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Cancer Cell
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August 12, 2008
A prostatic intraepithelial neoplasia-dependent p27 Kip1 checkpoint induces senescence and inhibits cell proliferation and cancer progression
Pradip 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 cancer
Toshiro Migita, Stacey Ruiz, Alessandro Fornari, et al.
Cancer
|
July 13, 2017
Gene expression profiling of prostate tissue identifies chromatin regulation as a potential link between obesity and lethal prostate cancer
Ericka M Ebot, Travis Gerke, David P Labbé, et al.
Molecular Cancer Research : MCR
|
September 24, 2004
Frequent HIN-1 promoter methylation and lack of expression in multiple human tumor types
Ian Krop, Audrey Player, Ana Tablante, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
August 27, 2024
<i>RAD21</i> promotes oncogenesis and lethal progression of prostate cancer
Xiaofeng A Su, Konrad H Stopsack, Daniel R Schmidt, et al.
Clinical Genitourinary Cancer
|
July 25, 2006
Development of an integrated prostate cancer research information system
William K Oh, Julia Hayes, Carolyn Evan, et al.
EMBO Reports
|
March 7, 2022
Intra-epithelial non-canonical Activin A signaling safeguards prostate progenitor quiescence
Francesco Cambuli, Veronica Foletto, Alessandro Alaimo, et al.
Molecular Cancer
|
October 3, 2023
Spatial transcriptomic analysis of virtual prostate biopsy reveals confounding effect of tissue heterogeneity on genomic signatures
Sandy Figiel, Wencheng Yin, Dimitrios Doultsinos, et al.
Clinical Cancer Research : an Official Journal of the American Association for Cancer Research
|
August 15, 2023
SPOP Mutations Target STING1 Signaling in Prostate Cancer and Create Therapeutic Vulnerabilities to PARP Inhibitor-Induced Growth Suppression
Chuandong Geng, Man-Chao Zhang, Ganiraju C Manyam, et al.
Biorxiv : the Preprint Server for Biology
|
April 3, 2026
Suppression of de novo lipogenesis and dietary PUFA supplementation inhibit prostate cancer progression
Silvia D Rodrigues, Caroline Fidalgo Ribeiro, Giuseppe N Fanelli, et al.
Page
of 41
Search research articles
Search
Showing results (321-330 of 409) with videos related to
Sort By:
Page
of 41
Cancer Cell
|
August 12, 2008
A prostatic intraepithelial neoplasia-dependent p27 Kip1 checkpoint induces senescence and inhibits cell proliferation and cancer progression
Pradip 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 cancer
Toshiro Migita, Stacey Ruiz, Alessandro Fornari, et al.
Cancer
|
July 13, 2017
Gene expression profiling of prostate tissue identifies chromatin regulation as a potential link between obesity and lethal prostate cancer
Ericka M Ebot, Travis Gerke, David P Labbé, et al.
Molecular Cancer Research : MCR
|
September 24, 2004
Frequent HIN-1 promoter methylation and lack of expression in multiple human tumor types
Ian Krop, Audrey Player, Ana Tablante, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
August 27, 2024
<i>RAD21</i> promotes oncogenesis and lethal progression of prostate cancer
Xiaofeng A Su, Konrad H Stopsack, Daniel R Schmidt, et al.
Clinical Genitourinary Cancer
|
July 25, 2006
Development of an integrated prostate cancer research information system
William K Oh, Julia Hayes, Carolyn Evan, et al.
EMBO Reports
|
March 7, 2022
Intra-epithelial non-canonical Activin A signaling safeguards prostate progenitor quiescence
Francesco Cambuli, Veronica Foletto, Alessandro Alaimo, et al.
Molecular Cancer
|
October 3, 2023
Spatial transcriptomic analysis of virtual prostate biopsy reveals confounding effect of tissue heterogeneity on genomic signatures
Sandy Figiel, Wencheng Yin, Dimitrios Doultsinos, et al.
Clinical Cancer Research : an Official Journal of the American Association for Cancer Research
|
August 15, 2023
SPOP Mutations Target STING1 Signaling in Prostate Cancer and Create Therapeutic Vulnerabilities to PARP Inhibitor-Induced Growth Suppression
Chuandong Geng, Man-Chao Zhang, Ganiraju C Manyam, et al.
Biorxiv : the Preprint Server for Biology
|
April 3, 2026
Suppression of de novo lipogenesis and dietary PUFA supplementation inhibit prostate cancer progression
Silvia D Rodrigues, Caroline Fidalgo Ribeiro, Giuseppe N Fanelli, et al.
Page
of 41