Abstract
<jats:p>The sialyl-Tn (STn) glycan antigen is aberrantly expressed in a subset of triple-negative breast cancer (TNBC) and is associated with poor prognosis and immunosuppressive microenvironment. Tumour-derived extracellular vesicles (TDEVs) are emerging regulators of immune escape, however the role of glycan-mediated mechanisms remains elusive. Aberrant glycosylation is a hallmark of cancer that extends to TDEVs, yet how tumour-associated glycans within EV cargo modulate cell function remains poorly understood. Here, we used engineered MDA-MB-231 TNBC cells to overexpress the glycosyltransferase ST6GalNAc-I, generating STn-positive cells whose EVs were enriched in STn (STn+ EV). The STn+ EVs impaired the maturation of monocyte-derived dendritic cells (DCs), reduced antigen presentation, and diminished CD4⁺ and CD8⁺ T cell priming, alongside the expansion of regulatory T cells. DCs co-cultured with STn⁺ EVs display STn at their cell surface. Notably, STn+ EVs transferred both STn antigen and the ST6GalNAc-I to recipient DCs. Enzymatic removal of terminal sialic acids from STn⁺ EVs reversed the immunosuppressive effects, confirming the STn‑dependent nature of DC dysfunction. These findings add STn to the extensive list of components of EVs' molecular cargo that play a role in immune suppression and may contribute for developing precision medicine approaches in oncology.</jats:p>