Evaluation of triple negative breast cancer with heterogeneous immune infiltration
Identification of potential RNA markers fir TILs infiltration in patients with triple negative breast cancer with heterogeneous immune infiltration.
Study
EGAS00001007159
Lung_Rearrangement_Study
Genomic libraries (500 bps) will be generated from total genomic DNA derived from cancer samples and subjected to 37 bp, paired end sequencing on the llumina GA. Paired reads will be mapped to build 37 of the human reference genome to facilitate the generation of genome wide copy number information, and the identification of novel rearranged cancer genes and gene fusions.
Study
EGAS00001000005
CLL_Cancer_Whole_Genome_Sequencing
Genomic libraries (500 bps) will be generated from total genomic DNA derived from a range of cancer samples and subjected paired end sequencing on the llumina GA. Paired reads will be mapped to build 37 of the human reference genome to facilitate the generation of genome wide copy number information, and the identification of novel rearranged cancer genes and gene fusions.
Study
EGAS00001000014
Circulating RNAs prior to endometrial cancer diagnosis
We analyzed circulating RNA levels using small RNA sequencing, targeting RNA in the size range 17 to 47 nucleotides, in samples collected prior to endometrial cancer diagnosis compared to cancer-free controls. The analysis included 316 cases with samples collected 1-11 years prior to diagnosis , and 316 matched controls, both from the Janus Serum Bank Cohort in Norway.
Study
EGAS50000000267
Burden_of_Disease_in_Sarcoma
Genomic libraries (500 bps) will be generated from total genomic DNA derived from cancer samples and subjected to 50 bp, paired end sequencing on the llumina HiSeq 2000. Paired reads will be mapped to build 37 of the human reference genome to facilitate the generation of genome wide copy number information, and the identification of novel rearranged cancer genes and gene fusions.
Study
EGAS00001000087
Primary_Lung_Cancer_whole_genome_study
Genomic libraries (500 bps) will be generated from total genomic DNA derived from lung cancer patients and subjected to short paired end sequencing on the llumina platform. Paired reads will be mapped to build 37 of the human reference genome to facilitate the generation of genome wide copy number information, and the identification of novel rearranged cancer genes and gene fusions.
Study
EGAS00001000354
Cancer_Exome_Resequencing
Genomic libraries (500 bps) will be generated from total genomic DNA derived from a range of cancer samples and subjected paired end sequencing on the llumina GA. Paired reads will be mapped to build 37 of the human reference genome to facilitate the generation of genome wide copy number information, and the identification of novel rearranged cancer genes and gene fusions.
Study
EGAS00001000206
Somatic_mutation_and_clonal_evolution_in_the_human_bladder_WES
In this study, we aim to characterise the landscape of mutation and clonal selection in the human bladder. The data in this study will be generated by whole-exome sequencing of laser-dissected microbiopsies from the bladder. The samples utilised in this study will include urothelium from transplant donors with no history of bladder cancer and cystectomy specimens from patients with bladder cancer.
Study
EGAS00001002842
Lung_Plasma_rearrangement_screen
Genomic libraries (500 bps) will be generated from total genomic DNA derived from lung cancer patients and subjected to short paired end sequencing on the llumina platform. Paired reads will be mapped to build 37 of the human reference genome to facilitate the generation of genome wide copy number information, and the identification of novel rearranged cancer genes and gene fusions.
Study
EGAS00001000289
Osteosarcoma_whole_genome_rearrangement_screen
Genomic libraries (500 bps) will be generated from total genomic DNA derived from Osteosarcoma cancer patients and subjected to short paired end sequencing on the llumina platform. Paired reads will be mapped to build 37 of the human reference genome to facilitate the generation of genome wide copy number information, and the identification of novel rearranged cancer genes and gene fusions.
Study
EGAS00001000330