Soluble factors derived from neuroblastoma cell lines suppress dendritic cell differentiation and activation

Kazuaki Harada1,2, Fumie Ihara1, Mariko Takami1

  • 1Department of Medical Immunology, Graduate School of Medicine, Chiba University, Chiba, Japan.

Cancer Science
|January 11, 2019
PubMed

Insights

Neuroblastoma tumor cells induce tolerogenic dendritic cells (DC), which suppress antitumor immunity. Interleukin-12 and Interferon-gamma can restore the anti-tumor effects of invariant natural killer T cells.

Area of Science:

  • Immunology
  • Cancer Biology
  • Cell Biology

Background:

  • Dendritic cells (DCs) are crucial for initiating antitumor immunity and immunological tolerance.
  • Tumor-derived soluble factors can modulate DC function, promoting the differentiation of tolerogenic DCs.

Purpose of the Study:

  • To investigate the impact of soluble factors from neuroblastoma cell lines on dendritic cell differentiation and function.
  • To understand how neuroblastoma-derived factors affect the interaction between DCs and invariant natural killer T (iNKT) cells.

Main Methods:

  • Monocytes were cultured with IL-4 and GM-CSF in the presence of neuroblastoma cell line supernatants.
  • DC maturation markers (CD14, CD1a), cytokine production (IL-12, TNF-α, IL-6, IL-10), and iNKT cell stimulation were analyzed.
  • The effects of IL-12 and IFN-γ on DC function were evaluated.

Main Results:

  • Neuroblastoma supernatants (NLF, GOTO) partially inhibited DC maturation markers and significantly reduced IL-12 and TNF-α production.
  • These supernatants increased IL-6 and IL-10 production by monocytes.
  • DCs cultured with NLF supernatants showed impaired iNKT cell stimulation, which was partially restored by IL-12, and enhanced by IFN-γ.

Conclusions:

  • Neuroblastoma tumor microenvironment induces tolerogenic DCs, which suppress the antitumor activity of iNKT cells.
  • Interactions involving DCs and iNKT cells, particularly through IFN-γ, hold potential for overcoming DC-induced immunosuppression.

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