123 research outputs found

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    Influence des caractéristiques morphologiques et mutationnelles des carcinomes pulmonaires sur leur environnement immunitaire et leur pronostic

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    Il est maintenant bien établi que le système immunitaire joue un rôle majeur dans le contrôle des tumeurs, y compris dans les carcinomes pulmonaires. Cependant, les interactions entre les cellules tumorales et les cellules immunitaires du microenvironnement tumoral sont mal connues. Dans ce travail, nous avons étudié les caractéristiques morphologiques et moléculaires des cellules tumorales provenant d adénocarcinomes pulmonaires et leur association avec la composition du microenvironnement immunitaire. Nous avons rapporté la valeur pronostique des paramètres morphologiques de ces tumeurs, comme le grade histologique des adénocarcinomes, et leur association avec le statut moléculaire EGFR et KRAS. Nous avons émis l hypothèse que la diversité morphologique et moléculaire de ces tumeurs pouvait être associée à une signature immunitaire intra-tumorale spécifique et que cela pourrait avoir un impact pronostique. Nous avons mis en évidence que la densité des cellules dendritiques matures, situées au sein de structures lymphoïdes tertiaires, variait en fonction du statut moléculaire EGFR et KRAS des tumeurs. De même, l impact pronostique des cellules dendritiques matures et des lymphocytes CD8+ variait en fonction du statut moléculaire des tumeurs. Nous avons également retrouvé la valeur pronostique de l environnement immunitaire, représenté par la densité en cellules dendritiques matures et en lymphocytes CD8+, sur la survie à long terme des carcinomes pulmonaires de stade III-N2 opérés après chimiothérapie néoadjuvante. Enfin, nous avons démontré que la chimiothérapie n'est pas associée à de profondes modifications de l infiltrat immunitaire, alors qu elle entraîne des modifications des cellules tumorales. L ensemble de ces résultats suggère que l infiltrat immunitaire est intimement lié à la cellule tumorale et que la composition du microenvironnement immunitaire varie avec les caractéristiques de la tumeur. Cette interaction entre les cellules tumorales et les cellules immunitaires contribue au pronostic de ces tumeurs. Ces données démontrent l intérêt d utiliser des traitements combinant des drogues cytotoxiques, telle la chimiothérapie conventionnelle, à des traitements immunomodulateurs permettant de favoriser une réponse immunitaire anti-tumorale efficace.The major role of the immune system against tumor development is now clearly established, including lung carcinoma. Nevertheless, interaction between tumoral cells and immune environment is less well-defined. In that study, we have studied morphological and molecular tumoral cells characteristics from lung adenocarcinoma and their role in the composition of immune environment. We reported the prognostic value of morphological parameters, as histological grade of adenocarcinoma, and their association with molecular EGFR and KRAS status. We hypothesized that morphological and molecular diversity of these tumors could be associated with a specific intratumoral immune signature, and could have an impact in prognosis. We showed that mature dendritic cells density, located in tertiary lymphoid structures, differed according to EGFR and KRAS status. Morever, molecular status of tumors modified the pronostic value of mature dendritics cells and CD8+ T cells. We found a prognostic value of immune environment, represented by dendritic cells and T CD8+ cells, in operated stage III-N2 lung carcinomas treated by neoadjuvant chemotherapy. At last, we demonstrated that chemotherapy is not associated with wide modifications in immune infiltrate, whereas it induced modifications in tumoral cells. All together, these data strongly argue for a close link between tumoral cells and immune environment, which seems to depend on tumoral cell characteristics. This interaction between tumoral cells and immune cells contribute to the prognosis of these tumors. These results show the evidence that combine cytotoxic treatment, like conventional chemotherapy, with immunomodulators, favour a protective anti-tumor immune response.PARIS5-Bibliotheque electronique (751069902) / SudocSudocFranceF

    Early T Cell Signalling Is Reversibly Altered in PD-1+ T Lymphocytes Infiltrating Human Tumors

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    To improve cancer immunotherapy, a better understanding of the weak efficiency of tumor-infiltrating T lymphocytes (TIL) is necessary. We have analyzed the functional state of human TIL immediately after resection of three types of tumors (NSCLC, melanoma and RCC). Several signalling pathways (calcium, phosphorylation of ERK and Akt) and cytokine secretion are affected to different extents in TIL, and show a partial spontaneous recovery within a few hours in culture. The global result is an anergy that is quite distinct from clonal anergy induced in vitro, and closer to adaptive tolerance in mice. PD-1 (programmed death -1) is systematically expressed by TIL and may contribute to their anergy by its mere expression, and not only when it interacts with its ligands PD-L1 or PD-L2, which are not expressed by every tumor. Indeed, the TCR-induced calcium and ERK responses were reduced in peripheral blood T cells transfected with PD-1. Inhibition by sodium stibogluconate of the SHP-1 and SHP-2 phosphatases that associate with several inhibitory receptors including PD-1, relieves part of the anergy apparent in TIL or in PD-1-transfected T cells. This work highlights some of the molecular modifications contributing to functional defects of human TIL

    Prognostic impact of vitamin B6 metabolism in lung cancer

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    Patients with non-small cell lung cancer (NSCLC) are routinely treated with cytotoxic agents such as cisplatin. Through a genome-wide siRNA-based screen, we identified vitamin B6 metabolism as a central regulator of cisplatin responses in vitro and in vivo. By aggravating a bioenergetic catastrophe that involves the depletion of intracellular glutathione, vitamin B6 exacerbates cisplatin-mediated DNA damage, thus sensitizing a large panel of cancer cell lines to apoptosis. Moreover, vitamin B6 sensitizes cancer cells to apoptosis induction by distinct types of physical and chemical stress, including multiple chemotherapeutics. This effect requires pyridoxal kinase (PDXK), the enzyme that generates the bioactive form of vitamin B6. In line with a general role of vitamin B6 in stress responses, low PDXK expression levels were found to be associated with poor disease outcome in two independent cohorts of patients with NSCLC. These results indicate that PDXK expression levels constitute a biomarker for risk stratification among patients with NSCLC.publishedVersio

    New Therapeutic Strategies for Lung Cancer

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    Non-small cell lung cancer (NSCLC) accounts for approximately 27% of all cancer-related deaths worldwide, thus representing a major health problem [...
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