2019
Ruxolitinib, a selective JAK1/2 inhibitor, for the treatment of serious diseases caused by Staphylococcus aureus superantigens
Carnes H, Mehrkens B, Stegman M, Rajagopalan G. Ruxolitinib, a selective JAK1/2 inhibitor, for the treatment of serious diseases caused by Staphylococcus aureus superantigens. The Journal Of Immunology 2019, 202: 190.34-190.34. DOI: 10.4049/jimmunol.202.supp.190.34.Peer-Reviewed Original ResearchSystemic inflammatory response syndromeMulti-organ failureT cellsHLA-DR3 transgenic miceHLA class II moleculesVehicle-treated miceVivo studiesInflammatory response syndromeT cell subsetsToxic shock syndromeJAK 1/2 inhibitorSelective JAK1/2 inhibitorClass II moleculesStaphylococcus aureusDose-dependent mannerSerious diseaseJanus kinaseIL-17Response syndromeOrgan failureJAK1/2 inhibitorActivation markersCell subsetsShock syndromeIL-2
2018
Dissecting the pathogenic versus protective roles of IFN-γ and IL-17 in staphylococcal toxic shock syndrome and pneumonia using gene targeted HLA-DR3 transgenic mice
Rajagopalan G, Krogman A, Chowdhary V. Dissecting the pathogenic versus protective roles of IFN-γ and IL-17 in staphylococcal toxic shock syndrome and pneumonia using gene targeted HLA-DR3 transgenic mice. The Journal Of Immunology 2018, 200: 117.3-117.3. DOI: 10.4049/jimmunol.200.supp.117.3.Peer-Reviewed Original ResearchHLA-DR3 transgenic miceToxic shock syndromeIL-17Transgenic miceHLA-DR3Shock syndromeAdaptive T cell responsesStaphylococcal toxic shock syndromeIL-17 family membersT cell responsesRole of IFNStaphylococcus aureus infectionS. aureusNon-specific activationTh17 cellsSerum levelsHLA-DRMice succumbedSystemic elevationTh1 cellsAureus infectionTissue injuryT cellsInfectious agentsIFN
2014
Systemic Inflammatory Response Elicited by Superantigen Destabilizes T Regulatory Cells, Rendering Them Ineffective during Toxic Shock Syndrome
Tilahun AY, Chowdhary VR, David CS, Rajagopalan G. Systemic Inflammatory Response Elicited by Superantigen Destabilizes T Regulatory Cells, Rendering Them Ineffective during Toxic Shock Syndrome. The Journal Of Immunology 2014, 193: 2919-2930. PMID: 25092888, PMCID: PMC4157092, DOI: 10.4049/jimmunol.1400980.Peer-Reviewed Original ResearchMeSH KeywordsAdoptive TransferAnimalsAntibodiesAntigen-Antibody ComplexEnterotoxinsGlucocorticoid-Induced TNFR-Related ProteinGlucocorticoidsHLA-DR alpha-ChainsHLA-DR beta-ChainsHLA-DR3 AntigenInterferon-gammaInterleukin-17Interleukin-2Lymphocyte ActivationMethicillin-Resistant Staphylococcus aureusMiceMice, TransgenicReceptors, Tumor Necrosis FactorShock, SepticStaphylococcal InfectionsSuperantigensT-Lymphocytes, RegulatoryUp-RegulationConceptsToxic shock syndromeEndogenous TregsRegulatory cellsShock syndromeT cellsGlucocorticoid-induced TNFR family-related receptorCommunity-acquired methicillin-resistant strainsEx vivoHLA-DR3 transgenic miceSerum IFN-γ levelsFailure of TregsSystemic inflammatory responseIL-2/T regulatory (Treg) cellsIFN-γ levelsConventional T cellsLife-threatening infectionsMethicillin-resistant strainsT cell activationS. aureus strainsTreg numbersAdoptive transferIL-17Immune activationInflammatory response
2008
Regulatory T cells and superantigen‐induced toxic shock. A study using HLA class II transgenic mice
Rajagopalan G, Epstein B, Lytle A, David C. Regulatory T cells and superantigen‐induced toxic shock. A study using HLA class II transgenic mice. The FASEB Journal 2008, 22: 848.11-848.11. DOI: 10.1096/fasebj.22.1_supplement.848.11.Peer-Reviewed Original ResearchToxic shock syndromeRegulatory T cellsHLA-DR3 transgenic miceT cellsTransgenic miceHLA class II transgenic miceDepletion of TregsII transgenic miceSerum cytokine levelsStaphylococcal enterotoxin BTreg cellsCytokine levelsIL-17Regulatory cellsSEB challengeIL-21IL-22Systemic exposureIL-6Shock syndromeIL-2IL-2RSplenic expressionTGF-b1Toxic shock