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Sabina Signoretti

Showing results (151-160 of 257) with videos related to

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Plos One|August 2, 2014
Identification of ALK gene alterations in urothelial carcinomaJoaquim Bellmunt, Shamini Selvarajah, Scott Rodig, et al.
Iscience|February 8, 2024
Immune-restoring CAR-T cells display antitumor activity and reverse immunosuppressive TME in a humanized ccRCC mouse modelYufei Wang, Jae-Won Cho, Gabriella Kastrunes, et al.
Cancer Cell|June 12, 2024
A Prostatic Intraepithelial Neoplasia-Dependent p27Kip1 Checkpoint Induces Senescence and Inhibits Cell Proliferation and Cancer ProgressionPradip K Majumder, Chiara Grisanzio, Fionnuala O'Connell, et al.
Nature Genetics|February 9, 2026
Author Correction: Zbtb7a suppresses prostate cancer through repression of a Sox9-dependent pathway for cellular senescence bypass and tumor invasionGuocan Wang, Andrea Lunardi, Jiangwen Zhang, et al.
Cancer Cell|August 12, 2008
A prostatic intraepithelial neoplasia-dependent p27 Kip1 checkpoint induces senescence and inhibits cell proliferation and cancer progressionPradip K Majumder, Chiara Grisanzio, Fionnuala O'Connell, et al.
Journal of the National Cancer Institute|March 26, 2009
Fatty acid synthase: a metabolic enzyme and candidate oncogene in prostate cancerToshiro Migita, Stacey Ruiz, Alessandro Fornari, et al.
Science Translational Medicine|July 14, 2017
HIF activation causes synthetic lethality between the <i>VHL</i> tumor suppressor and the <i>EZH1</i> histone methyltransferaseAbhishek A Chakraborty, Eijiro Nakamura, Jun Qi, et al.
Cancer Cell|August 14, 2014
Phosphorylation of ETS1 by Src family kinases prevents its recognition by the COP1 tumor suppressorGang Lu, Qing Zhang, Ying Huang, et al.
Cancer Discovery|February 6, 2015
Suppression of CHK1 by ETS Family Members Promotes DNA Damage Response Bypass and TumorigenesisAndrea Lunardi, Shohreh Varmeh, Ming Chen, et al.
Plos Genetics|August 6, 2016
Whole Exome Sequencing Identifies TSC1/TSC2 Biallelic Loss as the Primary and Sufficient Driver Event for Renal Angiomyolipoma DevelopmentKrinio Giannikou, Izabela A Malinowska, Trevor J Pugh, et al.
Pageof 26

Showing results (151-160 of 257) with videos related to

Sort By:
Pageof 26
Plos One|August 2, 2014
Identification of ALK gene alterations in urothelial carcinomaJoaquim Bellmunt, Shamini Selvarajah, Scott Rodig, et al.
Iscience|February 8, 2024
Immune-restoring CAR-T cells display antitumor activity and reverse immunosuppressive TME in a humanized ccRCC mouse modelYufei Wang, Jae-Won Cho, Gabriella Kastrunes, et al.
Cancer Cell|June 12, 2024
A Prostatic Intraepithelial Neoplasia-Dependent p27Kip1 Checkpoint Induces Senescence and Inhibits Cell Proliferation and Cancer ProgressionPradip K Majumder, Chiara Grisanzio, Fionnuala O'Connell, et al.
Nature Genetics|February 9, 2026
Author Correction: Zbtb7a suppresses prostate cancer through repression of a Sox9-dependent pathway for cellular senescence bypass and tumor invasionGuocan Wang, Andrea Lunardi, Jiangwen Zhang, et al.
Cancer Cell|August 12, 2008
A prostatic intraepithelial neoplasia-dependent p27 Kip1 checkpoint induces senescence and inhibits cell proliferation and cancer progressionPradip K Majumder, Chiara Grisanzio, Fionnuala O'Connell, et al.
Journal of the National Cancer Institute|March 26, 2009
Fatty acid synthase: a metabolic enzyme and candidate oncogene in prostate cancerToshiro Migita, Stacey Ruiz, Alessandro Fornari, et al.
Science Translational Medicine|July 14, 2017
HIF activation causes synthetic lethality between the <i>VHL</i> tumor suppressor and the <i>EZH1</i> histone methyltransferaseAbhishek A Chakraborty, Eijiro Nakamura, Jun Qi, et al.
Cancer Cell|August 14, 2014
Phosphorylation of ETS1 by Src family kinases prevents its recognition by the COP1 tumor suppressorGang Lu, Qing Zhang, Ying Huang, et al.
Cancer Discovery|February 6, 2015
Suppression of CHK1 by ETS Family Members Promotes DNA Damage Response Bypass and TumorigenesisAndrea Lunardi, Shohreh Varmeh, Ming Chen, et al.
Plos Genetics|August 6, 2016
Whole Exome Sequencing Identifies TSC1/TSC2 Biallelic Loss as the Primary and Sufficient Driver Event for Renal Angiomyolipoma DevelopmentKrinio Giannikou, Izabela A Malinowska, Trevor J Pugh, et al.
Pageof 26