Murine melanoma-infiltrating dendritic cells are defective in antigen presenting function regardless of the presence of CD4+ CD25+ regulatory t cells

35Citations
Citations of this article
46Readers
Mendeley users who have this article in their library.

Abstract

Tumor-infiltrating dendritic cells are often ineffective at presenting tumor-derived antigen in vivo, a defect usually ascribed to the suppressive tumor environment. We investigated the effects of depleting CD4+CD25+ "natural" regulatory T cells (Treg) on the frequency, phenotype and function of total dendritic cell populations in B16.OVA tumors and in tumor-draining lymph nodes. Intraperitoneal injection of the anti-CD25 monoclonal antibody PC61 reduced Treg frequency in blood and tumors, but did not affect the frequency of tumor-infiltrating dendritic cells, or their expression of CD40, CD86 and MHCII. Tumor-infiltrating dendritic cells from PC61-treated or untreated mice induced the proliferation of allogeneic T cells in vitro, but could not induce proliferation of OVA-specific OTI and OTII T cells unless specific peptide antigen was added in culture. Some proliferation of naïve, OVA-specific OTI T cells, but not OTII T cells, was observed in the tumor-draining LN of mice carrying B16.OVA tumors, however, this was not improved by PC61 treatment. Experiments using RAG1-/- hosts adoptively transferred with OTI and CD25-depleted OTII cells also failed to show improved OTI and OTII T cell proliferation in vivo compared to C57BL/6 hosts. We conclude that the defective presentation of B16.OVA tumor antigen by tumor-infiltrating dendritic cells and in the tumor-draining lymph node is not due to the presence of "natural" CD4+CD25+ Treg. © 2011 Ataera et al.

Cite

CITATION STYLE

APA

Ataera, H., Hyde, E., Price, K. M., Stoitzner, P., & Ronchese, F. (2011). Murine melanoma-infiltrating dendritic cells are defective in antigen presenting function regardless of the presence of CD4+ CD25+ regulatory t cells. PLoS ONE, 6(3). https://doi.org/10.1371/journal.pone.0017515

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free