Proteomic signatures in triple-negative breast cancer

Sohit Kashyap1, Vishal Patidar2, Anil Kumar1

  • 1Department of Human Genetics and Molecular Medicine, Central University of Punjab, Bathinda, Punjab, India.

Journal of Proteomics
|January 9, 2026
PubMed

Insights

Proteomics advances triple-negative breast cancer (TNBC) research by identifying protein biomarkers for diagnosis, prognosis, and treatment. This review explores current and future applications of proteomics in developing personalized medicine for TNBC.

Area of Science:

  • Proteomics and cancer research
  • Biomarker discovery in oncology
  • Translational research in breast cancer

Background:

  • Triple-negative breast cancer (TNBC) is an aggressive malignancy with limited treatment options and poor prognosis.
  • Chemotherapy is the primary treatment, but lack of targeted therapies contributes to high recurrence rates.
  • Protein biomarkers are crucial for understanding TNBC heterogeneity and developing targeted treatments.

Purpose of the Study:

  • To review the role of proteomics in identifying protein biomarkers for TNBC.
  • To discuss the clinical applications of these biomarkers in diagnosis, prognosis, and treatment.
  • To explore the integration of proteomics with other omics technologies for precision medicine in TNBC.

Main Methods:

  • Analysis of proteomic signatures from tumor tissue, serum, and exosomes.
  • Investigation of protein biomarkers related to immune checkpoints, glycoproteins, and tumor microenvironment.
  • Integration of proteomics with transcriptomics and genomics data.
  • Review of clinically validated and novel protein biomarkers for TNBC.

Main Results:

  • Proteomic signatures can predict chemotherapy response and disease progression in TNBC.
  • Identified protein biomarkers offer potential for improved diagnosis, prognosis, and risk stratification.
  • Proteomics facilitates a deeper understanding of TNBC pathophysiology and subtype classification.
  • Next-generation proteomic technologies are enabling precision medicine approaches for TNBC.

Conclusions:

  • Proteomics is a critical tool for advancing TNBC research and clinical management.
  • Protein biomarkers identified through proteomics hold significant potential for personalized treatment strategies.
  • Emerging proteomic technologies like single-cell proteomics and integrative immunoproteogenomics are paving the way for future innovations in TNBC diagnostics and therapeutics.