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Frank C Cackowski

Showing results (11-20 of 43) with videos related to

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BMC Cancer|July 18, 2023
SNHG1 opposes quiescence and promotes docetaxel sensitivity in prostate cancerSteven P Zielske, Wei Chen, Kristina G Ibrahim, et al.
Journal of Cellular Biochemistry|December 14, 2017
Reduction of two histone marks, H3k9me3 and H3k27me3 by epidrug induces neuroendocrine differentiation in prostate cancerEunsohl Lee, Jingcheng Wang, Younghun Jung, et al.
Cell Biology and Toxicology|June 29, 2019
Bone microenvironment signaling of cancer stem cells as a therapeutic target in metastatic prostate cancerClara H Lee, Ann M Decker, Frank C Cackowski, et al.
Clinical Genitourinary Cancer|July 21, 2022
Treatment Intensification Patterns and Utilization in Patients with Metastatic Castration-Sensitive Prostate CancerElisabeth I Heath, Gregory E Dyson, Frank C Cackowski, et al.
Molecular Cancer Research : MCR|August 18, 2017
Sympathetic Signaling Reactivates Quiescent Disseminated Prostate Cancer Cells in the Bone MarrowAnn M Decker, Younghun Jung, Frank C Cackowski, et al.
Journal of Bone Oncology|September 1, 2021
Use of FVB Myc-CaP cells as an immune competent, androgen receptor positive, mouse model of prostate cancer bone metastasisYu Wang, Mackenzie K Herroon, Steven P Zielske, et al.
The Prostate|July 14, 2020
CXCL12γ induces human prostate and mammary gland developmentYounghun Jung, Jin Koo Kim, Eunsohl Lee, et al.
JCO Precision Oncology|December 7, 2020
Double-Negative Prostate Cancer Masquerading as a Squamous Cancer of Unknown Primary: A Clinicopathologic and Genomic Sequencing-Based Case StudyFrank C Cackowski, Chandan Kumar-Sinha, Rohit Mehra, et al.
Neoplasia (New York, N.Y.)|December 9, 2020
Abscisic acid regulates dormancy of prostate cancer disseminated tumor cells in the bone marrowYounghun Jung, Frank C Cackowski, Kenji Yumoto, et al.
The American Journal of Pathology|March 4, 2005
Up-regulation of angiopoietin-2, matrix metalloprotease-2, membrane type 1 metalloprotease, and laminin 5 gamma 2 correlates with the invasiveness of human gliomaPing Guo, Yorihisa Imanishi, Frank C Cackowski, et al.
Pageof 5

Showing results (11-20 of 43) with videos related to

Sort By:
Pageof 5
BMC Cancer|July 18, 2023
SNHG1 opposes quiescence and promotes docetaxel sensitivity in prostate cancerSteven P Zielske, Wei Chen, Kristina G Ibrahim, et al.
Journal of Cellular Biochemistry|December 14, 2017
Reduction of two histone marks, H3k9me3 and H3k27me3 by epidrug induces neuroendocrine differentiation in prostate cancerEunsohl Lee, Jingcheng Wang, Younghun Jung, et al.
Cell Biology and Toxicology|June 29, 2019
Bone microenvironment signaling of cancer stem cells as a therapeutic target in metastatic prostate cancerClara H Lee, Ann M Decker, Frank C Cackowski, et al.
Clinical Genitourinary Cancer|July 21, 2022
Treatment Intensification Patterns and Utilization in Patients with Metastatic Castration-Sensitive Prostate CancerElisabeth I Heath, Gregory E Dyson, Frank C Cackowski, et al.
Molecular Cancer Research : MCR|August 18, 2017
Sympathetic Signaling Reactivates Quiescent Disseminated Prostate Cancer Cells in the Bone MarrowAnn M Decker, Younghun Jung, Frank C Cackowski, et al.
Journal of Bone Oncology|September 1, 2021
Use of FVB Myc-CaP cells as an immune competent, androgen receptor positive, mouse model of prostate cancer bone metastasisYu Wang, Mackenzie K Herroon, Steven P Zielske, et al.
The Prostate|July 14, 2020
CXCL12γ induces human prostate and mammary gland developmentYounghun Jung, Jin Koo Kim, Eunsohl Lee, et al.
JCO Precision Oncology|December 7, 2020
Double-Negative Prostate Cancer Masquerading as a Squamous Cancer of Unknown Primary: A Clinicopathologic and Genomic Sequencing-Based Case StudyFrank C Cackowski, Chandan Kumar-Sinha, Rohit Mehra, et al.
Neoplasia (New York, N.Y.)|December 9, 2020
Abscisic acid regulates dormancy of prostate cancer disseminated tumor cells in the bone marrowYounghun Jung, Frank C Cackowski, Kenji Yumoto, et al.
The American Journal of Pathology|March 4, 2005
Up-regulation of angiopoietin-2, matrix metalloprotease-2, membrane type 1 metalloprotease, and laminin 5 gamma 2 correlates with the invasiveness of human gliomaPing Guo, Yorihisa Imanishi, Frank C Cackowski, et al.
Pageof 5