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Microenvironmental Th9 and Th17 lymphocytes induce metastatic spreading in lung cancer.
Salazar, Ylia; Zheng, Xiang; Brunn, David; Raifer, Hartmann; Picard, Felix; Zhang, Yajuan; Winter, Hauke; Guenther, Stefan; Weigert, Andreas; Weigmann, Benno; Dumoutier, Laure; Renauld, Jean-Christophe; Waisman, Ari; Schmall, Anja; Tufman, Amanda; Fink, Ludger; Brüne, Bernhard; Bopp, Tobias; Grimminger, Friedrich; Seeger, Werner; Pullamsetti, Soni Savai; Huber, Magdalena; Savai, Rajkumar.
Afiliação
  • Salazar Y; Max Planck Institute for Heart and Lung Research, Department of Lung Development and Remodeling, member of the German Center for Lung Research (DZL), member of Cardio-Pulmonary Institute (CPI), Bad Nauheim, Germany.
  • Zheng X; Max Planck Institute for Heart and Lung Research, Department of Lung Development and Remodeling, member of the German Center for Lung Research (DZL), member of Cardio-Pulmonary Institute (CPI), Bad Nauheim, Germany.
  • Brunn D; Max Planck Institute for Heart and Lung Research, Department of Lung Development and Remodeling, member of the German Center for Lung Research (DZL), member of Cardio-Pulmonary Institute (CPI), Bad Nauheim, Germany.
  • Raifer H; Institute for Medical Microbiology and.
  • Picard F; CoreFacility Flow Cytometry, University of Marburg, Marburg, Germany.
  • Zhang Y; Institute for Medical Microbiology and.
  • Winter H; Institute for Medical Microbiology and.
  • Guenther S; Translational Research Unit, Thoraxklinik at Heidelberg University, member of the DZL, Heidelberg, Germany.
  • Weigert A; Bioinformatics and Deep Sequencing Platform, Max Planck Institute for Heart and Lung Research, Bad Nauheim, Germany.
  • Weigmann B; Institute of Biochemistry I, Faculty of Medicine, Goethe University Frankfurt, Frankfurt, Germany.
  • Dumoutier L; Department of Medicine 1, Friedrich-Alexander University Erlangen-Nuremberg, Erlangen, Germany.
  • Renauld JC; de Duve Institute, Université Catholique de Louvain, Brussels, Belgium.
  • Waisman A; de Duve Institute, Université Catholique de Louvain, Brussels, Belgium.
  • Schmall A; Institute for Molecular Medicine, University Medical Center of the Johannes Gutenberg University of Mainz, Mainz, Germany.
  • Tufman A; Max Planck Institute for Heart and Lung Research, Department of Lung Development and Remodeling, member of the German Center for Lung Research (DZL), member of Cardio-Pulmonary Institute (CPI), Bad Nauheim, Germany.
  • Fink L; Respiratory Medicine and Thoracic Oncology, Internal Medicine V, Ludwig-Maximilians-University of Munich and Thoracic Oncology Centre, member of the DZL, Munich, Germany.
  • Brüne B; Institute of Pathology and Cytology, Wetzlar, Germany.
  • Bopp T; Institute of Biochemistry I, Faculty of Medicine, Goethe University Frankfurt, Frankfurt, Germany.
  • Grimminger F; Frankfurt Cancer Institute, Goethe University, Frankfurt am Main, Germany.
  • Seeger W; Institute for Immunology, University Medical Center of the Johannes Gutenberg-University, Mainz, Germany. Research Center for Immunotherapy and University Medical Center, Johannes Gutenberg-University, Mainz, Germany. German Cancer Consortium, Heidelberg, Germany.
  • Pullamsetti SS; Department of Internal Medicine, member of the DZL, member of CPI, Justus Liebig University, Giessen, Germany.
  • Huber M; Max Planck Institute for Heart and Lung Research, Department of Lung Development and Remodeling, member of the German Center for Lung Research (DZL), member of Cardio-Pulmonary Institute (CPI), Bad Nauheim, Germany.
  • Savai R; Department of Internal Medicine, member of the DZL, member of CPI, Justus Liebig University, Giessen, Germany.
J Clin Invest ; 130(7): 3560-3575, 2020 07 01.
Article em En | MEDLINE | ID: mdl-32229721
Immune microenvironment plays a critical role in lung cancer control versus progression and metastasis. In this investigation, we explored the effect of tumor-infiltrating lymphocyte subpopulations on lung cancer biology by studying in vitro cocultures, in vivo mouse models, and human lung cancer tissue. Lymphocyte conditioned media (CM) induced epithelial-mesenchymal transition (EMT) and migration in both primary human lung cancer cells and cell lines. Correspondingly, major accumulation of Th9 and Th17 cells was detected in human lung cancer tissue and correlated with poor survival. Coculturing lung cancer cells with Th9/Th17 cells or exposing them to the respective CM induced EMT in cancer cells and modulated the expression profile of genes implicated in EMT and metastasis. These features were reproduced by the signatory cytokines IL-9 and IL-17, with gene regulatory profiles evoked by these cytokines partly overlapping and partly complementary. Coinjection of Th9/Th17 cells with tumor cells in WT, Rag1-/-, Il9r-/-, and Il17ra-/- mice altered tumor growth and metastasis. Accordingly, inhibition of IL-9 or IL-17 cytokines by neutralizing antibodies decreased EMT and slowed lung cancer progression and metastasis. In conclusion, Th9 and Th17 lymphocytes induce lung cancer cell EMT, thereby promoting migration and metastatic spreading and offering potentially novel therapeutic strategies.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Movimento Celular / Células Th17 / Transição Epitelial-Mesenquimal / Microambiente Tumoral / Neoplasias Pulmonares Tipo de estudo: Prognostic_studies Limite: Animals / Humans Idioma: En Revista: J Clin Invest Ano de publicação: 2020 Tipo de documento: Article País de afiliação: Alemanha País de publicação: Estados Unidos

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Movimento Celular / Células Th17 / Transição Epitelial-Mesenquimal / Microambiente Tumoral / Neoplasias Pulmonares Tipo de estudo: Prognostic_studies Limite: Animals / Humans Idioma: En Revista: J Clin Invest Ano de publicação: 2020 Tipo de documento: Article País de afiliação: Alemanha País de publicação: Estados Unidos