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Interferon-γ: teammate or opponent in the tumour microenvironment?
by
Workman, Creg J
, Gocher, Angela M
, Vignali, Dario A. A
in
Cancer immunotherapy
/ Chemotherapy
/ Cytokines
/ Immune clearance
/ Immune response
/ Immunotherapy
/ Interferon
/ Lymphocytes T
/ Microenvironments
/ Natural killer cells
/ Signal transduction
/ Tumor microenvironment
/ Tumors
/ γ-Interferon
2022
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Interferon-γ: teammate or opponent in the tumour microenvironment?
by
Workman, Creg J
, Gocher, Angela M
, Vignali, Dario A. A
in
Cancer immunotherapy
/ Chemotherapy
/ Cytokines
/ Immune clearance
/ Immune response
/ Immunotherapy
/ Interferon
/ Lymphocytes T
/ Microenvironments
/ Natural killer cells
/ Signal transduction
/ Tumor microenvironment
/ Tumors
/ γ-Interferon
2022
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Do you wish to request the book?
Interferon-γ: teammate or opponent in the tumour microenvironment?
by
Workman, Creg J
, Gocher, Angela M
, Vignali, Dario A. A
in
Cancer immunotherapy
/ Chemotherapy
/ Cytokines
/ Immune clearance
/ Immune response
/ Immunotherapy
/ Interferon
/ Lymphocytes T
/ Microenvironments
/ Natural killer cells
/ Signal transduction
/ Tumor microenvironment
/ Tumors
/ γ-Interferon
2022
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Interferon-γ: teammate or opponent in the tumour microenvironment?
Journal Article
Interferon-γ: teammate or opponent in the tumour microenvironment?
2022
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Overview
Cancer immunotherapy offers substantive benefit to patients with various tumour types, in some cases leading to complete tumour clearance. However, many patients do not respond to immunotherapy, galvanizing the field to define the mechanisms of pre-existing and acquired resistance. Interferon-γ (IFNγ) is a cytokine that has both protumour and antitumour activities, suggesting that it may serve as a nexus for responsiveness to immunotherapy. Many cancer immunotherapies and chemotherapies induce IFNγ production by various cell types, including activated T cells and natural killer cells. Patients resistant to these therapies commonly have molecular aberrations in the IFNγ signalling pathway or express resistance molecules driven by IFNγ. Given that all nucleated cells can respond to IFNγ, the functional consequences of IFNγ production need to be carefully dissected on a cell-by-cell basis. Here, we review the cells that produce IFNγ and the different effects of IFNγ in the tumour microenvironment, highlighting the pleiotropic nature of this multifunctional and abundant cytokine.Vignali and colleagues discuss the pleiotropic roles of interferon-γ (IFNγ) in the tumour microenvironment; on the one hand, it acts as a ‘teammate’ to promote antitumour immune responses and, on the other hand, it acts as an ‘opponent’ promoting tumour growth and suppressing immune responses.
Publisher
Nature Publishing Group
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