132 research outputs found

    Définition des interactions entre l’immunité innée et adaptative pendant l’infection aiguë par le virus de l’hépatite C (VHC)

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    La majorité des individus exposés au virus de l’hépatite C (VHC) développent une infection chronique. Une réponse immunitaire adaptative forte et soutenue est associée avec la guérison spontanée du VHC, mais les mécanismes sous-jacents demeurent mal définis. Le rôle des cellules NK et des cellules dendritiques (DC) dans la guérison spontanée du VHC est encore méconnu. Les cellules NK sont la population effectrice la plus importante de l’immunité innée car elles tuent les cellules infectées et sécrètent diverses cytokines. Les DC reconnaissent des agents infectieux et elles sont les premières à initier et réguler l’immunité adaptative. Les cellules NK et les DC interagissent également entre elles afin de réguler l’immunité innée et adaptative. L’hypothèse du projet de doctorat est que l'activité des cellules NK pendant la phase aiguë de l'infection par le VHC module la fonction des DC afin que ces dernières puissent générer une réponse immunitaire adaptative capable d'éliminer le VHC. Le premier objectif était d’établir une corrélation entre l'activité des cellules NK et l'évolution de l'infection au VHC. Nous avons observé une augmentation de la cytotoxicité, mais une diminution de la sécrétion de cytokines par les cellules NK chez les patients chroniques et qui ont résolu spontanément pendant la phase aiguë en comparaison aux contrôles non infectés, démontrant alors une dissociation entre ces deux fonctions. Nos résultats suggèrent que les cellules NK sont activées pendant la phase aiguë indépendamment de l’évolution de l’infection. Le deuxième objectif était d’établir une corrélation entre le phénotype et la fonction des DC, et l'évolution de l'infection. Nous avons d’abord observé que les DC plasmacytoïdes de tous les patients infectés ont un phénotype plus immature que les contrôles, et que ce phénotype est plus prononcé chez les patients ayant résolu spontanément. De plus, en réponse à des stimulations, nous avons observé que pendant la phase aiguë précoce, les DC myéloïdes (mDC) de tous les patients infectés indépendamment de l’évolution de l’infection produisent davantage de cytokines en comparaison aux contrôles. Cependant, cette hyperréactivité n’est pas soutenue au cours de l’évolution chronique. Le troisième objectif était d’établir une corrélation entre les interactions NK/DC et l’évolution de l’infection. Nous avons étudié la capacité des cellules NK à lyser les DC potentiellement tolérogéniques, ainsi que la capacité des DC matures à activer les cellules NK, et nous avons observé aucune différence entre les patients infectés et les contrôles. Finalement, nous avons démontré pour la première fois la capacité des DC immatures à inhiber la fonction des cellules NK. En conclusion, nous avons démontré que les cellules NK sont activées pendant la phase aiguë de l’infection par le VHC indépendamment de l’évolution de l’infection. De plus, la capacité des cellules NK à éliminer les DC potentiellement tolérogéniques est intacte. Finalement, les mDC sont hyperréactives pendant la phase aiguë de l’infection, mais cette hyperréactivité n’est pas soutenue avec la persistance de l’infection. Cette perte d’hyperréactivité des mDC ne semble pas affecter la capacité des DC à activer les cellules NK, mais elle pourrait jouer un rôle dans l’inefficacité de l’immunité adaptative à éliminer le VHC.The majority of individuals exposed to the hepatitis C virus (HCV) develop a chronic infection. It is known that a strong and sustained adaptive immune response is associated with the spontaneous clearance of HCV, however the underlying mechanisms are not well defined. The role of natural killer (NK) cells and dendritic cells (DCs) during the spontaneous resolution of HCV remains unknown. NK cells are the primary effector population of the innate immune response which are able to kill infected cells and secrete various cytokines. On the other hand, DCs are the first cell type to initiate and regulate adaptive immunity after recognizing infectious pathogens. NK cells and DCs can also interact reciprocally to further regulate innate and adaptive immunity. Our hypothesis is that NK cell activity during acute HCV will modulate DC function to prime a highly efficient adaptive immune response resulting in viral clearance. The first aim of my project was to establish a correlation between NK cell activity and the outcome of HCV infection. We observed increased NK cell cytotoxicity, but decreased cytokine secretion during acute HCV in patients with chronic evolution as well as spontaneous resolution, further demonstrating a dissociation between these two NK cell functions. Our results suggest that NK cells are activated during acute HCV infection regardless of infection outcome. The second aim was to establish a correlation between DC phenotype, function and the outcome of infection. We observed that plasmacytoid DCs (pDCs) from all HCV-infected patients have a more immature phenotype as compared to negative controls, yet this is more pronounced in spontaneous resolvers. Furthermore, we observed that during the early acute phase, myeloid DCs (mDCs) from all HCV-infected patients, regardless of outcome, have increased production of cytokines as compared to un-infected controls in response to stimulation. However, this hyperresponsiveness of mDCs is not sustained with chronic evolution. The third aim was to establish a correlation between the NK/DC cross-talk and infection outcome. We studied the capacity of NK cells to kill potentially tolerogenic DCs, as well as the capacity of mature DCs to activate NK cells, and we observed no major differences between different stages of HCV infection and un-infected controls. However, we obtained unprecedented data which suggests that immature DCs have the capacity to inhibit NK cell function. In conclusion, our results demonstrate that NK cells are activated during acute HCV infection regardless of its outcome. Furthermore, the capacity of NK cells to kill potentially tolerogenic DCs is intact for all groups of patients. Finally, mDCs are hyperresponsive during acute HCV, but this hyperresponsiveness is not sustained with persistence of viremia. The loss of mDC hyperresponsiveness does not seem to affect the capacity of DCs to activate NK cells, but might play a role in the capacity of DCs to prime a highly efficient adaptive immune response resulting in viral clearance

    Le "Transforming Growth Factor" (TGF)-a comme antigène tumoral potentiel pour le cancer du rein

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    Mémoire numérisé par la Direction des bibliothèques de l'Université de Montréal

    Knockout of Vdac1 activates hypoxia-inducible factor through reactive oxygen species generation and induces tumor growth by promoting metabolic reprogramming and inflammation

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    BACKGROUND: Mitochondria are more than just the powerhouse of cells; they dictate if a cell dies or survives. Mitochondria are dynamic organelles that constantly undergo fusion and fission in response to environmental conditions. We showed previously that mitochondria of cells in a low oxygen environment (hypoxia) hyperfuse to form enlarged or highly interconnected networks with enhanced metabolic efficacy and resistance to apoptosis. Modifications to the appearance and metabolic capacity of mitochondria have been reported in cancer. However, the precise mechanisms regulating mitochondrial dynamics and metabolism in cancer are unknown. Since hypoxia plays a role in the generation of these abnormal mitochondria, we questioned if it modulates mitochondrial function. The mitochondrial outer-membrane voltage-dependent anion channel 1 (VDAC1) is at center stage in regulating metabolism and apoptosis. We demonstrated previously that VDAC1 was post-translationally C-terminal cleaved not only in various hypoxic cancer cells but also in tumor tissues of patients with lung adenocarcinomas. Cells with enlarged mitochondria and cleaved VDAC1 were also more resistant to chemotherapy-stimulated cell death than normoxic cancer cells. RESULTS: Transcriptome analysis of mouse embryonic fibroblasts (MEF) knocked out for Vdac1 highlighted alterations in not only cancer and inflammatory pathways but also in the activation of the hypoxia-inducible factor-1 (HIF-1) signaling pathway in normoxia. HIF-1α was stable in normoxia due to accumulation of reactive oxygen species (ROS), which decreased respiration and glycolysis and maintained basal apoptosis. However, in hypoxia, activation of extracellular signal-regulated kinase (ERK) in combination with maintenance of respiration and increased glycolysis counterbalanced the deleterious effects of enhanced ROS, thereby allowing Vdac1 (-/-) MEF to proliferate better than wild-type MEF in hypoxia. Allografts of RAS-transformed Vdac1 (-/-) MEF exhibited stabilization of both HIF-1α and HIF-2α, blood vessel destabilization, and a strong inflammatory response. Moreover, expression of Cdkn2a, a HIF-1-target and tumor suppressor gene, was markedly decreased. Consequently, RAS-transformed Vdac1 (-/-) MEF tumors grew faster than wild-type MEF tumors. CONCLUSIONS: Metabolic reprogramming in cancer cells may be regulated by VDAC1 through vascular destabilization and inflammation. These findings provide new perspectives into the understanding of VDAC1 in the function of mitochondria not only in cancer but also in inflammatory diseases

    Young children's understanding of disabilities: the influence of development, context and cognition

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    Throughout Europe, educational support for children with disabilities has moved towards a model of inclusive education. Such policy changes mean that for all children there will be an increased likelihood of working with and encountering children with differing disabilities and difficulties. Previous research had indicated that children had poorly differentiated views of developmental differences. The present study investigated children?s representations of different disabilities. Seventy-nine 8-9 and 10-11 year old Greek children from an urban school and a rural school completed an attitudes toward school inclusion rating scale and a semi-structured interview. Responses to the attitude scale provided generally positive views of educational inclusion. However, children were less positive about activities that might directly reflect upon themselves. Children?s responses in the interviews indicated that they were developing rich representations of differences and diversities. Children had the greatest understanding of sensory and physical disabilities, followed by learning disabilities. There was limited knowledge of dyslexia and hyperactivity and no child was familiar with the term autism. Both groups of children identified a range of developmental difficulties, with older children being more aware of specific learning disabilities, their origin and impact. Results are discussed in terms of children?s developing knowledge systems and the implications for educational practices

    Altered Thymic Function during Interferon Therapy in HCV-Infected Patients

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    Interferon alpha (IFNα) therapy, despite good efficacy in curing HCV infection, leads to major side effects, in particular inducement of a strong peripheral T-cell lymphocytopenia. We here analyze the early consequences of IFNα therapy on both thymic function and peripheral T-cell homeostasis in patients in the acute or chronic phase of HCV-infection as well as in HIV/HCV co-infected patients. The evolution of T-cell subsets and T-cell homeostasis were estimated by flow cytometry while thymic function was measured through quantification of T-cell receptor excision circles (TREC) and estimation of intrathymic precursor T-cell proliferation during the first four months following the initiation of IFNα therapy. Beginning with the first month of therapy, a profound lymphocytopenia was observed for all T-cell subsets, including naïve T-cells and recent thymic emigrants (RTE), associated with inhibition of intrathymic precursor T-cell proliferation. Interleukin (IL)-7 plasma concentration rapidly dropped while lymphocytopenia progressed. This was neither a consequence of higher consumption of the cytokine nor due to its neutralization by soluble CD127. Decrease in IL-7 plasma concentration under IFNα therapy correlated with the decline in HCV viral load, thymic activity and RTE concentration in blood. These data demonstrate that IFNα-based therapy rapidly impacts on thymopoiesis and, consequently, perturbs T-cell homeostasis. Such a side effect might be detrimental for the continuation of IFNα therapy and may lead to an increased level of infectious risk, in particular in HIV/HCV co-infected patients. Altogether, this study suggests the therapeutic potential of IL-7 in the maintenance of peripheral T-cell homeostasis in IFNα-treated patients

    Human matrix metalloproteinases: An ubiquitarian class of enzymes involved in several pathological processes

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    Human matrix metalloproteinases (MMPs) belong to the M10 family of the MA clan of endopeptidases. They are ubiquitarian enzymes, structurally characterized by an active site where a Zn(2+) atom, coordinated by three histidines, plays the catalytic role, assisted by a glutamic acid as a general base. Various MMPs display different domain composition, which is very important for macromolecular substrates recognition. Substrate specificity is very different among MMPs, being often associated to their cellular compartmentalization and/or cellular type where they are expressed. An extensive review of the different MMPs structural and functional features is integrated with their pathological role in several types of diseases, spanning from cancer to cardiovascular diseases and to neurodegeneration. It emerges a very complex and crucial role played by these enzymes in many physiological and pathological processes

    Finishing the euchromatic sequence of the human genome

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    The sequence of the human genome encodes the genetic instructions for human physiology, as well as rich information about human evolution. In 2001, the International Human Genome Sequencing Consortium reported a draft sequence of the euchromatic portion of the human genome. Since then, the international collaboration has worked to convert this draft into a genome sequence with high accuracy and nearly complete coverage. Here, we report the result of this finishing process. The current genome sequence (Build 35) contains 2.85 billion nucleotides interrupted by only 341 gaps. It covers ∼99% of the euchromatic genome and is accurate to an error rate of ∼1 event per 100,000 bases. Many of the remaining euchromatic gaps are associated with segmental duplications and will require focused work with new methods. The near-complete sequence, the first for a vertebrate, greatly improves the precision of biological analyses of the human genome including studies of gene number, birth and death. Notably, the human enome seems to encode only 20,000-25,000 protein-coding genes. The genome sequence reported here should serve as a firm foundation for biomedical research in the decades ahead
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