Breast Cancer Plasticity after Chemotherapy Highlights the Need for Re-Evaluation of Subtyping in Residual Cancer and Metastatic Tissues.
Irena Barbara Padzińska-PruszyńskaMuhammad Waqas AkbarMurat IsbilenEmilia GórkaBaris KucukkaradumanSeçil Demirkol CanlıEge DedeoğluShila AzizolliIsli CelaAbbas Guven AkcayHaşim HakanoğluLubomir BodnarSzczepan CierniakZygmunt KozielecJacek Jerzy PruszyńskiMartyna BittelAli Osmay GureMagdalena KrólBartłomiej TaciakPublished in: International journal of molecular sciences (2024)
This research paper presents a novel approach to identifying biomarkers that can be used to prognosticate patients with triple-negative breast cancer (TNBC) eligible for neoadjuvant therapy. The study utilized survival and RNA sequencing data from a cohort of TNBC patients and identified 276 genes whose expression was related to survival in such patients. The gene expression data were then used to classify patients into two major groups based on the presence or absence of Wingless/Integrated-pathway (Wnt-pathway) and mesenchymal (Mes) markers (Wnt/Mes). Patients with a low expression of Wnt/Mes-related genes had a favorable outcome, with no deaths observed during follow-up, while patients with a high expression of Wnt/Mes genes had a higher mortality rate of 50% within 19 months. The identified gene list could be validated and potentially used to shape treatment options for TNBC patients eligible for neoadjuvant therapy providing valuable insights into the development of more effective treatments for TNBC. Our data also showed significant variation in gene expression profiles before and after chemotherapy, with most tumors switching to a more mesenchymal/stem cell-like profile. To verify this observation, we performed an in silico analysis to classify breast cancer tumors in Prediction Analysis of Microarray 50 (PAM50) molecular classes before treatment and after treatment using gene expression data. Our findings demonstrate that following drug intervention and metastasis, certain tumors undergo a transition to alternative subtypes, resulting in diminished therapeutic efficacy. This underscores the necessity for reevaluation of patients who have experienced relapse or metastasis post-chemotherapy, with a focus on molecular subtyping. Tailoring treatment strategies based on these refined subtypes is imperative to optimize therapeutic outcomes for affected individuals.
Keyphrases
- end stage renal disease
- gene expression
- newly diagnosed
- ejection fraction
- chronic kidney disease
- stem cells
- prognostic factors
- randomized controlled trial
- cell proliferation
- poor prognosis
- coronary artery disease
- electronic health record
- metabolic syndrome
- dna methylation
- genome wide
- risk factors
- young adults
- adipose tissue
- single cell
- weight loss
- copy number
- single molecule
- childhood cancer