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BCL2L2 is a probable target for novel 14q11.2 amplification detected in a non-small cell lung cancer cell line. [electronic resource] by
- Kawasaki, Tsutomu
- Yokoi, Sana
- Tsuda, Hitoshi
- Izumi, Hiroyuki
- Kozaki, Ken-Ichi
- Aida, Shinsuke
- Ozeki, Yuichi
- Yoshizawa, Yasuyuki
- Imoto, Issei
- Inazawa, Johji
Producer: 20070921
In:
Cancer science vol. 98
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1823.
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1824.
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1825.
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1827.
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Plasminogen K5 activates mitochondrial apoptosis pathway in endothelial cells by regulating Bak and Bcl-x(L) subcellular distribution. [electronic resource] by
- Gu, Xiaoqiong
- Yao, Yachao
- Cheng, Rui
- Zhang, Yang
- Dai, Zhiyu
- Wan, Genping
- Yang, Zhonghan
- Cai, Weibin
- Gao, Guoquan
- Yang, Xia
Producer: 20111111
In:
Apoptosis : an international journal on programmed cell death vol. 16
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1828.
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1830.
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1831.
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1832.
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Doxorubicin induces ZAKα overexpression with a subsequent enhancement of apoptosis and attenuation of survivability in human osteosarcoma cells. [electronic resource] by
- Fu, Chien-Yao
- Tseng, Yan-Shen
- Chen, Ming-Cheng
- Hsu, Hsi-Hsien
- Yang, Jaw-Ji
- Tu, Chuan-Chou
- Lin, Yueh-Min
- Viswanadha, Vijaya Padma
- Kuo, Wei-Wen
- Huang, Chih-Yang
Producer: 20180410
In:
Environmental toxicology vol. 33
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1833.
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1834.
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Intrinsic apoptotic pathway activation increases response to anti-estrogens in luminal breast cancers. [electronic resource] by
- Williams, Michelle M
- Lee, Linus
- Werfel, Thomas
- Joly, Meghan M Morrison
- Hicks, Donna J
- Rahman, Bushra
- Elion, David
- McKernan, Courtney
- Sanchez, Violeta
- Estrada, Monica V
- Massarweh, Suleiman
- Elledge, Richard
- Duvall, Craig
- Cook, Rebecca S
Producer: 20190617
In:
Cell death & disease vol. 9
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1835.
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1836.
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1837.
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Yinchenhao decoction suppresses rat liver fibrosis involved in an apoptosis regulation mechanism based on network pharmacology and transcriptomic analysis. [electronic resource] by
- Cai, Fei-Fei
- Bian, Yan-Qin
- Wu, Rong
- Sun, Yang
- Chen, Xiao-Le
- Yang, Meng-Die
- Zhang, Qian-Ru
- Hu, Yuanjia
- Sun, Ming-Yu
- Su, Shi-Bing
Producer: 20190829
In:
Biomedicine & pharmacotherapy = Biomedecine & pharmacotherapie vol. 114
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1838.
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1839.
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Using proteolysis-targeting chimera technology to reduce navitoclax platelet toxicity and improve its senolytic activity. [electronic resource] by
- He, Yonghan
- Zhang, Xuan
- Chang, Jianhui
- Kim, Ha-Neui
- Zhang, Peiyi
- Wang, Yingying
- Khan, Sajid
- Liu, Xingui
- Zhang, Xin
- Lv, Dongwen
- Song, Lin
- Li, Wen
- Thummuri, Dinesh
- Yuan, Yaxia
- Wiegand, Janet S
- Ortiz, Yuma T
- Budamagunta, Vivekananda
- Elisseeff, Jennifer H
- Campisi, Judith
- Almeida, Maria
- Zheng, Guangrong
- Zhou, Daohong
Producer: 20200810
In:
Nature communications vol. 11
Availability: No items available.
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1840.
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