Inflammatory Breast Cancer: Clinical Implications of Genomic Alterations and Mutational Profiling.
Flávia L C FaldoniRolando André Rios VillacisLuisa Matos do CantoCarlos Eduardo Fonseca AlvesSarah S CurySimon Jonas LarsenMads Malik Aagaard JørgensenCristiano P SouzaCristovam Scapulatempo-NetoCynthia A B T OsórioJan BaumbachFabio Albuquerque MarchiSilvia R RogattoPublished in: Cancers (2020)
Inflammatory breast cancer (IBC) is a rare and aggressive type of breast cancer whose molecular basis is poorly understood. We performed a comprehensive molecular analysis of 24 IBC biopsies naïve of treatment, using a high-resolution microarray platform and targeted next-generation sequencing (105 cancer-related genes). The genes more frequently affected by gains were MYC (75%) and MDM4 (71%), while frequent losses encompassed TP53 (71%) and RB1 (58%). Increased MYC and MDM4 protein expression levels were detected in 18 cases. These genes have been related to IBC aggressiveness, and MDM4 is a potential therapeutic target in IBC. Functional enrichment analysis revealed genes associated with inflammatory regulation and immune response. High homologous recombination (HR) deficiency scores were detected in triple-negative and metastatic IBC cases. A high telomeric allelic imbalance score was found in patients having worse overall survival (OS). The mutational profiling was compared with non-IBC (TCGA, n = 250) and IBC (n = 118) from four datasets, validating our findings. Higher frequency of TP53 and BRCA2 variants were detected compared to non-IBC, while PIKC3A showed similar frequency. Variants in mismatch repair and HR genes were associated with worse OS. Our study provided a framework for improved diagnosis and therapeutic alternatives for this aggressive tumor type.
Keyphrases
- copy number
- genome wide
- immune response
- high resolution
- oxidative stress
- end stage renal disease
- single cell
- bioinformatics analysis
- squamous cell carcinoma
- ejection fraction
- dna damage
- newly diagnosed
- chronic kidney disease
- transcription factor
- small cell lung cancer
- genome wide identification
- high throughput
- dna methylation
- dna repair
- gene expression
- squamous cell
- peritoneal dialysis
- toll like receptor
- childhood cancer
- replacement therapy
- climate change
- young adults
- genome wide analysis
- free survival
- human health