Search research articles
Contact Us
Filters
Showing results (41-50 of 119) with videos related to
Page
of 12
Sort By:
Archives of Biochemistry and Biophysics
|
November 4, 2020
Metabolic interventions: A new insight into the cancer immunotherapy
Tao Yu, Tianhan Dong, Haniyeh Eyvani, et al.
Cancer Cell
|
October 16, 2007
The Wip1 Phosphatase acts as a gatekeeper in the p53-Mdm2 autoregulatory loop
Xiongbin Lu, Ou Ma, Thuy-Ai Nguyen, et al.
Cancer Metastasis Reviews
|
February 13, 2008
The type 2C phosphatase Wip1: an oncogenic regulator of tumor suppressor and DNA damage response pathways
Xiongbin Lu, Thuy-Ai Nguyen, Sung-Hwan Moon, et al.
Cancer Research
|
October 8, 2009
Phosphorylation and degradation of MdmX is inhibited by Wip1 phosphatase in the DNA damage response
Xinna Zhang, Lin Lin, Huarong Guo, et al.
The Journal of Biological Chemistry
|
October 11, 2014
Phosphorylation of the BRCA1 C terminus (BRCT) repeat inhibitor of hTERT (BRIT1) protein coordinates TopBP1 protein recruitment and amplifies ataxia telangiectasia-mutated and Rad3-related (ATR) Signaling
Bo Zhang, Edward Wang, Hui Dai, et al.
Cancer Research
|
July 30, 2010
Oncogenic Wip1 phosphatase is inhibited by miR-16 in the DNA damage signaling pathway
Xinna Zhang, Guohui Wan, Sizolwenkosi Mlotshwa, et al.
Biomaterials
|
September 8, 2015
Hyaluronic acid-decorated dual responsive nanoparticles of Pluronic F127, PLGA, and chitosan for targeted co-delivery of doxorubicin and irinotecan to eliminate cancer stem-like cells
Hai Wang, Pranay Agarwal, Shuting Zhao, et al.
JCO Clinical Cancer Informatics
|
February 11, 2022
Intron-Retention Neoantigen Load Predicts Favorable Prognosis in Pancreatic Cancer
Chuanpeng Dong, Jill L Reiter, Edward Dong, et al.
DNA Repair
|
May 11, 2010
The oncogenic phosphatase WIP1 negatively regulates nucleotide excision repair
Thuy-Ai Nguyen, Scott D Slattery, Sung-Hwan Moon, et al.
Molecular Pharmaceutics
|
May 20, 2016
Enhanced Microwave Hyperthermia of Cancer Cells with Fullerene
Mingrui Sun, Asimina Kiourti, Hai Wang, et al.
Page
of 12
Search research articles
Search
Showing results (41-50 of 119) with videos related to
Sort By:
Page
of 12
Archives of Biochemistry and Biophysics
|
November 4, 2020
Metabolic interventions: A new insight into the cancer immunotherapy
Tao Yu, Tianhan Dong, Haniyeh Eyvani, et al.
Cancer Cell
|
October 16, 2007
The Wip1 Phosphatase acts as a gatekeeper in the p53-Mdm2 autoregulatory loop
Xiongbin Lu, Ou Ma, Thuy-Ai Nguyen, et al.
Cancer Metastasis Reviews
|
February 13, 2008
The type 2C phosphatase Wip1: an oncogenic regulator of tumor suppressor and DNA damage response pathways
Xiongbin Lu, Thuy-Ai Nguyen, Sung-Hwan Moon, et al.
Cancer Research
|
October 8, 2009
Phosphorylation and degradation of MdmX is inhibited by Wip1 phosphatase in the DNA damage response
Xinna Zhang, Lin Lin, Huarong Guo, et al.
The Journal of Biological Chemistry
|
October 11, 2014
Phosphorylation of the BRCA1 C terminus (BRCT) repeat inhibitor of hTERT (BRIT1) protein coordinates TopBP1 protein recruitment and amplifies ataxia telangiectasia-mutated and Rad3-related (ATR) Signaling
Bo Zhang, Edward Wang, Hui Dai, et al.
Cancer Research
|
July 30, 2010
Oncogenic Wip1 phosphatase is inhibited by miR-16 in the DNA damage signaling pathway
Xinna Zhang, Guohui Wan, Sizolwenkosi Mlotshwa, et al.
Biomaterials
|
September 8, 2015
Hyaluronic acid-decorated dual responsive nanoparticles of Pluronic F127, PLGA, and chitosan for targeted co-delivery of doxorubicin and irinotecan to eliminate cancer stem-like cells
Hai Wang, Pranay Agarwal, Shuting Zhao, et al.
JCO Clinical Cancer Informatics
|
February 11, 2022
Intron-Retention Neoantigen Load Predicts Favorable Prognosis in Pancreatic Cancer
Chuanpeng Dong, Jill L Reiter, Edward Dong, et al.
DNA Repair
|
May 11, 2010
The oncogenic phosphatase WIP1 negatively regulates nucleotide excision repair
Thuy-Ai Nguyen, Scott D Slattery, Sung-Hwan Moon, et al.
Molecular Pharmaceutics
|
May 20, 2016
Enhanced Microwave Hyperthermia of Cancer Cells with Fullerene
Mingrui Sun, Asimina Kiourti, Hai Wang, et al.
Page
of 12