLS;
HUMAN GLIOMA-CELLS;
INHIBITS INVASION;
MOLECULAR-MECHANISMS;
BCL-2;
FAMILY;
CYCLE ARREST;
DEATH;
GROWTH;
MITOCHONDRIAL;
TEMOZOLOMIDE;
D O I:
10.3892/or.2017.5562
中图分类号:
R73 [肿瘤学];
学科分类号:
100214 ;
摘要:
We previously demonstrated that sulforaphane (SFN) inhibited invasion via sustained activation of ERK1/2 in human glioblastoma cells. However, sulforaphane-cysteine (SFN-Cys), an analog of SFN, enriched in plasma with longer half-life, had more potentiality to induce apoptosis. Here we investigated the molecular mechanisms of SFN-Cys-induced apoptosis in human glioblastoma U373MG and U87MG cells. Cell viability assay showed that SFN-Cys inhibited cell viability in a dose-dependent manner. Cell morphology observation also showed SFN-Cys increased the phenotype of cell death in a dose-dependent manner. Furthermore, flow cytometry assay showed that SFN-Cys induced apoptosis significantly in a dose-dependent manner in both cell lines. Furthermore, western blot analysis demonstrated that SFN-Cys induced activation of ERK1/2 in a sustained manner and the activation contributed to upregulation of Bax/Bcl-2 ratio and cleaved caspase 3, and these results can be reversed by the ERK1/2 blocker PD98059. Our results showed that SFN-Cys induced cell apoptosis via sustained activation of ERK1/2 and the ERK1/2 mediated signaling pathways such as activation of caspase 3 and apoptosis-related proteins, thus indicating that SFN-Cys might be a more promising therapeutic agent versus SFN to resist glioblastoma cells, especially in Taxol-resistant cancer cells.
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页码:2829 / 2838
页数:10
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