Stroma-Mediated Breast Cancer Cell Proliferation Indirectly Drives Chemoresistance by Accelerating Tumor Recovery between Chemotherapy Cycles

Author:

Miroshnychenko Daria1ORCID,Miti Tatiana2ORCID,Kumar Pragya13ORCID,Miller Anna2ORCID,Laurie Mark1ORCID,Giraldo Nathalia14ORCID,Bui Marilyn M.5ORCID,Altrock Philipp M.6ORCID,Basanta David2ORCID,Marusyk Andriy14ORCID

Affiliation:

1. 1Department of Metabolism and Physiology, H Lee Moffitt Cancer Center and Research Institute, Tampa, Florida.

2. 2Department of Integrated Mathematical Oncology, H Lee Moffitt Cancer Center and Research Institute, Tampa, Florida.

3. 3Cancer Biology PhD Program, University of South Florida, Tampa, Florida.

4. 4Department of Molecular Medicine, University of South Florida, Tampa, Florida.

5. 5Department of Pathology, H. Lee Moffitt Cancer Center and Research Institute, Tampa, Florida.

6. 6Department of Theoretical Biology, Max Planck Institute for Evolutionary Biology, Ploen, Schleswig-Holstein, Germany.

Abstract

Abstract The ability of tumors to survive therapy reflects both cell-intrinsic and microenvironmental mechanisms. Across many cancers, including triple-negative breast cancer (TNBC), a high stroma/tumor ratio correlates with poor survival. In many contexts, this correlation can be explained by the direct reduction of therapy sensitivity induced by stroma-produced paracrine factors. We sought to explore whether this direct effect contributes to the link between stroma and poor responses to chemotherapies. In vitro studies with panels of TNBC cell line models and stromal isolates failed to detect a direct modulation of chemoresistance. At the same time, consistent with prior studies, fibroblast-produced secreted factors stimulated treatment-independent enhancement of tumor cell proliferation. Spatial analyses indicated that proximity to stroma is often associated with enhanced tumor cell proliferation in vivo. These observations suggested an indirect link between stroma and chemoresistance, where stroma-augmented proliferation potentiates the recovery of residual tumors between chemotherapy cycles. To evaluate this hypothesis, a spatial agent–based model of stroma impact on proliferation/death dynamics was developed that was quantitatively parameterized using inferences from histologic analyses and experimental studies. The model demonstrated that the observed enhancement of tumor cell proliferation within stroma-proximal niches could enable tumors to avoid elimination over multiple chemotherapy cycles. Therefore, this study supports the existence of an indirect mechanism of environment-mediated chemoresistance that might contribute to the negative correlation between stromal content and poor therapy outcomes. Significance: Integration of experimental research with mathematical modeling reveals an indirect microenvironmental chemoresistance mechanism by which stromal cells stimulate breast cancer cell proliferation and highlights the importance of consideration of proliferation/death dynamics. See related commentary by Wall and Echeverria, p. 3667

Funder

National Cancer Institute

Florida Breast Cancer Foundation

Bankhead-Coley Foundation

Susan G. Komen North Carolina

Publisher

American Association for Cancer Research (AACR)

Subject

Cancer Research,Oncology

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