Effect of silencing of METTL1 oncastration-resistant prostate cancer cells
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2023-08-23
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Systematic characterization of epigenetic modifying enzymes identifies KDM3B as a key regulator in castration resistant prostate cancer. Systematic characterization of epigenetic modifying enzymes identifies KDM3B as a key regulator in castration resistant prostate cancer
Androgen deprivation therapy (ADT) is the standard care for prostate cancer patients who fail surgery and radiotherapy. While initially effective, the cancer almost always recurs into a more aggressiv
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Phenotypic characterization of two novel cell line models of castration resistant prostate cancer
Purpose: Resistance to androgen deprivation therapies is a major driver of mortality in advanced prostate cancer. Therefore, there is a need to develop new pre-clinical models that allow the investiga
NIAID Data Ecosystem50
Human prostate cancer cells (VCaP and AIVCaP): siAR alone (single siRNA) vs. siAR plus OPRK1 (combo-siRNA)
Through comparative genomics using PDX models of androgen-dependent (AD) and castration-resistant (CR) tumors, we identify opioid receptor kappa 1 (OPRK1) as being associated with castration-resistanc
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Identification of the GATA2 transcriptome in the AR-V positive castrate-resistant prostate cancer cell line CWR22Rv1
To interrogate the extent of overlap between GATA2 and AR-V regulated transcriptomes in castrate-resistant prostate cancer cells, we assessed global gene expression changes in GATA2-depleted CWR22Rv1
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ARv7 represses tumor suppressors genes in castration-resistant prostate cancer [RNA-Seq]
Endocrine therapies in prostate cancer (PCa) treatment block androgen receptor (AR) function, but are palliative as tumors progress to a lethal, castration-resistant state (CRPC). CRPC remains depende
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