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Srirupa Roy

Showing results (1-10 of 13) with videos related to

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Seminars in Immunopathology|July 1, 2010
Autophagy and tumorigenesisSrirupa Roy, Jayanta Debnath
Carcinogenesis|December 15, 2011
Silibinin prevents ultraviolet B radiation-induced epidermal damages in JB6 cells and mouse skin in a p53-GADD45α-dependent mannerSrirupa Roy, Gagan Deep, Chapla Agarwal, et al.
Cancer Research|November 19, 2009
Inositol hexaphosphate suppresses growth and induces apoptosis in prostate carcinoma cells in culture and nude mouse xenograft: PI3K-Akt pathway as potential targetMallikarjuna Gu, Srirupa Roy, Komal Raina, et al.
Molecular Cell|June 13, 2017
Autophagy-Dependent Shuttling of TBC1D5 Controls Plasma Membrane Translocation of GLUT1 and Glucose UptakeSrirupa Roy, Andrew M Leidal, Jordan Ye, et al.
Molecular Cancer Therapeutics|October 17, 2007
p21 and p27 induction by silibinin is essential for its cell cycle arrest effect in prostate carcinoma cellsSrirupa Roy, Manjinder Kaur, Chapla Agarwal, et al.
Cell Cycle (Georgetown, Tex.)|June 28, 2008
Downregulation of both p21/Cip1 and p27/Kip1 produces a more aggressive prostate cancer phenotypeSrirupa Roy, Rana P Singh, Chapla Agarwal, et al.
Cell|August 21, 2010
ATG12 conjugation to ATG3 regulates mitochondrial homeostasis and cell deathLilliana Radoshevich, Lyndsay Murrow, Nan Chen, et al.
Toxicology|July 13, 2013
Absence of a p53 allele delays nitrogen mustard-induced early apoptosis and inflammation of murine skinSwetha Inturi, Neera Tewari-Singh, Anil K Jain, et al.
Molecular Biology of the Cell|December 2, 2010
Autophagy facilitates glycolysis during Ras-mediated oncogenic transformationRebecca Lock, Srirupa Roy, Candia M Kenific, et al.
Cancer Research|January 30, 2009
p21/Cip1 and p27/Kip1 Are essential molecular targets of inositol hexaphosphate for its antitumor efficacy against prostate cancerSrirupa Roy, Mallikarjuna Gu, Kumaraguruparan Ramasamy, et al.
Pageof 2

Showing results (1-10 of 13) with videos related to

Sort By:
Pageof 2
Seminars in Immunopathology|July 1, 2010
Autophagy and tumorigenesisSrirupa Roy, Jayanta Debnath
Carcinogenesis|December 15, 2011
Silibinin prevents ultraviolet B radiation-induced epidermal damages in JB6 cells and mouse skin in a p53-GADD45α-dependent mannerSrirupa Roy, Gagan Deep, Chapla Agarwal, et al.
Cancer Research|November 19, 2009
Inositol hexaphosphate suppresses growth and induces apoptosis in prostate carcinoma cells in culture and nude mouse xenograft: PI3K-Akt pathway as potential targetMallikarjuna Gu, Srirupa Roy, Komal Raina, et al.
Molecular Cell|June 13, 2017
Autophagy-Dependent Shuttling of TBC1D5 Controls Plasma Membrane Translocation of GLUT1 and Glucose UptakeSrirupa Roy, Andrew M Leidal, Jordan Ye, et al.
Molecular Cancer Therapeutics|October 17, 2007
p21 and p27 induction by silibinin is essential for its cell cycle arrest effect in prostate carcinoma cellsSrirupa Roy, Manjinder Kaur, Chapla Agarwal, et al.
Cell Cycle (Georgetown, Tex.)|June 28, 2008
Downregulation of both p21/Cip1 and p27/Kip1 produces a more aggressive prostate cancer phenotypeSrirupa Roy, Rana P Singh, Chapla Agarwal, et al.
Cell|August 21, 2010
ATG12 conjugation to ATG3 regulates mitochondrial homeostasis and cell deathLilliana Radoshevich, Lyndsay Murrow, Nan Chen, et al.
Toxicology|July 13, 2013
Absence of a p53 allele delays nitrogen mustard-induced early apoptosis and inflammation of murine skinSwetha Inturi, Neera Tewari-Singh, Anil K Jain, et al.
Molecular Biology of the Cell|December 2, 2010
Autophagy facilitates glycolysis during Ras-mediated oncogenic transformationRebecca Lock, Srirupa Roy, Candia M Kenific, et al.
Cancer Research|January 30, 2009
p21/Cip1 and p27/Kip1 Are essential molecular targets of inositol hexaphosphate for its antitumor efficacy against prostate cancerSrirupa Roy, Mallikarjuna Gu, Kumaraguruparan Ramasamy, et al.
Pageof 2