α-Tocopheryl succinate alters cell cycle distribution sensitising human osteosarcoma cells to methotrexate-induced apoptosis

2006 ◽  
Vol 232 (2) ◽  
pp. 226-235 ◽  
Author(s):  
Renata Alleva ◽  
Maria Serena Benassi ◽  
Laura Pazzaglia ◽  
Marco Tomasetti ◽  
Nina Gellert ◽  
...  
Author(s):  
Shubin Wang ◽  
Zongguang Li ◽  
Wei Liu ◽  
Guojun Wei ◽  
Naichun Yu ◽  
...  

Neohesperidin has anti-oxidative and anti-inflammatory properties and exerts extensive therapeutic effects on various cancers. In this study, the osteosarcoma cell lines were exposed to different concentrations of neohesperidin. Cell proliferation and viability were assessed by CCK-8 and colony-formation assays. The role of neohesperidin in cell cycle progression and apoptosis were analyzed by flow cytometry and western blotting. To identify autophagosomes and autolysosomes, we used a tandem GFP-mRFP-LC3B lentiviral construct. In addition, autophagy was evaluated by examining autophagosome formation using transmission electron microscopy. Intracellular reactive oxygen species (ROS) production was detected by fluorescence microscopy and flow cytometry. Subsequently, the activation of the ROS/JNK signaling pathway was investigated. Neohesperidin could inhibit proliferation and induce apoptosis in SJSA and HOS cells. The formation of autophagosomes indicated that autophagy occurred in neohesperidin-treated cells and the apoptotic effect of neohesperidin was significantly increased after the use of autophagy inhibitors. Subsequently, we found that neohesperidin-induced apoptosis and autophagy were related to the increase in ROS generation and were significantly inhibited by GSH. Moreover, neohesperidin induced activation of the c-Jun N-terminal kinase (JNK) signaling pathway and inhibition of JNK with SP600125 attenuated neohesperidin-induced apoptosis and autophagy simultaneously. Our data indicated that neohesperidin caused G2/M phase arrest and induced apoptosis and autophagy by activating the ROS/JNK pathway in human osteosarcoma cells, suggesting that neohesperidin is a potential drug candidate for the treatment of osteosarcomas.


RSC Advances ◽  
2016 ◽  
Vol 6 (58) ◽  
pp. 53089-53100 ◽  
Author(s):  
Ting Ma ◽  
Wen-Na Zhang ◽  
Lei Yang ◽  
Chao Zhang ◽  
Ru Lin ◽  
...  

Physagulide I induced apoptosis and cell cycle arrest via ROS generation and the activation of MAPK in human osteosarcoma cells.


2015 ◽  
Vol 40 (2) ◽  
pp. 85-91 ◽  
Author(s):  
Sung-Jin Park ◽  
◽  
Su-Bin Yu ◽  
Yong-Ho Kim ◽  
In-Ryoung Kim ◽  
...  

2020 ◽  
Vol Volume 13 ◽  
pp. 8223-8232 ◽  
Author(s):  
Dong-Dong Duan ◽  
Hui Xie ◽  
Hua-Feng Shi ◽  
Wen-Wen Huang ◽  
Fan Ding ◽  
...  

2008 ◽  
Vol 19 (7) ◽  
pp. 2870-2875 ◽  
Author(s):  
Hanhui Ma ◽  
Thoru Pederson

Nucleostemin (NS) is expressed in the nucleoli of adult and embryonic stem cells and in many tumors and tumor-derived cell lines. In coimmunoprecipitation experiments, nucleostemin is recovered with the tumor suppressor p53, and more recently we have demonstrated that nucleostemin exerts its role in cell cycle progression via a p53-dependent pathway. Here, we report that in human osteosarcoma cells, nucleostemin interacts with nucleophosmin, a nucleolar protein believed to possess oncogenic potential. Nucleostemin (NS) and nucleophosmin (NPM) displayed an extremely high degree of colocalization in the granular component of the nucleolus during interphase, and both proteins associated with prenucleolar bodies in late mitosis before the reformation of nucleoli. Coimmunoprecipitation experiments revealed that NS and NPM co-reside in complexes, and yeast two-hybrid experiments confirmed that they are interactive proteins, revealing the NPM-interactive region to be the 46-amino acid N-terminal domain of NS. In bimolecular fluorescence complementation studies, bright nucleolar signals were observed, indicating that these two proteins directly interact in the nucleolus in vivo. These results support the notion that cell cycle regulatory proteins congress and interact in the nucleolus, adding to the emerging concept that this nuclear domain has functions beyond ribosome production.


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