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Tumor Transplantation for Assessing the Dynamics of Tumor-Infiltrating CD8+ T Cells in Mice
Published on: June 12, 2021
Activin-A impairs CD8 T cell-mediated immunity and immune checkpoint therapy response in melanoma
Katarina Pinjusic1, Olivier Andreas Dubey1, Olga Egorova1
1School of Life Sciences (SV), ISREC, Ecole Polytechnique Federale de Lausanne, Lausanne, Switzerland.
Background:
Activin-A, a transforming growth factor β family member, is secreted by many cancer types and is often associated with poor disease prognosis. Previous studies have shown that Activin-A expression can promote cancer progression and reduce the intratumoral frequency of cytotoxic T cells. However, the underlying mechanisms and the significance of Activin-A expression for cancer therapies are unclear.
Methods:
We analyzed the expression of the Activin-A encoding gene INHBA in melanoma patients and the influence of its gain- or loss-of-function on the immune infiltration and growth of BRAF-driven YUMM3.3 and iBIP2 mouse melanoma grafts and in B16 models. Using antibody depletion strategies, we investigated the dependence of Activin-A tumor-promoting effect on different immune cells. Immune-regulatory effects of Activin-A were further characterized in vitro and by an adoptive transfer of T cells. Finally, we assessed INHBA expression in melanoma patients who received immune checkpoint therapy and tested whether it impairs the response in preclinical models.
Results:
We show that Activin-A secretion by melanoma cells inhibits adaptive antitumor immunity irrespective of BRAF status by inhibiting CD8+ T cell infiltration indirectly and even independently of CD4 T cells, at least in part by attenuating the production of CXCL9/10 by myeloid cells. In addition, we show that Activin-A/INHBA expression correlates with anti-PD1 therapy resistance in melanoma patients and impairs the response to dual anti-cytotoxic T-Lymphocyte associated protein 4/anti-PD1 treatment in preclinical models.
Conclusions:
Our findings suggest that strategies interfering with Activin-A induced immune-regulation offer new therapeutic opportunities to overcome CD8 T cell exclusion and immunotherapy resistance.
Insights
Activin-A secreted by melanoma inhibits anti-tumor immunity by reducing CD8+ T cell infiltration and is linked to immunotherapy resistance. Targeting Activin-A may improve cancer treatment outcomes.
Area of Science:
- Immunology
- Oncology
- Molecular Biology
Background:
- Activin-A, a TGF-β family member, is linked to poor cancer prognosis and progression.
- Its role in promoting cancer and reducing cytotoxic T cells is known, but mechanisms remain unclear.
- Understanding Activin-A's impact on cancer therapies is crucial.
Purpose of the Study:
- To investigate the role of Activin-A in melanoma immune infiltration and tumor growth.
- To elucidate the mechanisms by which Activin-A affects anti-tumor immunity.
- To assess the correlation between Activin-A expression and response to immune checkpoint therapy.
Main Methods:
- Analyzed INHBA gene expression in melanoma patients.
- Studied gain- and loss-of-function effects on melanoma models.
- Utilized antibody depletion to identify immune cell dependence.
- Performed in vitro and adoptive T cell transfer experiments.
- Assessed INHBA in patients receiving immune checkpoint therapy.
Main Results:
- Activin-A inhibits adaptive anti-tumor immunity by reducing CD8+ T cell infiltration, partly by affecting myeloid cell CXCL9/10 production.
- This effect is independent of BRAF status and CD4 T cells.
- Activin-A/INHBA expression correlates with resistance to anti-PD1 therapy in melanoma patients.
- It also impairs response to combined CTLA-4/PD-1 blockade in preclinical models.
Conclusions:
- Activin-A negatively regulates anti-tumor immunity, contributing to CD8 T cell exclusion.
- Strategies targeting Activin-A-mediated immune regulation could overcome immunotherapy resistance.
- This offers potential new therapeutic avenues for melanoma treatment.
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