All Relations between apoptosis and emp2

Publication Sentence Publish Date Extraction Date Species
Chien-Feng Li, Ti-Chun Chan, Cheng-Tang Pan, Pichpisith Pierre Vejvisithsakul, Jia-Chen Lai, Szu-Yu Chen, Ya-Wen Hsu, Meng-Shin Shiao, Yow-Ling Shiu. Correction to: EMP2 induces cytostasis and apoptosis via the TGFβ/SMAD/SP1 axis and recruitment of P2RX7 in urinary bladder urothelial carcinoma. Cellular oncology (Dordrecht, Netherlands). 2024-09-03. PMID:39225904. correction to: emp2 induces cytostasis and apoptosis via the tgfβ/smad/sp1 axis and recruitment of p2rx7 in urinary bladder urothelial carcinoma. 2024-09-03 2024-09-05 Not clear
Shuangning Du, Yangguang Wang, Wenyang Tao, Shengmin L. Differential effects of enzymatically modified Ougan (Citrus Suavissima Hort. ex Tanaka) peel pectins extracted with different methods on inhibiting the proliferation of Hela cells. International journal of biological macromolecules. 2024-08-05. PMID:39102920. meanwhile, emp2 was more efficient than emp1 in blocking the cell cycle in s phase, resulting in apoptosis. 2024-08-05 2024-08-08 Not clear
Chien-Feng Li, Ti-Chun Chan, Cheng-Tang Pan, Pichpisith Pierre Vejvisithsakul, Jia-Chen Lai, Szu-Yu Chen, Ya-Wen Hsu, Meng-Shin Shiao, Yow-Ling Shiu. EMP2 induces cytostasis and apoptosis via the TGFβ/SMAD/SP1 axis and recruitment of P2RX7 in urinary bladder urothelial carcinoma. Cellular oncology (Dordrecht). vol 44. issue 5. 2021-10-15. PMID:34339014. emp2 induces cytostasis and apoptosis via the tgfβ/smad/sp1 axis and recruitment of p2rx7 in urinary bladder urothelial carcinoma. 2021-10-15 2023-08-13 Not clear
Chien-Feng Li, Ti-Chun Chan, Cheng-Tang Pan, Pichpisith Pierre Vejvisithsakul, Jia-Chen Lai, Szu-Yu Chen, Ya-Wen Hsu, Meng-Shin Shiao, Yow-Ling Shiu. EMP2 induces cytostasis and apoptosis via the TGFβ/SMAD/SP1 axis and recruitment of P2RX7 in urinary bladder urothelial carcinoma. Cellular oncology (Dordrecht). vol 44. issue 5. 2021-10-15. PMID:34339014. the objective of this study was to identify signaling pathways downstream of epithelial membrane protein 2 (emp2), which induces cytostasis and apoptosis in ubuc. 2021-10-15 2023-08-13 Not clear
Manyi Wang, Sijia Li, Peng Zhang, Yujia Wang, Chunting Wang, Ding Bai, Xian Jian. EMP2 acts as a suppressor of melanoma and is negatively regulated by mTOR-mediated autophagy. Journal of Cancer. vol 10. issue 16. 2020-10-01. PMID:31333775. in the current study, we demonstrated the tumor suppressing role of epithelial membrane protein-2 (emp2) by inducing apoptosis in a a375 human melanoma cell line. 2020-10-01 2023-08-13 human
Q Zhang, X Fan, B Xu, Q Pang, L Ten. miR-133b acts as a tumor suppressor and negatively regulates EMP2 in glioma. Neoplasma. vol 65. issue 4. 2019-07-01. PMID:29940748. further, mir-133b can be considered a tumor suppressor because of its low expression and effects on cell apoptosis via down-regulating emp2 expression and activating the apoptotic cell pathway in glioma. 2019-07-01 2023-08-13 Not clear
Q Zhang, X Fan, B Xu, Q Pang, L Ten. miR-133b acts as a tumor suppressor and negatively regulates EMP2 in glioma. Neoplasma. vol 65. issue 4. 2019-07-01. PMID:29940748. the binding effect of mir-133b on epithelial membrane protein-2 (emp2) was verified and we then investigated the effect of emp2 on in vitro glioma cells and tested the expression of apoptosis related factors after administration of altered mir-133b and emp2 expressions. 2019-07-01 2023-08-13 Not clear
Q Zhang, X Fan, B Xu, Q Pang, L Ten. miR-133b acts as a tumor suppressor and negatively regulates EMP2 in glioma. Neoplasma. vol 65. issue 4. 2019-07-01. PMID:29940748. emp2 normally promotes cell apoptosis and reduces cell viability and survival while mir-133b over-expression regulates the expression of apoptotic-associated protein and activates the apoptotic pathway, thus counteracting emp2 regulation of opposite expression effects. 2019-07-01 2023-08-13 Not clear
Mei Tang, Ru-Yan Liu, Cong Zhou, Meng-Zhen Yuan, Dong-Ming Wu, Zhu Yuan, Peng Zhang, Jin-Yi Lan. EMP2 re-expression inhibits growth and enhances radiosensitivity in nasopharyngeal carcinoma. Tumour biology : the journal of the International Society for Oncodevelopmental Biology and Medicine. vol 39. issue 3. 2017-04-07. PMID:28347228. emp2 re-expression suppresses cell growth, induces s-phase cell cycle arrest, and promotes radiosensitivity and apoptosis in nasopharyngeal carcinoma cells. 2017-04-07 2023-08-13 Not clear