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We have used normal, tumoral and pure stromal whole tissue samples, and cells lines in order to identify new markers of prostate cancer.
The normal, tumoral and stromal tissue were obtained from patients diagnosed with prostate adenocarcinoma.
ORGANISM(S): Homo sapiens 
Multi-omics molecular profiling was performed on post-radical prostatectomy material from a cohort of 132 patients with localized prostate adenocarcinoma. Unsupervised classification techniques were used to build a comprehensive classification of prostate tumours based on three molecular levels: DNA...
ORGANISM(S): Homo sapiens 
Multi-omics molecular profiling was performed on post-radical prostatectomy material from a cohort of 132 patients with localized prostate adenocarcinoma. Unsupervised classification techniques were used to build a comprehensive classification of prostate tumours based on three molecular levels: DNA...
ORGANISM(S): Homo sapiens 
Multi-omics molecular profiling was performed on post-radical prostatectomy material from a cohort of 132 patients with localized prostate adenocarcinoma. Unsupervised classification techniques were used to build a comprehensive classification of prostate tumours based on three molecular levels: DNA...
ORGANISM(S): Homo sapiens 
Multi-omics molecular profiling was performed on post-radical prostatectomy material from a cohort of 132 patients with localized prostate adenocarcinoma. Unsupervised classification techniques were used to build a comprehensive classification of prostate tumours based on three molecular levels: DNA...
ORGANISM(S): Homo sapiens 
Prostate adenocarcinoma and matched adjacent normal samples were profiled by deep transcriptional sequencing to analyze transcription-induced chimeras and gene fusions. Reference samples from the MAQC and brain and universal reference libraries were also sequenced. Two-condition experiment plus ref...
ORGANISM(S): Homo sapiens 
Resistance to androgen deprivation therapies leads to metastatic castration-resistant prostate cancer (mCRPC) of adenocarcinoma (AdCa) origin that can transform to emergent aggressive variant prostate cancer (AVPC) which has neuroendocrine (NE)-like features. To this end, we used LuCaP patient-deriv...
ORGANISM(S): Homo Sapiens (ncbitaxon:9606) 
2023-06-09 | MSV000092139 | MassIVE
Resistance to androgen deprivation therapies leads to metastatic castration-resistant prostate cancer (mCRPC) of adenocarcinoma (AdCa) origin that can transform to emergent aggressive variant prostate cancer (AVPC) which has neuroendocrine (NE)-like features. To this end, we used LuCaP patient-deriv...
ORGANISM(S): Homo Sapiens (ncbitaxon:9606) 
2023-06-09 | MSV000092137 | MassIVE
Data from ProteomeXchange, PXD ID: PXD000238. File: Batch3_RA14LiverMetr2-35.mzml. Published as part of Proc Natl Acad Sci U S A. 2013 Nov 18 . From the Abstract: {{i}} ... We evaluated active kinases using phosphotyrosine peptide enrichment and quantitative mass spectrometry to identify druggable ...
ORGANISM(S): Human_adenovirus_54,human_adenovirus_a,human_adenovirus_b,human_adenovirus_c,human_adenovirus_d,human_adenovirus_e,human_adenovirus_f,human_adenovirus_g,human_astrovirus,human_bocavirus,human_bocavirus_2,human_bocavirus_3,human_bocavirus_4,human_coronavirus_229e,human_coronavirus_hku1,human_coronavirus_nl63,human_coronavirus_oc43,human_cosavirus_a,human_cosavirus_b,human_cosavirus_d,human_cosavirus_e,human_enteric_coronavirus_4408,human_enterovirus_100,human_enterovirus_a,human_enterovirus_b,human_enterovirus_c,human_enterovirus_d,human_erythrovirus_v9,human_herpesvirus_1,human_herpesvirus_2,human_herpesvirus_3,human_herpesvirus_4_type_1,human_herpesvirus_4_type_2,human_herpesvirus_5,human_herpesvirus_6a,human_herpesvirus_6b,human_herpesvirus_7,human_herpesvirus_8_type_p,human_immunodeficiency_virus_1,human_immunodeficiency_virus_2,human_metapneumovirus,human_papillomavirus_fa75_ki88_03,human_papillomavirus_rtrx7,human_papillomavirus_type_10,human_papillomavirus_type_100,human_papillomavirus_type_101,human_papillomavirus_type_103,human_papillomavirus_type_104,human_papillomavirus_type_105,human_papillomavirus_type_108,human_papillomavirus_type_109,human_papillomavirus_type_112,human_papillomavirus_type_113,human_papillomavirus_type_16,human_papillomavirus_type_24,human_papillomavirus_type_26,human_papillomavirus_type_32,human_papillomavirus_type_34,human_papillomavirus_type_4,human_papillomavirus_type_41,human_papillomavirus_type_48,human_papillomavirus_type_49,human_papillomavirus_type_5,human_papillomavirus_type_50,human_papillomavirus_type_53,human_papillomavirus_type_60,human_papillomavirus_type_63,human_papillomavirus_type_6b,human_papillomavirus_type_7,human_papillomavirus_type_71,human_papillomavirus_type_88,human_papillomavirus_type_9,human_papillomavirus_type_92,human_papillomavirus_type_96,human_papillomavirus_type_98,human_papillomavirus_type_99,human_papillomavirus___1,human_papillomavirus___18,human_papillomavirus___2,human_papillomavirus___54,human_papillomavirus___61,human_papillomavirus___cand90,human_parainfluenza_virus_1,human_parainfluenza_virus_2,human_parainfluenza_virus_3,human_parechovirus,human_parvovirus_4,human_parvovirus_b19,human_picobirnavirus,human_respiratory_syncytial_virus,human_rhinovirus_a,human_rhinovirus_b,human_rhinovirus_c,human_tmev_like_cardiovirus,human_t_lymphotropic_virus_1,human_t_lymphotropic_virus_2,human_t_lymphotropic_virus_4, Human 
Disrupted interaction of transmembrane prostatic acid phosphatase and snapin will lead to prostate cancer
ORGANISM(S): Mus musculus 
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