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Updated: Jan 30, 2026

Differentiation of the SH-SY5Y Human Neuroblastoma Cell Line
Published on: February 17, 2016
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.
Abstract:
Dendritic cells (DC) play a key role in the initiation of both antitumor immunity and immunological tolerance. It has been demonstrated that exposure to soluble factors produced by tumor cells modulates DC functions and induces tolerogenic DC differentiation. In this study, we investigated the effects of neuroblastoma cell line-derived soluble factors on DC differentiation. Monocytes isolated from healthy volunteers were incubated with interleukin (IL)-4 and granulocyte-macrophage colony-stimulating factor in the presence of culture supernatants from neuroblastoma cell lines. The culture supernatants from neuroblastoma cell lines, such as NLF and GOTO, partially blocked both downregulation of CD14 and upregulation of CD1a, and dramatically decreased IL-12 and tumor necrosis factor (TNF)-α production from mature DC, while no effect of SH-SY5Y cell supernatant was noted. In addition, IL-6 and IL-10 production from monocytes was increased by the supernatants of NLF and GOTO cells at 24 hours after incubation. Furthermore, we evaluated DC functions through stimulation of invariant natural killer T (iNKT) cells. α-Galactosylceramide-pulsed DC co-cultured with supernatants of NLF cells were unable to sufficiently stimulate iNKT cells. The decreased ability of iNKT cells to produce interferon (IFN)-γ after stimulation with neuroblastoma cell line supernatant-cultured DC was reversed by addition of IL-12. CD40 expression and IL-12 production in NLF-sup-treated DC were increased by addition of exogenous IFN-γ. These results indicate that tolerogenic DC are induced in the neuroblastoma tumor microenvironment and attenuate the antitumor effects of iNKT cells. Interactions between iNKT cells and αGalCer-pulsed DC have the potential to restore the immunosuppression of tolerogenic DC through IFN-γ production.
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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