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Updated: Feb 3, 2026

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Published on: January 19, 2019
Apigenin suppresses PD-L1 expression in melanoma and host dendritic cells to elicit synergistic therapeutic effects
Lu Xu1,2, Yang Zhang1,3, Kang Tian1,4
1The Second Affiliated Hospital, Institute of Cancer Stem Cell, Dalian Medical University, Dalian, China.
Background:
The PD-L1/PD-1 pathway blockade-mediated immune therapy has shown promising efficacy in the treatment of multiple cancers including melanoma. The present study investigated the effects of the flavonoid apigenin on the PD-L1 expression and the tumorigenesis of melanoma.
Methods:
The influence of flavonoids on melanoma cell growth and apoptosis was investigated using cell proliferation and flow cytometric analyses. The differential IFN-γ-induced PD-L1 expression and STAT1 activation were examined in curcumin and apigenin-treated melanoma cells using immunoblotting or immunofluorescence assays. The effects of flavonoid treatment on melanoma sensitivity towards T cells were investigated using Jurkat cell killing, cytotoxicity, cell viability, and IL-2 secretion assays. Melanoma xenograft mouse model was used to assess the impact of flavonoids on tumorigenesis in vivo. Human peripheral blood mononuclear cells were used to examine the influence of flavonoids on PD-L1 expression in dendritic cells and cytotoxicity of cocultured cytokine-induced killer cells by cell killing assays.
Results:
Curcumin and apigenin showed growth-suppressive and pro-apoptotic effects on melanoma cells. The IFN-γ-induced PD-L1 upregulation was significantly inhibited by flavonoids, especially apigenin, with correlated reductions in STAT1 phosphorylation. Apigenin-treated A375 cells exhibited increased sensitivity towards T cell-mediated killing. Apigenin also strongly inhibited A375 melanoma xenograft growth in vivo, with enhanced T cell infiltration into tumor tissues. PD-L1 expression in dendritic cells was reduced by apigenin, which potentiated the cytotoxicity of cocultured cytokine-induced killer cells against melanoma cells.
Conclusions:
Apigenin restricted melanoma growth through multiple mechanisms, among which its suppression of PD-L1 expression exerted a dual effect via regulating both tumor and antigen presenting cells. Our findings provide novel insights into the anticancer effects of apigenin and might have potential clinical implications.
Insights
The flavonoid apigenin inhibits melanoma growth by reducing PD-L1 expression on tumor and immune cells. This natural compound offers a potential new strategy for melanoma treatment.
Area of Science:
- Immunology
- Oncology
- Pharmacology
Background:
- Immune checkpoint inhibitors targeting the PD-L1/PD-1 pathway show efficacy in melanoma.
- The role of flavonoids, like apigenin, in modulating this pathway in melanoma is not well understood.
Purpose of the Study:
- To investigate the effects of apigenin on PD-L1 expression and melanoma cell tumorigenesis.
- To explore apigenin's potential as an immunotherapeutic agent for melanoma.
Main Methods:
- Cell proliferation, apoptosis, immunoblotting, immunofluorescence, and flow cytometry assays were used.
- In vivo studies involved a melanoma xenograft mouse model.
- Immune cell assays assessed T cell-mediated killing and cytokine-induced killer cell activity.
Main Results:
- Apigenin demonstrated growth-suppressive and pro-apoptotic effects on melanoma cells.
- Apigenin significantly inhibited IFN-γ-induced PD-L1 upregulation and STAT1 activation.
- Apigenin enhanced T cell-mediated killing of melanoma cells and reduced tumor growth in vivo.
Conclusions:
- Apigenin restricts melanoma growth via multiple mechanisms, including suppression of PD-L1 expression on tumor and antigen-presenting cells.
- Apigenin's dual action on tumor and immune cells suggests potential clinical applications in melanoma immunotherapy.
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