Amplification of the androgen receptor gene in bone metastases from hormone‐refractory prostate cancer
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J. Bartlett | J. Masters | J. Edwards | H. Payne | J. Bartlett | R. S. Brown | S. Harland | A. Dogan | R. Brown | S. J. Harland | R. S. Brown | John M. S. Bartlett | Joanne Edwards | Ahmet Dogan | R. S. D. Brown | Heather Payne | Stephen J. Harland | John R. W. Masters
[1] C. Jones,et al. Routine Acid Decalcification of Bone Marrow Samples Can Preserve DNA for FISH and CGH Studies in Metastatic Prostate Cancer , 2002, The journal of histochemistry and cytochemistry : official journal of the Histochemistry Society.
[2] J. Masters,et al. The comparative values of bone marrow aspirate and trephine for obtaining bone scan-targeted metastases from hormone-refractory prostate cancer , 2002, Prostate Cancer and Prostatic Diseases.
[3] J. Bartlett,et al. Amplification of the androgen receptor may not explain the development of androgen‐independent prostate cancer , 2001, BJU international.
[4] R L Vessella,et al. Advances in Brief Amplification and Overexpression of Androgen Receptor Gene in Hormone-Refractory Prostate Cancer 1 , 2001 .
[5] T. Tammela,et al. Androgen receptor gene amplification at primary progression predicts response to combined androgen blockade as second line therapy for advanced prostate cancer. , 2000, The Journal of urology.
[6] D. Aust,et al. FISH Analysis of Gene Aberrations (MYC, CCND1, ERBB2, RB, and AR) in Advanced Prostatic Carcinomas Before and After Androgen Deprivation Therapy , 2000, Laboratory Investigation.
[7] H. Klocker,et al. Androgen receptor – an update of mechanisms of action in prostate cancer , 2000, Urological Research.
[8] H. Klocker,et al. Inhibition of LNCaP prostate cancer cells by means of androgen receptor antisense oligonucleotides , 2000, Cancer Gene Therapy.
[9] N. Rosen,et al. Synthesis and evaluation of geldanamycin-testosterone hybrids. , 2000, Bioorganic & medicinal chemistry letters.
[10] Y. Kubota,et al. Fluorescence in situ hybridization evaluation of c‐myc and androgen receptor gene amplification and chromosomal anomalies in prostate cancer in Japanese patients , 2000, The Prostate.
[11] 三好 康秀. Fluorescence In Situ Hybridization Evaluation of c-myc and Androgen Receptor Gene Amplification and Chromosomal Anomalies in Prostate Cancer in Japanese Patients , 2000 .
[12] H. van Dekken,et al. Effect of Bone Decalcification Procedures on DNA In Situ Hybridization and Comparative Genomic Hybridization: EDTA Is Highly Preferable to a Routinely Used Acid Decalcifier , 1999, The journal of histochemistry and cytochemistry : official journal of the Histochemistry Society.
[13] M. Sadar. Androgen-independent Induction of Prostate-specific Antigen Gene Expression via Cross-talk between the Androgen Receptor and Protein Kinase A Signal Transduction Pathways* , 1999, The Journal of Biological Chemistry.
[14] F. Sasaki,et al. Apoptosis of Dental Pulp Cells and Their Elimination by Macrophages and MHC Class II-expressing Dendritic Cells , 1999, The journal of histochemistry and cytochemistry : official journal of the Histochemistry Society.
[15] T C Gasser,et al. Survey of gene amplifications during prostate cancer progression by high-throughout fluorescence in situ hybridization on tissue microarrays. , 1999, Cancer research.
[16] P. Lange. Clinical oncology update: Prostate cancer , 1997 .
[17] E. Klein,et al. PSA levels and the rate of positive surgical margins in radical prostatectomy specimens preceded by androgen blockade in clinical B2 (T2bNxMo) prostate cancer. The Lupron Depot Neoadjuvant Study Group. , 1997, Urology.
[18] C. Mettlin. Recent developments in the epidemiology of prostate cancer. , 1997, European journal of cancer.
[19] J Isola,et al. Androgen receptor gene amplification: a possible molecular mechanism for androgen deprivation therapy failure in prostate cancer. , 1997, Cancer research.
[20] E. Crawford,et al. Combined androgen blockade: the gold standard for metastatic prostate cancer. , 1997, European urology.
[21] D. Bostwick,et al. Comparison of fluorescence in situ hybridization analysis of isolated nuclei and routine histological sections from paraffin-embedded prostatic adenocarcinoma specimens. , 1996, The American journal of pathology.
[22] T. Tammela,et al. Analysis of genetic changes underlying local recurrence of prostate carcinoma during androgen deprivation therapy. , 1995, The American journal of pathology.
[23] D. Bostwick,et al. Chromosomal anomalies in prostatic intraepithelial neoplasia and carcinoma detected by fluorescence in situ hybridization. , 1995, Cancer research.
[24] Jorma Isola,et al. In vivo amplification of the androgen receptor gene and progression of human prostate cancer , 1995, Nature Genetics.
[25] T. H. van der Kwast,et al. Interphase cytogenetics of prostatic adenocarcinoma and precursor lesions: Analysis of 25 radical prostatectomies and 17 adjacent prostatic intraepithelial neoplasias , 1995, Genes, chromosomes & cancer.
[26] C. Charlton. The urological system , 1973 .