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Targeting stromal cell Syndecan‐2 reduces breast tumour growth, metastasis and limits immune evasion

Paul Loftus, Luke Watson, Laura Deedigan, Eva Camarillo‐Retamosa, Róisín M. Dwyer, Lisa O’Flynn, Senthilkumar Alagesan, Matthew D. Griffin, Timothy O’Brien, Michael J. Kerin, Stephen J. Elliman, Laura R. Barkley

2020International Journal of Cancer68 citationsDOIOpen Access PDF

Abstract

Tumour stromal cells support tumourigenesis. We report that Syndecan-2 (SDC2) is expressed on a nonepithelial, nonhaematopoietic, nonendothelial stromal cell population within breast cancer tissue. In vitro, syndecan-2 modulated TGFβ signalling (SMAD7, PAI-1), migration and immunosuppression of patient-derived tumour-associated stromal cells (TASCs). In an orthotopic immunocompromised breast cancer model, overexpression of syndecan-2 in TASCs significantly enhanced TGFβ signalling (SMAD7, PAI-1), tumour growth and metastasis, whereas reducing levels of SDC2 in TASCs attenuated TGFβ signalling (SMAD7, PAI-1, CXCR4), tumour growth and metastasis. To explore the potential for therapeutic application, a syndecan-2-peptide was generated that inhibited the migratory and immunosuppressive properties of TASCs in association with reduced expression of TGFβ-regulated immunosuppressive genes, such as CXCR4 and PD-L1. Moreover, using an orthotopic syngeneic breast cancer model, overexpression of syndecan-2-peptide in TASCs reduced tumour growth and immunosuppression within the TME. These data provide evidence that targeting stromal syndecan-2 within the TME inhibits tumour growth and metastasis due to decreased TGFβ signalling and increased immune control.

Topics & Concepts

Stromal cellCancer researchMetastasisCXCR4Immune systemBiologyImmunosuppressionBreast cancerPopulationSyndecan 1ImmunologyMedicineCancerCellChemokineInternal medicineEnvironmental healthGeneticsCancer Cells and MetastasisMesenchymal stem cell researchProteoglycans and glycosaminoglycans research
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