2024
NADPH oxidase in B cells and macrophages protects against murine lupus by regulation of TLR7
Gordon R, Cosgrove H, Marinov A, Gingras S, Tilstra J, Campbell A, Bastacky S, Kashgarian M, Perl A, Nickerson K, Shlomchik M. NADPH oxidase in B cells and macrophages protects against murine lupus by regulation of TLR7. JCI Insight 2024, 9: e178563. PMID: 39042716, PMCID: PMC11343599, DOI: 10.1172/jci.insight.178563.Peer-Reviewed Original ResearchSystemic lupus erythematosusB cellsRegulation of TLR7Cell lineagesNADPH oxidaseHematopoietic cell lineagesNF-kB signalingSLE pathologyNOX2 deficiencyMyeloid compartmentMurine lupusLupus nephritisLupus erythematosusTLR7 signalingGlobal deletionInterstitial nephritisImmunomodulatory effectsGlobal knockoutConditional knockoutCYBBNOX2NephritisKnockoutTLR7Chimera approach
2022
Identification of driver genes for critical forms of COVID-19 in a deeply phenotyped young patient cohort
Carapito R, Li R, Helms J, Carapito C, Gujja S, Rolli V, Guimaraes R, Malagon-Lopez J, Spinnhirny P, Lederle A, Mohseninia R, Hirschler A, Muller L, Bastard P, Gervais A, Zhang Q, Danion F, Ruch Y, Schenck M, Collange O, Chamaraux-Tran T, Molitor A, Pichot A, Bernard A, Tahar O, Bibi-Triki S, Wu H, Paul N, Mayeur S, Larnicol A, Laumond G, Frappier J, Schmidt S, Hanauer A, Macquin C, Stemmelen T, Simons M, Mariette X, Hermine O, Fafi-Kremer S, Goichot B, Drenou B, Kuteifan K, Pottecher J, Mertes P, Kailasan S, Aman M, Pin E, Nilsson P, Thomas A, Viari A, Sanlaville D, Schneider F, Sibilia J, Tharaux P, Casanova J, Hansmann Y, Lidar D, Radosavljevic M, Gulcher J, Meziani F, Moog C, Chittenden T, Bahram S. Identification of driver genes for critical forms of COVID-19 in a deeply phenotyped young patient cohort. Science Translational Medicine 2022, 14: eabj7521. PMID: 34698500, DOI: 10.1126/scitranslmed.abj7521.Peer-Reviewed Original ResearchConceptsYoung patient cohortPatient cohortGene signatureDrivers of disease severityHuman lung epithelial cellsLung epithelial cellsHigh-throughput immunophenotypingIdentification of driver genesNon-critical patientsUnique gene signatureWhole-genome sequencingMyeloid compartmentViral cell biologyCytokine profileMulti-omics analysisSevere acute respiratory syndrome coronavirus 2Acute respiratory syndrome coronavirus 2Exacerbated inflammationIndependent cohortRespiratory syndrome coronavirus 2Cohort of individualsEpithelial cellsHealthy individualsIncreased coagulationPatients
2021
Progressive immune dysfunction with advancing disease stage in renal cell carcinoma
Braun DA, Street K, Burke KP, Cookmeyer DL, Denize T, Pedersen CB, Gohil SH, Schindler N, Pomerance L, Hirsch L, Bakouny Z, Hou Y, Forman J, Huang T, Li S, Cui A, Keskin DB, Steinharter J, Bouchard G, Sun M, Pimenta EM, Xu W, Mahoney KM, McGregor BA, Hirsch MS, Chang SL, Livak KJ, McDermott DF, Shukla SA, Olsen LR, Signoretti S, Sharpe AH, Irizarry RA, Choueiri TK, Wu CJ. Progressive immune dysfunction with advancing disease stage in renal cell carcinoma. Cancer Cell 2021, 39: 632-648.e8. PMID: 33711273, PMCID: PMC8138872, DOI: 10.1016/j.ccell.2021.02.013.Peer-Reviewed Original ResearchConceptsClear cell renal cell carcinomaM2-like macrophagesRenal cell carcinomaAdvanced diseaseExhausted CD8Cell carcinomaDisease stageAdvanced/metastaticImmune inhibitory pathwaysProgressive immune dysfunctionCell renal cell carcinomaAdjacent non-tumor tissuesTumor immune microenvironmentPro-inflammatory macrophagesM2-like polarizationNon-tumor tissuesMetastatic diseaseImmune dysfunctionWorse prognosisImmune microenvironmentImmune cellsCell dysfunctionExternal cohortInhibitory pathwaysMyeloid compartment
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