0000000001315623

AUTHOR

Christelle Basset

showing 8 related works from this author

Different profile and distribution of antigen specific T cells induced by intranasal and intrarectal immunization with rotavirus 2/6-VLP with and wit…

2013

International audience; In this study, we compared both the profile and distribution of antigen specific primed T cells after intrarectal (IR) and intranasal (IN) immunization with rotavirus (RV) 2/6-VLP, alone or in the presence of LT-R192G, in order to highlight the differences between the two routes and the impact of the adjuvant. Adult BALB/c mice were immunized once with 2/6-VLP with or without adjuvant and the T cell response was analyzed in lymphoid tissues after in vitro restimulation with the antigen. IN, but not IR, immunization of mice with 2/6-VLP alone induced antigen-specific IL-10 and IL-17 secreting T cells. IL-10-, in contrast to IL-17-, secreting T cells did not migrate to…

Rotavirusmedicine.medical_treatmentT-Lymphocytes[SDV]Life Sciences [q-bio]Priming (immunology)DistributionPHENOTYPEPROTECTSEnterotoxins0302 clinical medicineCell MovementINFECTIONMesenteric lymph nodesHEAT-LABILE TOXINIMMUNE-RESPONSEIL-2 receptorAntigens Viral0303 health sciencesB-LymphocytesMice Inbred BALB CIntrarectalEscherichia coli ProteinsVaccinationFOXP3CHOLERA-TOXINLT-R192G3. Good healthInfectious Diseasesmedicine.anatomical_structureIntranasal030220 oncology & carcinogenesisMolecular MedicineFemaleAdjuvantLymphoid TissueT cellBacterial ToxinsSpleenBiologyMUCOSAL VACCINESRotavirus Infections03 medical and health sciencesCross-PrimingAntigenAdjuvants ImmunologicAdministration RectalVIRUS-LIKE PARTICLESmedicineAnimalsVaccines Virus-Like ParticleImmunity MucosalAdministration Intranasal030304 developmental biologyGeneral VeterinaryGeneral Immunology and MicrobiologyInterleukinsPublic Health Environmental and Occupational HealthRotavirus VaccinesT cellMICEImmunologyCHALLENGE
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B subunits of cholera toxin and thermolabile enterotoxin of Escherichia coli have similar adjuvant effect as whole molecules on rotavirus 2/6-VLP spe…

2015

The purpose of this study was to evaluate the adjuvant effect of the B subunits of cholera toxin (CT) and the thermolabile enterotoxin of Escherichia coli (LT) by the intrarectal route of immunization and compare them to the whole molecules CT and LT-R192G, a non toxic mutant of LT, using 2/6-VLP as an antigen, in mice. All molecules induced similar antigen specific antibody titers in serum and feces, whereas different T cell profiles were observed. CTB and LTB, conversely to CT and LT-R192G, did not induce detectable production of IL-2 by antigen specific T cells. Moreover, CTB, conversely to LT-R192G, CT and LTB, did not induce antigen specific CD4+CD25+Foxp3- and Foxp3+ T cells, thus sho…

RotavirusCholera Toxin[SDV]Life Sciences [q-bio]T cellmedicine.medical_treatmentBacterial ToxinsEnterotoxinBiologymedicine.disease_causeAntibodies ViralMicrobiologyAntibodiesMicrobiologyB subunitEnterotoxinsFecesMiceAntigenAdjuvants ImmunologicImmunologicAdministration RectalmedicineAnimalsViralAdjuvantsIL-2 receptorVaccines Virus-Like ParticleThermolabileB cellVaccinesIntrarectalEscherichia coli ProteinsCholera toxinRotavirus VaccinesLT-R192G3. Good healthVirus-Like ParticleInfectious Diseasesmedicine.anatomical_structureAdministrationAntibody FormationInterleukin-2Th17 CellsImmunizationRectalAdjuvantImmunologic MemoryMicrobial pathogenesis
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Distribution and phenotype of rotavirus-specific B cells induced during the antigen-driven primary response to 2/6 virus-like particles administered …

2007

AbstractSelection of mucosal sites is an important step in mucosal vaccine development. The intrarectal (IR) route represents an alternative to the oral route of immunization; nevertheless, immune responses induced by this route are not well defined. Here, we studied the early primary B cell response (induction, homing, and phenotype) induced by IR immunization with rotavirus (RV)-2/6 virus-like particles (VLP). Using flow cytometry, we traced RV-specific B cells in different lymphoid tissues and analyzed the expression of α4β7 and CCR9, which are important receptors for homing to the gut, as well as CD5, a marker expressed by B1-a cells, which are a major source of natural antibodies. We o…

RotavirusAntibodies ViralMicePeyer's Patches0302 clinical medicineCell MovementImmunology and AllergyMesenteric lymph nodes[ SDV.IMM ] Life Sciences [q-bio]/ImmunologyMesenteryAntigens ViralmucosaB-LymphocytesMice Inbred BALB C0303 health sciencesmedicine.diagnostic_testrodent3. Good healthIntestinesPhenotypemedicine.anatomical_structure[SDV.IMM]Life Sciences [q-bio]/ImmunologyFemaleAntibodyImmunologyReceptors Lymphocyte HomingBiologyCD5 AntigensFlow cytometryReceptors CCR03 medical and health sciencesImmune systemAntigenmedicineAnimalsImmunity MucosalAdministration IntranasalB cell030304 developmental biologyLumbosacral RegionRotavirus VaccinesCell BiologyvaccinationB-1 cellB-1a cellsImmunologybiology.proteinImmunizationLymph Nodescell traffickingCD5030215 immunology
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Cholera-Like Enterotoxins and Regulatory T cells

2010

Cholera toxin (CT) and the heat-labile enterotoxin of E. coli (LT), as well as their non toxic mutants, are potent mucosal adjuvants of immunization eliciting mucosal and systemic responses against unrelated co-administered antigens in experimental models and in humans (non toxic mutants). These enterotoxins are composed of two subunits, the A subunit, responsible for an ADP-ribosyl transferase activity and the B subunit, responsible for cell binding. Paradoxically, whereas the whole toxins have adjuvant properties, the B subunits of CT (CTB) and of LT (LTB) have been shown to induce antigen specific tolerance when administered mucosally with antigens in experimental models as well as, rece…

Cholera ToxinHealth Toxicology and Mutagenesismedicine.medical_treatmentBacterial Toxinslcsh:MedicineEnterotoxinReviewBiologyToxicologymedicine.disease_causeT-Lymphocytes Regulatoryregulatory T cellsMicrobiologyImmune toleranceAutoimmune DiseasesEnterotoxinsImmune systemAntigenAdjuvants ImmunologicmedicineImmune ToleranceAnimalsHumansAntigen-presenting cellEscherichia coli Proteinslcsh:RCholera toxinCTBIn vitroLTBImmunologyAdjuvantheat-labile enterotoxin of E. colicholera-like enterotoxinsToxins
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Unexpected Modulation of Recall B and T Cell Responses after Immunization with Rotavirus-like Particles in the Presence of LT-R192G

2010

LT-R192G, a mutant of the thermolabile enterotoxin of E. coli, is a potent adjuvant of immunization. Immune responses are generally analyzed at the end of protocols including at least 2 administrations, but rarely after a prime. To investigate this point, we compared B and T cell responses in mice after one and two intrarectal immunizations with 2/6 rotavirus-like particles (2/6-VLP) and LT-R192G. After a boost, we found, an unexpected lower B cell expansion measured by flow cytometry, despite a secondary antibody response. We then analyzed CD4(+)CD25(+)Foxp3(+) regulatory T cells (Tregs) and CD4(+)CD25(+)Foxp3(-) helper T cells after in vitro (re)stimulation of mesenteric lymph node cells …

T-LymphocytesHealth Toxicology and Mutagenesismedicine.medical_treatmentT cellBacterial ToxinsDose-Response Relationship Immunologiclcsh:Medicinechemical and pharmacologic phenomenaBiologyToxicologyArticleregulatory T cellsEnterotoxinsMiceInterleukin 21Immune systemB-1a lymphocyteAdjuvants ImmunologicAntigenmedicineAnimalsIL-2 receptorCD25B cellB-LymphocytesMice Inbred BALB CB lymphocytemucosal immunizationEscherichia coli Proteinslcsh:RRotavirus VaccinesVirionFOXP3LT-R192Ghemic and immune systemsrotavirusmedicine.anatomical_structureFoxp3ImmunologyFemaleImmunizationAdjuvantToxins
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CCDC 1476682: Experimental Crystal Structure Determination

2017

Related Article: Nicolas Sok, Isabelle Baglin, Christelle Basset, Fatima Fakkor, Evelyne Kohli, Yoann Rousselin, Claire Bernhard, Frédéric Boschetti, Christine Goze, Franck Denat|2017|RSC Advances|7|28291|doi:10.1039/C7RA04218C

Space GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates3-(6-(tetradecahydro-1H-imidazo[15-d][14710]tetraazacyclotridecin-3-yl)pyridin-2-yl)tetradecahydro-1H-imidazo[15-d][14710]tetraazacyclotridecine monohydrate
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CCDC 1476683: Experimental Crystal Structure Determination

2017

Related Article: Nicolas Sok, Isabelle Baglin, Christelle Basset, Fatima Fakkor, Evelyne Kohli, Yoann Rousselin, Claire Bernhard, Frédéric Boschetti, Christine Goze, Franck Denat|2017|RSC Advances|7|28291|doi:10.1039/C7RA04218C

Space GroupCrystallographyCrystal System110131620-pentaazatetracyclo[10.10.1.0210.038]tricosa-357-trien-9-oneCrystal StructureCell ParametersExperimental 3D Coordinates
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CCDC 1476681: Experimental Crystal Structure Determination

2017

Related Article: Nicolas Sok, Isabelle Baglin, Christelle Basset, Fatima Fakkor, Evelyne Kohli, Yoann Rousselin, Claire Bernhard, Frédéric Boschetti, Christine Goze, Franck Denat|2017|RSC Advances|7|28291|doi:10.1039/C7RA04218C

Space GroupCrystallographyCrystal SystemCrystal StructureCell Parameters3-(3-(tetradecahydro-1H-imidazo[15-d][14710]tetraazacyclotridecin-3-yl)phenyl)tetradecahydro-1H-imidazo[15-d][14710]tetraazacyclotridecine monohydrateExperimental 3D Coordinates
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