945 resultados para Cd8 T Cell


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Cytotoxic T cells that are present in tumors and capable of recognizing tumor epitopes are nevertheless generally impotent in eliciting tumor rejection. Thus, identifying the immune escape mechanisms responsible for inducing tumor-specific CD8(+) T-cell dysfunction may reveal effective strategies for immune therapy. The inhibitory receptors PD-1 and Tim-3 are known to negatively regulate CD8(+) T-cell responses directed against the well-characterized tumor antigen NY-ESO-1. Here, we report that the upregulation of the inhibitory molecule BTLA also plays a critical role in restricting NY-ESO-1-specific CD8(+) T-cell expansion and function in melanoma. BTLA-expressing PD-1(+)Tim-3(-) CD8(+) T cells represented the largest subset of NY-ESO-1-specific CD8(+) T cells in patients with melanoma. These cells were partially dysfunctional, producing less IFN-γ than BTLA(-) T cells but more IFN-γ, TNF, and interleukin-2 than the highly dysfunctional subset expressing all three receptors. Expression of BTLA did not increase with higher T-cell dysfunction or upon cognate antigen stimulation, as it does with PD-1, suggesting that BTLA upregulation occurs independently of functional exhaustion driven by high antigen load. Added with PD-1 and Tim-3 blockades, BTLA blockade enhanced the expansion, proliferation, and cytokine production of NY-ESO-1-specific CD8(+) T cells. Collectively, our findings indicate that targeting BTLA along with the PD-1 and Tim-3 pathways is critical to reverse an important mechanism of immune escape in patients with advanced melanoma.

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Infiltration of cytotoxic T-lymphocytes in ovarian cancer is a favorable prognostic factor. Employing a differential expression approach, we have recently identified a number of genes associated with CD8+ T-cell infiltration in early stage ovarian tumors. In the present study, we validated by qPCR the expression of two genes encoding the transmembrane proteins GPC6 and TMEM132D in a cohort of early stage ovarian cancer patients. The expression of both genes correlated positively with the mRNA levels of CD8A, a marker of T-lymphocyte infiltration [Pearson coefficient: 0.427 (p = 0.0067) and 0.861 (p < 0.0001), resp.]. GPC6 and TMEM132D expression was also documented in a variety of ovarian cancer cell lines. Importantly, Kaplan-Meier survival analysis revealed that high mRNA levels of GPC6 and/or TMEM132D correlated significantly with increased overall survival of early stage ovarian cancer patients (p = 0.032). Thus, GPC6 and TMEM132D may serve as predictors of CD8+ T-lymphocyte infiltration and as favorable prognostic markers in early stage ovarian cancer with important consequences for diagnosis, prognosis, and tumor immunobattling.

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L’infection par le VIH-1 est caractérisée par une déplétion progressive des cellules T CD4+ ainsi que par un dysfonctionnement des cellules T qui, en l’absence de traitements anti-rétroviraux, conduit inéluctablement à la progression de la maladie vers le stade SIDA. Certains des mécanismes impliqués dans ce dysfonctionnement de la réponse cellulaire T ont été élucidés et ont révélé un rôle important de la molécule PD-1 dans l’exhaustion des cellules T en phase chronique de l’infection. En effet, des niveaux élevés de PD-1 ont été associés à une charge virale élevée ainsi qu’à une diminution de la production de cytokines et de la capacité de proliférer des cellules T spécifiques du virus. De plus, bloquer in vitro l’interaction de PD-1 avec son ligand PD-L1 en utilisant un anticorps bloquanttabli la fonction de ces cellules. De façon intéressante, notre groupe ainsi que d’autres équipes, ont montré que l’expression de PD-1 était non seulement augmentée sur les cellules spécifiques de l’antigène mais aussi sur les cellules T totales. Cependant, peu de choses sont connues quant à l’impact de l’expression de PD-1 sur le renouvellement et la différenciation des cellules T qui expriment PD-1, et ce au cours de l’infection. L’expression de PD-1 n’a notamment pas été étudiée en phase aigue de l’infection. Nous montrons clairement que, aussi bien chez les individus en phase aigue qu’en phase chronique de l’infection, l’expression de PD-1 est augmentée sur toutes les sous-populations T, y compris les cellules naïves. Nous avons également mis en relief une distribution anormale des sous-populations T, ces cellules ayant un phénotype plus différencié, et ce à tous les stades de la maladie. Dans cette thèse, nous discutons le rôle possible de PD-1 dans l’homéostasie des cellules T chez les individus infectés par le VIH-1. En étudiant la transition de la phase aigue à la phase chronique de l’infection, nous avons trouvé que les sous-populations T CD8+ des individus récemment infectés exprimaient moins de PD-1 que celles des individus à un stade plus avancé de la maladie. Ces niveaux plus élevés de PD-1 sur les cellules T CD8+ en phase chronique sont associés à des niveaux réduits de prolifération in vivo – comme mesuré par l’expression de Ki67 – suggérant que l’expression de PD-1 est partiellement impliquée dans cette perte de fonction des cellules T CD8+. De plus, les cellules naïves s’accumulent en fréquence lors de la transition de la phase aigue à la phase chronique de l’infection. Considérant que les cellules naïves expriment déjà des hauts niveaux de PD-1, nous avons émis l’hypothèse que l’activation initiale des cellules T chez les individus chroniquement infectés est affectée. En résumé, nous proposons un modèle où des hauts niveaux d’expression de PD-1 sont associés à (1) un dysfonctionnement de la réponse cellulaire T CD8+ et (2) un défaut d’activation des cellules naïves ce qui contribue non seulement à la progression de la maladie mais aussi ce qui va limiter l’efficacité de potentiels vaccins dans l’infection par le VIH-1 en empêchant toute nouvelle réponse d’être initiée. Afin de mieux disséquer la réponse immunitaire mise en place lors d’une infection comme celle du VIH-1, nous avons développé un outil qui permet de détecter les cellules T CD4+ i.e. des tétramères de CMH de classe II. Ces réactifs ont pour but d’augmenter l’avidité du CMH de classe II pour son ligand et donc de détecter des TCR de faible affinité. Dans cette thèse, nous décrivons une méthode originale et efficace pour produire diverses molécules de HLA-DR liant de façon covalente le peptide antigénique. Mieux déterminer les mécanismes responsables de l’exhaustion des cellules T dans l’infection par le VIH-1 et de la progression de la maladie, ainsi que développer des outils de pointe pour suivre ces réponses T, est central à une meilleure compréhension de l’interaction entre le virus et le système immunitaire de l’hôte, et permettra ainsi le développement de stratégies pertinentes pour lutter contre l’infection par le VIH-1.

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L’immunothérapie tumorale à médiation cellulaire est un traitement qui utilise le système immunitaire des patients afin d’induire une réponse des lymphocytes T CD8+ (T CD8+) contre la tumeur. Cette réponse est produite suite à la reconnaissance des antigènes par les T CD8+. Ces cibles sont appelées antigènes tumoraux (TAA) et définies comme des protéines exprimées par les cellules cancéreuses mais absentes des tissus normaux. Par une approche bio-informatique, notre laboratoire a identifié Dickkopf-1 (DKK1), une protéine inhibitrice de la voie de Wnt, comme un TAA potentiel. Une immunothérapie à médiation cellulaire efficace requiert l’identification de TAA candidats pertinents. Le traitement de patients par immunothérapie pourrait également être améliorées par l’augmentation de la puissance d’action anti-tumorale ainsi que la persistante des T CD8+ spécifiques aux TAA. Ce projet de doctorat se divise en deux parties : 1- La caractérisation de l’expression de DKK1 dans les cancers communs et la détermination de son immunogénicité afin de valider sa candidature comme TAA. 2- La reprogrammation des T CD8+, de patients atteints d’un cancer commun, vers un phénotype moins différentié afin d’augmenter leur potentiel anti-tumoral et leur persistance. Dans le premier objectif, nous avons caractérisé l’expression de DKK1 dans le cancer du sein et dans d’autres cancers communs. Le profil d’expression de DKK1 a été étudié par RT-PCR et par ELISA dans plusieurs lignées cellulaires de cancer et dans les tissus normaux. L’expression de DKK1 a aussi été étudiée dans des échantillons cliniques provenant de cancers du sein, du poumon et du rein. Trente pourcents (30%) des tumeurs provenant d’un cancer du sein exprimaient DKK1. La moitié des tumeurs DKK1(+) était triple négative, donc pas de récepteurs d’œstrogène et de progestérone et était Her-2/neu(-) (ces patientes ont des possibilités de traitements très restreintes). De plus, 50% des échantillons cliniques de tumeurs du poumon et 30% des tumeurs de rein exprimaient DKK1. Les observations effectuées dans le cancer du poumon ont été, par la suite, corroborées par d'autres groupes qui ont montré une corrélation entre l'expression de DKK1 et un mauvais pronostic. Après avoir confirmée l’expression de DKK1 dans les cancers communs, justifiant ainsi sa candidature comme TAA, nous avons évalué l’immunogénicité de DKK1. Pour ce faire, nous avons effectué des stimulations in vitro de cellules mononucléées du sang périphérique (PBMC) de patient(e)s atteint(e)s d’un cancer du sein ou du poumon avec des peptides dérivés de DKK1 pouvant être présentés par les complexes majeurs d’histocompatibilité (CMH) HLA-A*0201. Des clones de T CD8+ reconnaissant un peptide de DKK1 ont été identifiés et isolés. Par essai multiplex et cytométrie de flux intracellulaire, la polyfonctionnalité d’un ces clones T CD8+ spécifiques à DKK1 a été étudiée et a révélée un profil effecteur, renforçant ainsi la candidature de DKK1 comme TAA. Dans l’ensemble, les résultats obtenus dans cette première partie de thèse suggèrent une possible utilisation de DKK1 en immunothérapie contre les cancers communs, attribuable à son expression dans ces cancers et la possibilité de faire proliférer des T CD8+ effecteurs spécifiques à DKK1 à partir de sang de patients. Dans la seconde partie de cette thèse, je décrirai la manipulation in vitro des T CD8+ de patients atteints d’un cancer commun, afin d’augmenter la force et la durée de leurs fonctions anti-tumorales. Il a été démontré que des lymphocytes moins différentiés sont capables d’une réponse immunologique plus efficace et durable. Nous avons basé ce projet sur l’utilisation d’un inhibiteur pharmacologique de la GSK-3, pour activer de la voie de Wnt chez les T CD8+ et ainsi leur conférer un phénotype moins différentié, partageant des caractéristiques de la cellule naïve et de la cellule mémoire. Des cultures de T CD8+, spécifiques à des antigènes viraux, en présence de l’inhibiteur ont permis d’augmenter la sécrétion d’interféron (IFN)- et leur activité cytotoxique. Ces résultats indiquent un effet de l’activation de la voie de Wnt sur la fonction des T CD8+. Ces observations sont rapportées pour la première fois chez les T CD8+ humains et suggèrent une nouvelle stratégie, applicables à l’immunothérapie du cancer, afin de prolonger la persistance des cellules ainsi que leur activité anti-tumorale. En conclusion, ces travaux de recherche ont mené à la réalisation d’une étape très importante dans la validation de la candidature de DKK1 comme TAA pour les cancers communs, soit la démonstration de son expression dans ces cancers et son absence dans les tissus normaux dérivés d’organes importants. Ces travaux ont également mené à la démonstration de l’immunogénicité de DKK1, par l’identification d’un peptide de DKK1 reconnu par les T CD8+. De plus, l’étude de la polyfonctionnalité des T CD8+ spécifiques à DKK1 a révélée un profil effecteur favorable pour l’obtention d’une réponse anti-tumorale efficace. Ces découvertes pourraient servir à l’élaboration d’une stratégie d’immunothérapie à médiation cellulaire pour les cancers communs. Pour sa part, l’étude phénotypique et fonctionnelle de la modulation de la voie de Wnt dans les T CD8+ a donné lieu à l’observation d’un phénotype encore jamais rapporté chez l’humain, conférant aux T CD8+ un aspect moins différentié avec des caractéristiques propre à un phénotype mémoire. Ces résultats sont pertinents dans l’amélioration de l’immunothérapie du cancer, passant par l’augmentation de la persistance des lymphocytes. En résumé, les résultats présentés dans cette thèse de doctorat fournissent des évidences indéniables quant à la validation de DKK1 comme TAA pour une immunothérapie à médiation cellulaire des cancers communs. Ces résultats fournissent également des preuves quant à la pertinence de la reprogrammation des T CD8+ par l’activation de la voie de la voie de Wnt, afin de générer des lymphocytes médiateurs plus efficaces pour ce type de thérapie.

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We have previously demonstrated that PAS-1, a 200 kDa protein from Ascaris suum, has a potent immunomodulatory effect on humoral and cell-mediated responses induced by APAS-3 (an allergenic protein from A. suum) or unrelated antigens. In this study, we investigated the mechanisms by which PAS-1 is able to induce this effect on an allergic airway inflammation induced by OVA in mice. C57BL/6 mice were adoptively transferred on day 0 with seven different PAS-1-primed cell populations: PAS-1-primed CD19(+) or B220(+) or CD3(+) or CD4(+) or CD8(+) or CD4(+) CD25) or CD4(+) CD25(+) lymphocytes. These mice were immunized twice with OVA and alum by intraperitoneal route (days 0 and 7) and challenged twice by intranasal route (days 14 and 21). Two days after the last challenge, the airway inflammation was evaluated by antibody levels, cellular migration, eosinophil peroxidase levels, cytokine and eotaxin production, and pulmonary mechanical parameters. Among the adoptively transferred primed lymphocytes, only CD4(+) CD25(+), CD8(+) or the combination of both T cells impaired the production of total IgE and OVA-specific IgE and IgG1 antibodies, eosinophilic airway inflammation, Th2-type cytokines (IL-4, IL-5 and IL-13), eotaxin release and airway hyperreactivity. Moreover, airway recruited cells from CD4(+) CD25(+) and CD8(+) T-cell recipient secreted more IL-10/TGF-beta and IFN-gamma, respectively. Moreover, we found that PAS-1 expands significantly the number of CD4(+) CD25(+) FoxP3(+) and CD8(+) gamma delta TCR(+) cells. In conclusion, these findings demonstrate that the immunomodulatory effect of PAS-1 is mediated by these T-cell subsets.

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The rapid recall of influenza virus-specific CD8+ T cell effector function is protective, although our understanding of T cell memory remains incomplete. Recent debate has focused particularly on the CD62L lymph node homing receptor. The present analysis shows that although functional memory can be established from both CD62Lhi and CD62Llo CD8+ T cell subsets soon after initial encounter between naive precursors and antigen, the optimal precursors are CD8+CD44hiCD25lo immune lymphocytes isolated from draining lymph nodes on day 3.5 after influenza virus infection. Analysis of primed T cells at different times after challenge indicates that the capacity to transfer memory is diminished at the peak of the primary cytotoxic T lymphocyte response, challenging speculations that the transition to memory first requires full differentiation to effector status. It seems that location rather than CD62Lhi/lo phenotype may be the more profitable focus for further dissection of the early establishment of T cell memory.

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Influenza A virus infection of C57BL/6 (B6) mice is characterized by prominent CD8 T cell responses to H2Db complexed with peptides from the viral nucleoprotein (NP366, ASNENMETM) and acid polymerase (PA224, SSLENFRAYV). An in vivo cytotoxicity assay that depends on the adoptive transfer of peptide-pulsed, syngeneic targets was used in this study to quantitate the cytotoxic potential of DbNP366- and DbPA224-specific acute and memory CD8 T cells following primary or secondary virus challenge. Both T cell populations displayed equivalent levels of in vivo effector function when comparable numbers were transferred into naive B6 hosts. Cytotoxic activity following primary infection clearly correlated with the frequency of tetramer-stained CD8 T cells. This relationship looked, however, to be less direct following secondary exposure, partly because the numbers of CD8DbNP366 T cells were greatly in excess. However, calculating the in vivo E:T ratios indicated that in vivo lysis, like many other biological functions, is threshold dependent. Furthermore, the capacity to eliminate peptide-pulsed targets was independent of the differentiation state (i.e., primary or secondary effectors) and was comparable for the two T cell specificities that were analyzed. These experiments provide insights that may be of value for adoptive immunotherapy, where careful consideration of both the activation state and the number of effector cells is required.

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Much of the CD8+ T cell response in H2b mice with influenza pneumonia is directed at the nucleoprotein366-374 (NP366) and acid polymerase224-233 (PA224) peptides presented by the H2Db MHC class I glycoprotein. These DbNP366- and DbPA224-specific T cell populations are readily analyzed by staining with tetrameric complexes of MHC+ peptide (tetramers) or by cytokine production subsequent to in vitro stimulation with the cognate peptides. The DbPA224-specific CD8+ effector T cells make more tumor necrosis factor (TNF) α than the comparable CD8+DbNP366+ set, a difference reflected in the greater sensitivity of the CD8+DbPA224+ population to TNF receptor (TNFR) 2-mediated apoptosis under conditions of in vitro culture. Freshly isolated CD8+DbNP366+ and CD8+DbPA224+ T cells from influenza-infected TNFR2-/- mice produce higher levels of IFN-γ and TNF-α after in vitro stimulation with peptide, although the avidity of the T cell receptor-epitope interaction does not change. Increased numbers of both CD8+DbPA224+ and CD8+DbNP366+ T cells were recovered from the lungs (but not the spleens) of secondarily challenged TNFR2-/- mice, a pattern that correlates with the profiles of TNFR expression in the TNFR2+/+ controls. Thus, it seems that TNFR2-mediated editing of influenza-specific CD8+ T cells functions to limit the numbers of effectors that have localized to the site of pathology in the lung but does not modify the size of the less activated responder T cell populations in the spleen. Therefore, the massive difference in magnitude for the secondary, although not the primary, response to these DbNP366 and DbPA224 epitopes cannot be considered to reflect differential TNFR2-mediated T cell editing.

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Individuals infected with mycobacteria are likely to experience episodes of concurrent infections with unrelated respiratory pathogens, including the seasonal or pandemic circulating influenza A virus strains. We analyzed the impact of influenza A virus and mycobacterial respiratory coinfection on the development of CD8 T cell responses to each pathogen. Coinfected mice exhibited reduced frequency and numbers of CD8 T cells specific to Mycobacterium bovis bacille Calmette-Guérin (BCG) in the lungs, and the IFN-γ CD8 T cell response to BCG-encoded OVA was decreased in the lungs of coinfected mice, when compared with mice infected with BCG alone. Moreover, after 2 wk of infection, mice coinfected with both pathogens showed a significant increase in the number of mycobacteria present in the lung compared with mice infected with BCG only. Following adoptive transfer into coinfected mice, transgenic CD8 T cells specific for OVA257–264 failed to proliferate as extensively in the mediastinal lymph nodes as in mice infected only with BCG-OVA. Also noted was a reduction in the proliferation of BCG-specific CD4 transgenic T cells in mice coinfected with influenza compared with mice infected with BCG alone. Furthermore, phenotypic analysis of CD11c+ dendritic cells from mediastinal lymph nodes of the infected mice showed that coinfection was associated with decreased surface expression of MHC class II and class I. Thus, concurrent pulmonary infection with influenza A virus is associated with decreased MHC expression on dendritic cells, reduced activation of BCG-specific CD4 and CD8 T cells, and impaired clearance of mycobacteria.

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Ethnopharmacological relevance: Uncaria tomentosa (Willd.) DC (Rubiaceae) is a species native to the Amazon rainforest and surrounding tropical areas that is endowed with immunomodulatory properties and widely used around the world. In this study we investigated the immunomodulatory potential of Uncaria tomentosa (UT) aqueous-ethanol extract on the progression of immune-mediated diabetes.Materials and methods: C57BL/6 male mice were injected with MLDS (40 mg/kg) and orally treated with UT at 10-400 mg/kg during 21 days. Control groups received MLDS alone or the respective dilution vehicle. Pancreatic mononuclear infiltrate and beta-cell insulin content were analyzed by HE and immunohistochemical staining, respectively, and measured by digital morphometry. Lymphocyte immunophenotyping and cytokine production were determined by flow cytometry analysis.Results: Treating the animals with 50-400 mg/kg of UT caused a significant reduction in the glycemic levels, as well as in the incidence of diabetes. The morphometric analysis of insulitis revealed a clear protective effect. Animals treated with UT at 400 mg/kg presented a higher number of intact islets and a significant inhibition of destructive insulitis. Furthermore, a significant protection against the loss of insulin-secreting presented beta-cells was achieved, as observed by a careful immunohistochemical evaluation. The phenotypic analysis indicated that the groups treated with higher doses (100-400 mg/kg) presented CD4(+) and CD8(+) T-cell values similar to those observed in healthy animals. These same higher doses also increased the number of CD4(+)CD25(+)Foxp3(+) regulatory T-cells. Moreover, the extract modulated the production of Th1 and Th2, with increased levels of IL-4 and IL-5.Conclusions: The extract was effective to prevent the progression of immune-mediated diabetes by distinct pathways. (C) 2011 Elsevier B.V. All rights reserved.

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A DNA vaccine based on the heat-shock protein 65 Mycobacterium leprae gene (pHSP65) presented a prophylactic and therapeutic effect in an experimental model of tuberculosis. In this paper, we addressed the question of which protective mechanisms are activated in Mycobacterium tuberculosis-infected mice after immune therapy with pHSP65. We evaluated activation of the cellular immune response in the lungs of infected mice 30 days after infection (initiation of immune therapy) and in those of uninfected mice. After 70 days (end of immune therapy), the immune responses of infected untreated mice, infected pHSP65-treated mice and infected pCDNA3-treated mice were also evaluated. Our results show that the most significant effect of pHSP65 was the stimulation of CD8(+) lung cell activation, interferon-gamma recovery and reduction of lung injury. There was also partial restoration of the production of tumour necrosis factor-alpha. Treatment with pcDNA3 vector also induced an immune stimulatory effect. However, only infected pHSP65-treated mice were able to produce significant levels of interferon-gamma and to restrict the growth of bacilli.

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A DNA vaccine based on the heat-shock protein 65 Mycobacterium leprae gene (pHSP65) presented a prophylactic and therapeutic effect in an experimental model of tuberculosis. In this paper, we addressed the question of which protective mechanisms are activated in Mycobacterium tuberculosis-infected mice after immune therapy with pHSP65. We evaluated activation of the cellular immune response in the lungs of infected mice 30 days after infection (initiation of immune therapy) and in those of uninfected mice. After 70 days (end of immune therapy), the immune responses of infected untreated mice, infected pHSP65-treated mice and infected pCDNA3-treated mice were also evaluated. Our results show that the most significant effect of pHSP65 was the stimulation of CD8+ lung cell activation, interferon-γ recovery and reduction of lung injury. There was also partial restoration of the production of tumour necrosis factor-α. Treatment with pcDNA3 vector also induced an immune stimulatory effect. However, only infected pHSP65-treated mice were able to produce significant levels of interferon-γ and to restrict the growth of bacilli.

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The antibody and cellular immune responses against infectious bronchitis virus (IBV) were evaluated at mucosal sites of chickens after immunization with various doses of an attenuated vaccine at 1 day of age. The correlation of these immune responses with protection of tracheal tissues was evaluated after experimental infection of these birds. Significantly reduced tracheal pathologic effects, measured according to ciliostasis and histology lesions, and reduced viral load were observed only in the full-dose vaccinated group at 5 days post-infection (dpi), while incomplete protection was observed for the subdose vaccinated groups. Moreover, birds of vaccinated groups, especially with full dose, developed higher levels of lachrymal IBV-specific IgG and IgA and increased the expression of cell-mediated immunity (CMI) genes, such as gamma interferon (IFNγ), CD8+ T cell marker, and granzyme homolog A more rapidly. In addition, these humoral and cellular immune responses evaluated at mucosal sites correlated significantly with tracheal protection against homologous IBV challenge in a vaccine dose-dependent manner. The results indicate that IgG, IgA and CD8+ T cell responses developed at mucosal sites after IBV vaccination of day-old chicks, could be taken as good correlates of protection against this virus. © 2013, Mary Ann Liebert, Inc.

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T-cell based vaccine approaches have emerged to counteract HIV-1/AIDS. Broad, polyfunctional and cytotoxic CD4(+) T-cell responses have been associated with control of HIV-1 replication, which supports the inclusion of CD4(+) T-cell epitopes in vaccines. A successful HIV-1 vaccine should also be designed to overcome viral genetic diversity and be able to confer immunity in a high proportion of immunized individuals from a diverse HLA-bearing population. In this study, we rationally designed a multiepitopic DNA vaccine in order to elicit broad and cross-clade CD4(+) T-cell responses against highly conserved and promiscuous peptides from the HIV-1 M-group consensus sequence. We identified 27 conserved, multiple HLA-DR-binding peptides in the HIV-1 M-group consensus sequences of Gag, Pol, Nef, Vif, Vpr, Rev and Vpu using the TEPITOPE algorithm. The peptides bound in vitro to an average of 12 out of the 17 tested HLA-DR molecules and also to several molecules such as HLA-DP, -DQ and murine IA(b) and IA(d). Sixteen out of the 27 peptides were recognized by PBMC from patients infected with different HIV-1 variants and 72% of such patients recognized at least 1 peptide. Immunization with a DNA vaccine (HIVBr27) encoding the identified peptides elicited IFN-gamma secretion against 11 out of the 27 peptides in BALB/c mice; CD4(+) and CD8(+) T-cell proliferation was observed against 8 and 6 peptides, respectively. HIVBr27 immunization elicited cross-clade T-cell responses against several HIV-1 peptide variants. Polyfunctional CD4(+) and CD8(+) T cells, able to simultaneously proliferate and produce IFN-gamma and TNF-alpha, were also observed. This vaccine concept may cope with HIV-1 genetic diversity as well as provide increased population coverage, which are desirable features for an efficacious strategy against HIV-1/AIDS.