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Updated: Aug 17, 2026

Tractable In Vivo Reprogramming of Tumor Cells to Type 1 Conventional Dendritic Cell-like Cells
Published on: August 1, 2025
Recombinant tumor-associated MUC1 glycoprotein impairs the differentiation and function of dendritic cells
Aurelia Rughetti1, Ilenia Pellicciotta, Mauro Biffoni
1Department of Experimental Medicine and Pathology, University of Rome La Sapienza, Rome, Italy.
Abstract:
Tumors exploit several strategies to evade immune recognition, including the production of a large number of immunosuppressive factors, which leads to reduced numbers and impaired functions of dendritic cells (DCs) in the vicinity of tumors. We have investigated whether a mucin released by tumor cells could be involved in causing these immunomodulating effects on DCs. We used a recombinant purified form of the MUC1 glycoprotein, an epithelial associated mucin that is overexpressed, aberrantly glycosylated, and shed during cancer transformation. The O-glycosylation profile of the recombinant MUC1 glycoprotein (ST-MUC1) resembled that expressed by epithelial tumors in vivo, consisting of large numbers of sialylated core 1 (sialyl-T, ST) oligosaccharides. When cultured in the presence of ST-MUC1, human monocyte-derived DCs displayed a modified phenotype with decreased expression of costimulatory molecules (CD86, CD40), Ag-presenting molecules (DR and CD1d), and differentiation markers (CD83). In contrast, markers associated with an immature phenotype, CD1a and CD206 (mannose receptor), were increased. This effect was already evident at day 4 of DC culture and was dose dependent. The modified phenotype of DCs corresponded to an altered balance in IL-12/IL-10 cytokine production, with DC expressing an IL-10(high)IL-12(low) phenotype after exposure to ST-MUC1. These DCs were defective in their ability to induce immune responses in both allogeneic and autologous settings, as detected in proliferation and ELISPOT assays. The altered DC differentiation and Ag presentation function induced by the soluble sialylated tumor-associated mucin may represent a mechanism by which epithelial tumors can escape immunosurveillance.
Insights
Tumor-associated MUC1 glycoprotein suppresses dendritic cell (DC) function by altering their phenotype and cytokine production. This impairs the ability of DCs to initiate anti-tumor immune responses, aiding cancer immune evasion.
Area of Science:
- Immunology
- Cancer Biology
- Glycobiology
Background:
- Tumors evade immune detection by producing immunosuppressive factors.
- Dendritic cells (DCs) are crucial for initiating immune responses but are often impaired near tumors.
Purpose of the Study:
- To investigate if tumor-derived mucins influence DC function and contribute to immune evasion.
- To characterize the effects of a specific MUC1 glycoprotein on dendritic cell phenotype and function.
Main Methods:
- Used recombinant sialyl-T MUC1 (ST-MUC1) glycoprotein with an in vivo-like glycosylation profile.
- Cultured human monocyte-derived DCs with ST-MUC1 and analyzed cell surface marker expression.
- Assessed cytokine production (IL-12/IL-10) and DC-mediated immune responses using proliferation and ELISPOT assays.
Main Results:
- ST-MUC1 exposure decreased costimulatory and differentiation markers (CD86, CD40, CD83) on DCs.
- Immature DC markers (CD1a, CD206) increased, indicating altered differentiation.
- DCs exhibited an IL-10(high)IL-12(low) cytokine profile and reduced ability to stimulate immune cell proliferation.
Conclusions:
- Soluble sialylated MUC1 alters dendritic cell differentiation and function.
- This MUC1-induced DC dysfunction represents a potential mechanism for epithelial tumor immune evasion.
- Targeting MUC1-DC interactions could offer new cancer immunotherapy strategies.
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