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Original Research

Nitric oxide synthase 2 is involved in the pro-tumorigenic potential of γδ17 T cells in melanoma

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Article: e1208878 | Received 03 Jun 2016, Accepted 27 Jun 2016, Published online: 10 Aug 2016

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Daniëlle Verver, Vichnou Poirier-Colame, Gorana Tomasic, Khadija Cherif-Rebai, Dirk J. Grunhagen, Cornelis Verhoef, Stefan Suciu, Caroline Robert, Laurence Zitvogel & Alexander M.M. Eggermont. (2019) Upregulation of intratumoral HLA class I and peritumoral Mx1 in ulcerated melanomas. OncoImmunology 8:11.
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Laetitia Douguet, Lloyd Bod, Laura Labarthe, Renée Lengagne, Masashi Kato, Isabelle Couillin & Armelle Prévost-Blondel. (2018) Inflammation drives nitric oxide synthase 2 expression by γδ T cells and affects the balance between melanoma and vitiligo associated melanoma. OncoImmunology 7:9.
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Lloyd Bod, Renée Lengagne, Ludovic Wrobel, Jan Philipp Ramspott, Masashi Kato, Marie-Françoise Avril, Flavia Castellano, Valérie Molinier-Frenkel & Armelle Prévost-Blondel. (2017) IL4-induced gene 1 promotes tumor growth by shaping the immune microenvironment in melanoma. OncoImmunology 6:3.
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Articles from other publishers (24)

Yang Chen, Tingting Lu, Yufei Liu, Yongqi Liu, Shaocheng Bai, Qiuran Chen, Bohao Zhao & Xinsheng Wu. (2023) Establishment of SLC7A11‐knockout mouse and its preliminary investigation in melanoma. In Vitro Cellular & Developmental Biology - Animal 59:9, pages 729-737.
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Palak P. Oza & Khosrow Kashfi. (2023) The Triple Crown: NO, CO, and H2S in cancer cell biology. Pharmacology & Therapeutics 249, pages 108502.
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Brayden K. Leyva & Benjamin Bonavida. 2023. Nitric Oxide in Health and Disease. Nitric Oxide in Health and Disease 151 172 .
Taranom Mobasheri & Nima Rezaei. 2022. Handbook of Cancer and Immunology. Handbook of Cancer and Immunology 1 27 .
Gourav Chandan, Adesh K. Saini, Reena Kumari, Sasanka Chakrabarti, Amit Mittal, Anil Kumar Sharma & Reena V. Saini. (2022) The exploitation of enzyme-based cancer immunotherapy. Human Cell 36:1, pages 98-120.
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Susann Schönefeldt, Tamara Wais, Marco Herling, Satu Mustjoki, Vasileios Bekiaris, Richard Moriggl & Heidi A. Neubauer. (2021) The Diverse Roles of γδ T Cells in Cancer: From Rapid Immunity to Aggressive Lymphoma. Cancers 13:24, pages 6212.
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Khosrow Kashfi, Jasmine Kannikal & Niharika Nath. (2021) Macrophage Reprogramming and Cancer Therapeutics: Role of iNOS-Derived NO. Cells 10:11, pages 3194.
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Anna Maria Corsale, Marta Di Simone, Elena Lo Presti, Carmela Picone, Francesco Dieli & Serena Meraviglia. (2021) Metabolic Changes in Tumor Microenvironment: How Could They Affect γδ T Cells Functions?. Cells 10:11, pages 2896.
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Zhaonian Hao, Ruyuan Li, Yuanyuan Wang, Shuangying Li, Zhenya Hong & Zhiqiang Han. (2021) Landscape of Myeloid-derived Suppressor Cell in Tumor Immunotherapy. Biomarker Research 9:1.
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Inesa Navasardyan & Benjamin Bonavida. (2021) Regulation of T Cells in Cancer by Nitric Oxide. Cells 10:10, pages 2655.
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Flavia Castellano & Valérie Molinier-Frenkel. (2020) Control of T-Cell Activation and Signaling by Amino-Acid Catabolizing Enzymes. Frontiers in Cell and Developmental Biology 8.
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Faizan H. Khan, Eoin Dervan, Dibyangana D. Bhattacharyya, Jake D. McAuliffe, Katrina M. Miranda & Sharon A. Glynn. (2020) The Role of Nitric Oxide in Cancer: Master Regulator or NOt?. International Journal of Molecular Sciences 21:24, pages 9393.
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Ramish Riaz, Shah Rukh Abbas & Maria Shabbir. 2020. 'Essentials of Cancer Genomic, Computational Approaches and Precision Medicine. 'Essentials of Cancer Genomic, Computational Approaches and Precision Medicine 171 196 .
Jon PeÑarando, Enrique Aranda & Antonio RodrÍguez-Ariza. (2019) Immunomodulatory roles of nitric oxide in cancer: tumor microenvironment says “NO” to antitumor immune response. Translational Research 210, pages 99-108.
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Bruno Silva-Santos, Sofia Mensurado & Seth B. Coffelt. (2019) γδ T cells: pleiotropic immune effectors with therapeutic potential in cancer. Nature Reviews Cancer 19:7, pages 392-404.
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Sharon A Glynn. (2019) Emerging novel mechanisms of action for nitric oxide in cancer progression. Current Opinion in Physiology 9, pages 18-25.
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Qingjie Xue, Yingchun Yan, Ruihua Zhang & Huabao Xiong. (2018) Regulation of iNOS on Immune Cells and Its Role in Diseases. International Journal of Molecular Sciences 19:12, pages 3805.
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Barbara Castella, Myriam Foglietta, Chiara Riganti & Massimo Massaia. (2018) Vγ9Vδ2 T Cells in the Bone Marrow of Myeloma Patients: A Paradigm of Microenvironment-Induced Immune Suppression. Frontiers in Immunology 9.
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Almudena García-Ortiz & Juan M. Serrador. (2018) Nitric Oxide Signaling in T Cell-Mediated Immunity. Trends in Molecular Medicine 24:4, pages 412-427.
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Ruth S.E. Tamadaho, Achim Hoerauf & Laura E. Layland. (2018) Immunomodulatory effects of myeloid-derived suppressor cells in diseases: Role in cancer and infections. Immunobiology 223:4-5, pages 432-442.
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Keerthi Yarlagadda, John Hassani, Isaac P. Foote & Joseph Markowitz. (2017) The role of nitric oxide in melanoma. Biochimica et Biophysica Acta (BBA) - Reviews on Cancer 1868:2, pages 500-509.
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Guranda Chitadze, Hans-Heinrich Oberg, Daniela Wesch & Dieter Kabelitz. (2017) The Ambiguous Role of γδ T Lymphocytes in Antitumor Immunity. Trends in Immunology 38:9, pages 668-678.
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Priscilla S. Redd, Mohammed L. Ibrahim, John D. Klement, Sarah K. Sharman, Amy V. Paschall, Dafeng Yang, Asha Nayak-Kapoor & Kebin Liu. (2017) SETD1B Activates iNOS Expression in Myeloid-Derived Suppressor Cells. Cancer Research 77:11, pages 2834-2843.
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Laetitia Douguet, Julien Cherfils-Vicini, Lloyd Bod, Ren?e Lengagne, Eric Gilson & Armelle Pr?vost-Blondel. (2016) Nitric Oxide Synthase 2 Improves Proliferation and Glycolysis of Peripheral ?? T Cells. PLOS ONE 11:11, pages e0165639.
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