Unraveling Triple-Negative Breast Cancer Tumor Microenvironment Heterogeneity: Towards an Optimized Treatment Approach

Author:

Bareche Yacine1ORCID,Buisseret Laurence1ORCID,Gruosso Tina23ORCID,Girard Edwina1,Venet David1,Dupont Floriane14,Desmedt Christine15ORCID,Larsimont Denis,Park Morag2,Rothé Françoise1,Stagg John6,Sotiriou Christos1

Affiliation:

1. Breast Cancer Translational Research Laboratory J.-C. Heuson, Institut Jules Bordet, Université Libre de Bruxelles, Brussels, Belgium

2. Department of Oncology, McGill University, Montreal, Canada

3. Forbius, 750 Boul St-Laurent, Montréal, Quebec, Canada

4. Pathology Department, Institut Jules Bordet, Université Libre de Bruxelles, Brussels, Belgium

5. Laboratory for Translational Breast Cancer Research, Department of Oncology, KU Leuven, Herestraat 49, box 818, 3000 Leuven, Belgium

6. Centre de Recherche du Centre Hospitalier de l’Université de Montréal, Québec, Canada

Abstract

Abstract Background Recent efforts of gene expression profiling analyses recognized at least four different triple-negative breast cancer (TNBC) molecular subtypes. However, little is known regarding their tumor microenvironment (TME) heterogeneity. Methods Here, we investigated TME heterogeneity within each TNBC molecular subtype, including immune infiltrate localization and composition together with expression of targetable immune pathways, using publicly available transcriptomic and genomic datasets from a large TNBC series totaling 1512 samples. Associations between molecular subtypes and specific features were assessed using logistic regression models. All statistical tests were two-sided. Results We demonstrated that each TNBC molecular subtype exhibits distinct TME profiles associated with specific immune, vascularization, stroma, and metabolism biological processes together with specific immune composition and localization. The immunomodulatory subtype was associated with the highest expression of adaptive immune-related gene signatures and a fully inflamed spatial pattern appearing to be the optimal candidate for immune check point inhibitors. In contrast, most mesenchymal stem-like and luminal androgen receptor tumors showed an immunosuppressive phenotype as witnessed by high expression levels of stromal signatures. Basal-like, luminal androgen receptor, and mesenchymal subtypes exhibited an immune cold phenotype associated with stromal and metabolism TME signatures and enriched in margin-restricted spatial pattern. Tumors with high chromosomal instability and copy number loss in the chromosome 5q and 15q regions, including genomic loss of major histocompatibility complex related genes, showed reduced cytotoxic activity as a plausible immune escape mechanism. Conclusions Our results demonstrate that each TNBC subtype is associated with specific TME profiles, setting the ground for a rationale tailoring of immunotherapy in TNBC patients.

Funder

Télévie and the Fonds National de la Recherche Scientifique

Les Amis de l’Institut Bordet

Breast Cancer Research Foundation

BCRF

Les Amis de Bordet

Publisher

Oxford University Press (OUP)

Subject

Cancer Research,Oncology

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