Knockdown of ARL5B Induces Mitochondrial-mediated Apoptosis and Inhibits Glycolysis in Breast Cancer Cells by Activating MDA5 Signaling (English)
- New search for: Zhang, Lei
- New search for: Hu, Xuqiao
- New search for: Wu, Huaiyu
- New search for: Tian, Hongtian
- New search for: Zeng, Jieying
- New search for: Song, Di
- New search for: Yang, Keen
- New search for: Chen, Jing
- New search for: Xu, Jinfeng
- New search for: Dong, Fajin
- New search for: Zhang, Lei
- New search for: Hu, Xuqiao
- New search for: Wu, Huaiyu
- New search for: Tian, Hongtian
- New search for: Zeng, Jieying
- New search for: Song, Di
- New search for: Yang, Keen
- New search for: Chen, Jing
- New search for: Xu, Jinfeng
- New search for: Dong, Fajin
In:
Current Cancer Drug Targets
;
22
, 10
;
843-853
;
2022
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ISSN:
- Article (Journal) / Electronic Resource
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Title:Knockdown of ARL5B Induces Mitochondrial-mediated Apoptosis and Inhibits Glycolysis in Breast Cancer Cells by Activating MDA5 Signaling
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Additional title:CCDT
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Contributors:Zhang, Lei ( author ) / Hu, Xuqiao ( author ) / Wu, Huaiyu ( author ) / Tian, Hongtian ( author ) / Zeng, Jieying ( author ) / Song, Di ( author ) / Yang, Keen ( author ) / Chen, Jing ( author ) / Xu, Jinfeng ( author ) / Dong, Fajin ( author )
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Published in:Current Cancer Drug Targets ; 22, 10 ; 843-853
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Publisher:
- New search for: Bentham Science Publishers Ltd.
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Publication date:2022-11-01
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Size:11 pages
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ISSN:
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DOI:
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Type of media:Article (Journal)
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Type of material:Electronic Resource
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Language:English
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Keywords:
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Source:
Table of contents – Volume 22, Issue 10
The tables of contents are generated automatically and are based on the data records of the individual contributions available in the index of the TIB portal. The display of the Tables of Contents may therefore be incomplete.
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- 843
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Knockdown of ARL5B Induces Mitochondrial-mediated Apoptosis and Inhibits Glycolysis in Breast Cancer Cells by Activating MDA5 SignalingZhang, Lei / Hu, Xuqiao / Wu, Huaiyu / Tian, Hongtian / Zeng, Jieying / Song, Di / Yang, Keen / Chen, Jing / Xu, Jinfeng / Dong, Fajin et al. | 2022
- 854
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