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Updated: Nov 2, 2025

Orthotopic Transplantation of Breast Tumors as Preclinical Models for Breast Cancer
Published on: May 18, 2020
The temporal mutational and immune tumour microenvironment remodelling of HER2-negative primary breast cancers
Leticia De Mattos-Arruda1,2,3, Javier Cortes4,5,6,7,8, Juan Blanco-Heredia9,10
1IrsiCaixa, Germans Trias i Pujol University Hospital, Badalona, Spain. ldemattos@irsicaixa.es.
Abstract:
The biology of breast cancer response to neoadjuvant therapy is underrepresented in the literature and provides a window-of-opportunity to explore the genomic and microenvironment modulation of tumours exposed to therapy. Here, we characterised the mutational, gene expression, pathway enrichment and tumour-infiltrating lymphocytes (TILs) dynamics across different timepoints of 35 HER2-negative primary breast cancer patients receiving neoadjuvant eribulin therapy (SOLTI-1007 NEOERIBULIN-NCT01669252). Whole-exome data (N = 88 samples) generated mutational profiles and candidate neoantigens and were analysed along with RNA-Nanostring 545-gene expression (N = 96 samples) and stromal TILs (N = 105 samples). Tumour mutation burden varied across patients at baseline but not across the sampling timepoints for each patient. Mutational signatures were not always conserved across tumours. There was a trend towards higher odds of response and less hazard to relapse when the percentage of subclonal mutations was low, suggesting that more homogenous tumours might have better responses to neoadjuvant therapy. Few driver mutations (5.1%) generated putative neoantigens. Mutation and neoantigen load were positively correlated (R2 = 0.94, p = <0.001); neoantigen load was weakly correlated with stromal TILs (R2 = 0.16, p = 0.02). An enrichment in pathways linked to immune infiltration and reduced programmed cell death expression were seen after 12 weeks of eribulin in good responders. VEGF was downregulated over time in the good responder group and FABP5, an inductor of epithelial mesenchymal transition (EMT), was upregulated in cases that recurred (p < 0.05). Mutational heterogeneity, subclonal architecture and the improvement of immune microenvironment along with remodelling of hypoxia and EMT may influence the response to neoadjuvant treatment.
Insights
Neoadjuvant eribulin therapy in HER2-negative breast cancer showed that homogenous tumors with low subclonal mutations may improve treatment response. Immune infiltration and reduced cell death pathways were observed in good responders.
Area of Science:
- Oncology
- Genomics
- Immunology
Background:
- Understanding breast cancer response to neoadjuvant therapy is limited.
- Genomic and microenvironment changes during therapy offer insights.
Purpose of the Study:
- To characterize genomic and immune microenvironment dynamics during neoadjuvant eribulin therapy in HER2-negative breast cancer.
- To explore factors influencing treatment response and relapse.
Main Methods:
- Analyzed whole-exome sequencing, gene expression (RNA-Nanostring), and stromal tumor-infiltrating lymphocytes (TILs) from 35 patients.
- Assessed mutational profiles, neoantigens, and pathway enrichment across multiple timepoints.
Main Results:
- Tumor mutation burden was patient-specific, not time-dependent. Lower subclonal mutations correlated with better response and less relapse.
- Mutation and neoantigen load were positively correlated; neoantigen load weakly correlated with stromal TILs.
- Good responders showed increased immune infiltration and reduced programmed cell death pathways. VEGF downregulated, FABP5 upregulated in recurrent cases.
Conclusions:
- Tumor mutational heterogeneity and subclonal architecture impact neoadjuvant treatment response.
- Improvements in the immune microenvironment, hypoxia, and epithelial-mesenchymal transition (EMT) are key factors in treatment outcomes.

