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Interferon-α Up-Regulates the Expression of PD-L1 Molecules on Immune Cells Through STAT3 and p38 Signaling
Alexandr V Bazhin1,2, Katharina von Ahn3, Jasmin Fritz3
1Department of General, Visceral, and Transplant Surgery, Ludwig-Maximilians-University Munich, Munich, Germany.
Abstract:
Interferon-α (IFNα) has one of the longest histories of use amongst cytokines in clinical oncology and has been applied for the treatment of many types of cancers. Due to its immune-activating properties, IFNα is also an attractive candidate for combinatory anti-cancer therapies. Despite its extensive use in animal tumor models as well as in several clinical trials, the different mechanisms underlying patient responses and affecting desirable clinical benefits are still under investigation. Here we show that in addition to its immune-activating properties, IFNα induces the expression of a key negative regulator, immunosuppressive PD-L1 molecule, in the majority of the specific immune cell populations, particularly in the dendritic cells (DC). DC can modulate immune responses by a variety of mechanisms, including expression of T-cell regulatory molecules and cytokines. Our results showed that treatment of DC with IFNα-2b led to pronounced up-regulation of surface expression of PD-L1 molecules, increased IL-6 and decreased IL-12 production. Moreover, we present evidence that IFNα-treated DC exhibited a reduced capacity to stimulate interferon-γ production in T cells compared to control DC. This T-cell response after treatment of DC with IFNα was recovered by a pre-treatment with an anti-PD-L1 blocking antibody. Further analyses revealed that IFNα regulated PD-L1 expression through the STAT3 and p38 signaling pathways, since blocking of STAT3 and p38 activation with specific inhibitors prevented PD-L1 up-regulation. Our findings underline the important roles of p38 and STAT3 in the regulation of PD-L1 expression and prove that IFNα induces STAT3/p38-mediated expression of PD-L1 and thereby a reduced stimulatory ability of DC. The augmentation of PD-L1 expression in immune cells through IFNα treatment should be considered by use of IFNα in an anti-cancer therapy.
Insights
Interferon-alfa (IFNα) cancer therapy can suppress anti-tumor immunity by increasing PD-L1 expression on dendritic cells. Blocking PD-L1 may restore T-cell responses, improving IFNα efficacy.
Area of Science:
- Immunology
- Cancer Biology
- Molecular Signaling
Background:
- Interferon-alfa (IFNα) is a cytokine with a long history in clinical oncology.
- IFNα's immune-activating properties make it a candidate for combination cancer therapies.
- Mechanisms underlying IFNα's clinical benefits and patient responses are still being investigated.
Purpose of the Study:
- To investigate the effect of IFNα on immune cell populations, specifically dendritic cells (DCs).
- To elucidate the role of IFNα in regulating PD-L1 expression and its impact on T-cell responses.
- To identify the signaling pathways involved in IFNα-induced PD-L1 expression.
Main Methods:
- Treatment of dendritic cells with Interferon-alfa-2b.
- Analysis of surface expression of PD-L1, IL-6, and IL-12.
- Assessment of T-cell stimulation capacity and interferon-gamma production.
- Inhibition of STAT3 and p38 signaling pathways.
Main Results:
- IFNα treatment significantly upregulated PD-L1 on DCs, increased IL-6, and decreased IL-12 production.
- IFNα-treated DCs showed reduced ability to stimulate interferon-gamma production in T cells.
- Pre-treatment with an anti-PD-L1 antibody restored T-cell responses.
- STAT3 and p38 signaling pathways were identified as key mediators of IFNα-induced PD-L1 expression.
Conclusions:
- IFNα induces PD-L1 expression on DCs via STAT3 and p38 signaling pathways.
- This IFNα-induced PD-L1 upregulation contributes to reduced DC stimulatory capacity.
- The augmentation of PD-L1 by IFNα should be considered in anti-cancer therapy strategies.
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