4 research outputs found

    Expression of Androgen Receptor Splice Variants in Prostate Cancer Bone Metastases is Associated with Castration-Resistance and Short Survival

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    Background: Constitutively active androgen receptor variants (AR-V) lacking the ligand binding domain (LBD) may promote  the development of castration-resistant prostate cancer (CRPC). The expression of AR-Vs in the clinically most important metastatic site, the bone, has, however, not been well documented. Our aim was therefore to compare levels of AR-Vs in hormone-naive (HN) and CRPC bone metastases in comparison to primary PC and non-malignant prostate tissue, as well as in relation to AR protein expression, whole-genome transcription profiles and patient survival. Methodology/Principal Findings: Hormone-naı¨ve (n = 10) and CRPC bone metastases samples (n = 30) were obtained from  40 patients at metastasis surgery. Non-malignant and malignant prostate samples were acquired from 13 prostatectomized men. Levels of full length AR (ARfl) and AR-Vs termed AR-V1, AR-V7, and AR-V567es mRNA were measured with RT-PCR and whole-genome transcription profiles with an Illumina Beadchip array. Protein levels were examined by Western blotting and immunohistochemistry. Transcripts for ARfl, AR-V1, and AR-V7 were detected in most primary tumors and metastases, and levels were significantly increased in CRPC bone metastases. The AR-V567es transcript was detected in 23% of the CRPC bone metastases only. A sub-group of CRPC bone metastases expressed LBD-truncated AR proteins at levels comparable to the ARfl. Detectable AR-V567es and/or AR-V7 mRNA in the upper quartile, seen in 1/3 of all CRPC bone metastases, was associated with a high nuclear AR immunostaining score, disturbed cell cycle regulation and short survival. Conclusions/Significance: Expression of AR-Vs is increased in CRPC compared to HN bone metastases and associated with a particularly poor prognosis. Further studies are needed to test if patients expressing such AR-Vs in their bone metastases benefit more from drugs acting on or down-stream of these AR-Vs than from therapies inhibiting androgen synthesis

    Metabolomic characterization of human prostate cancer bone metastases reveals increased levels of cholesterol.

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    BACKGROUND: Metastasis to the bone is one clinically important features of prostate cancer (PCa). Current diagnostic methods cannot predict metastatic PCa at a curable stage of the disease. Identification of metabolic pathways involved in the growth of bone metastases therefore has the potential to improve PCa prognostication as well as therapy. METHODOLOGY/PRINCIPAL FINDINGS: Metabolomics was applied for the study of PCa bone metastases (n = 20) in comparison with corresponding normal bone (n = 14), and furthermore of malignant (n = 13) and benign (n = 17) prostate tissue and corresponding plasma samples obtained from patients with (n = 15) and without (n = 13) diagnosed metastases and from men with benign prostate disease (n = 30). This was done using gas chromatography-mass spectrometry for sample characterization, and chemometric bioinformatics for data analysis. Results were verified in a separate test set including metastatic and normal bone tissue from patients with other cancers (n = 7). Significant differences were found between PCa bone metastases, bone metastases of other cancers, and normal bone. Furthermore, we identified metabolites in primary tumor tissue and in plasma which were significantly associated with metastatic disease. Among the metabolites in PCa bone metastases especially cholesterol was noted. In a test set the mean cholesterol level in PCa bone metastases was 127.30 mg/g as compared to 81.06 and 35.85 mg/g in bone metastases of different origin and normal bone, respectively (P = 0.0002 and 0.001). Immunohistochemical staining of PCa bone metastases showed intense staining of the low density lipoprotein receptor and variable levels of the scavenger receptor class B type 1 and 3-hydroxy-3-methylglutaryl-coenzyme reductase in tumor epithelial cells, indicating possibilities for influx and de novo synthesis of cholesterol. CONCLUSIONS/SIGNIFICANCE: We have identified metabolites associated with PCa metastasis and specifically identified high levels of cholesterol in PCa bone metastases. Based on our findings and the previous literature, this makes cholesterol a possible therapeutic target for advanced PCa

    Characterization of prostate cancer bone metastases according to expression levels of steroidogenic enzymes and androgen receptor splice variants

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    Background: Intra-tumoral steroidogenesis and constitutive androgen receptor (AR) activity have been associated withcastration-resistant prostate cancer (CRPC). This study aimed to examine if CRPC bone metastases expressed higher levels ofsteroid-converting enzymes than untreated bone metastases. Steroidogenic enzyme levels were also analyzed in relation toexpression of constitutively active AR variants (AR-Vs) and to clinical and pathological variables. Methodology/Principal Findings: Untreated, hormone-naıve (HN, n = 9) and CRPC bone metastases samples (n = 45) wereobtained from 54 patients at metastasis surgery. Non-malignant and malignant prostate samples were acquired from 13prostatectomy specimens. Transcript and protein levels were analyzed by real-time RT-PCR, immunohistochemistry andimmunoblotting. No differences in steroidogenic enzyme levels were detected between CRPC and HN bone metastases.Significantly higher levels of SRD5A1, AKR1C2, AKR1C3, and HSD17B10 mRNA were however found in bone metastases thanin non-malignant and/or malignant prostate tissue, while the CYP11A1, CYP17A1, HSD3B2, SRD5A2, and HSD17B6 mRNAlevels in metastases were significantly lower. A sub-group of metastases expressed very high levels of AKR1C3, which wasnot due to gene amplification as examined by copy number variation assay. No association was found between AKR1C3expression and nuclear AR staining, tumor cell proliferation or patient outcome after metastases surgery. With only oneexception, high AR-V protein levels were found in bone metastases with low AKR1C3 levels, while metastases with highAKR1C3 levels primarily contained low AR-V levels, indicating distinct mechanisms behind castration-resistance in individualbone metastases. Conclusions/Significance: Induced capacity of converting adrenal-gland derived steroids into more potent androgens wasindicated in a sub-group of PC bone metastases. This was not associated with CRPC but merely with the advanced stage ofmetastasis. Sub-groups of bone metastases could be identified according to their expression levels of AKR1C3 and AR-Vs,which might be of relevance for patient response to 2nd line androgen-deprivation therapy
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