Publications

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Journal Article
Hill AA, Kim M, Zegarra-Ruiz DF, Chang L-C, Norwood K, Assié A, Wu W-JH, Renfroe MC, Song HWong, Major AM, Samuel BS, Hyser JM, Longman RS, Diehl GE. Acute high-fat diet impairs macrophage-supported intestinal damage resolution. JCI Insight. 2023;8(3).
Viladomiu M, Metz ML, Lima SF, Jin W-B, Chou L, Guo C-J, Diehl GE, Simpson KW, Scherl EJ, Longman RS. Adherent-invasive E. coli metabolism of propanediol in Crohn's disease regulates phagocytes to drive intestinal inflammation. Cell Host Microbe. 2021;.
Mahlakõiv T, Artis D. Allergen Exposure: When Timing Is Everything. Immunity. 2016;45(6):1188-1190.
Blander JM, Visintin I, Janeway CA, Medzhitov R. Alpha(1,3)-fucosyltransferase VII and alpha(2,3)-sialyltransferase IV are up-regulated in activated CD4 T cells and maintained after their differentiation into Th1 and migration into inflammatory sites. J Immunol. 1999;163(7):3746-52.
Grigg JB, Shanmugavadivu A, Regen T, Parkhurst CN, Ahmed A, Joseph AM, Mazzucco M, Gronke K, Diefenbach A, Eberl G, Vartanian T, Waisman A, Sonnenberg GF. Antigen-presenting innate lymphoid cells orchestrate neuroinflammation. Nature. 2021;.
Chu C, Moriyama S, Li Z, Zhou L, Flamar A-L, Klose CSN, Moeller JB, Putzel GG, Withers DR, Sonnenberg GF, Artis D. Anti-microbial Functions of Group 3 Innate Lymphoid Cells in Gut-Associated Lymphoid Tissues Are Regulated by G-Protein-Coupled Receptor 183. Cell Rep. 2018;23(13):3750-3758.
Chu C, Moriyama S, Li Z, Zhou L, Flamar A-L, Klose CSN, Moeller JB, Putzel GG, Withers DR, Sonnenberg GF, Artis D. Anti-microbial Functions of Group 3 Innate Lymphoid Cells in Gut-Associated Lymphoid Tissues Are Regulated by G-Protein-Coupled Receptor 183. Cell Rep. 2018;23(13):3750-3758.
Uzzan M, Tokuyama M, Rosenstein AK, Tomescu C, SahBandar IN, Ko HM, Leyre L, Chokola A, Kaplan-Lewis E, Rodriguez G, Seki A, Corley MJ, Aberg J, La Porte A, Park E-Y, Ueno H, Oikonomou I, Doron I, Iliev ID, Chen BK, Lui J, Schacker TW, Furtado GC, Lira SA, Colombel J-F, Horowitz A, Lim JK, Chomont N, Rahman AH, Montaner LJ, Ndhlovu LC, Mehandru S. Anti-α4β7 therapy targets lymphoid aggregates in the gastrointestinal tract of HIV-1-infected individuals. Sci Transl Med. 2018;10(461).
Uzzan M, Tokuyama M, Rosenstein AK, Tomescu C, SahBandar IN, Ko HM, Leyre L, Chokola A, Kaplan-Lewis E, Rodriguez G, Seki A, Corley MJ, Aberg J, La Porte A, Park E-Y, Ueno H, Oikonomou I, Doron I, Iliev ID, Chen BK, Lui J, Schacker TW, Furtado GC, Lira SA, Colombel J-F, Horowitz A, Lim JK, Chomont N, Rahman AH, Montaner LJ, Ndhlovu LC, Mehandru S. Anti-α4β7 therapy targets lymphoid aggregates in the gastrointestinal tract of HIV-1-infected individuals. Sci Transl Med. 2018;10(461).
Monticelli LA, Buck MD, Flamar A-L, Saenz SA, Wojno EDTait, Yudanin NA, Osborne LC, Hepworth MR, Tran SV, Rodewald H-R, Shah H, Cross JR, Diamond JM, Cantu E, Christie JD, Pearce EL, Artis D. Arginase 1 is an innate lymphoid-cell-intrinsic metabolic checkpoint controlling type 2 inflammation. Nat Immunol. 2016;17(6):656-65.
Puga I, Cols M, Barra CM, He B, Cassis L, Gentile M, Comerma L, Chorny A, Shan M, Xu W, Magri G, Knowles DM, Tam W, Chiu A, Bussel JB, Serrano S, Lorente JAntonio, Bellosillo B, Lloreta J, Juanpere N, Alameda F, Baró T, de Heredia CDíaz, Torán N, Català A, Torrebadell M, Fortuny C, Cusí V, Carreras C, Diaz GA, J Blander M, Farber C-M, Silvestri G, Cunningham-Rundles C, Calvillo M, Dufour C, Notarangelo LDora, Lougaris V, Plebani A, Casanova J-L, Ganal SC, Diefenbach A, Aróstegui JIgnacio, Juan M, Yagüe J, Mahlaoui N, Donadieu J, Chen K, Cerutti A. B cell-helper neutrophils stimulate the diversification and production of immunoglobulin in the marginal zone of the spleen. Nat Immunol. 2011;13(2):170-80.
Puga I, Cols M, Barra CM, He B, Cassis L, Gentile M, Comerma L, Chorny A, Shan M, Xu W, Magri G, Knowles DM, Tam W, Chiu A, Bussel JB, Serrano S, Lorente JAntonio, Bellosillo B, Lloreta J, Juanpere N, Alameda F, Baró T, de Heredia CDíaz, Torán N, Català A, Torrebadell M, Fortuny C, Cusí V, Carreras C, Diaz GA, J Blander M, Farber C-M, Silvestri G, Cunningham-Rundles C, Calvillo M, Dufour C, Notarangelo LDora, Lougaris V, Plebani A, Casanova J-L, Ganal SC, Diefenbach A, Aróstegui JIgnacio, Juan M, Yagüe J, Mahlaoui N, Donadieu J, Chen K, Cerutti A. B cell-helper neutrophils stimulate the diversification and production of immunoglobulin in the marginal zone of the spleen. Nat Immunol. 2011;13(2):170-80.
Hussain M, Borcard L, Walsh KP, Rodriguez MPena, Mueller C, Kim BS, Kubo M, Artis D, Noti M. Basophil-derived IL-4 promotes epicutaneous antigen sensitization concomitant with the development of food allergy. J Allergy Clin Immunol. 2018;141(1):223-234.e5.
Motomura Y, Morita H, Moro K, Nakae S, Artis D, Endo TA, Kuroki Y, Ohara O, Koyasu S, Kubo M. Basophil-derived interleukin-4 controls the function of natural helper cells, a member of ILC2s, in lung inflammation. Immunity. 2014;40(5):758-71.
Motomura Y, Morita H, Moro K, Nakae S, Artis D, Endo TA, Kuroki Y, Ohara O, Koyasu S, Kubo M. Basophil-derived interleukin-4 controls the function of natural helper cells, a member of ILC2s, in lung inflammation. Immunity. 2014;40(5):758-71.
Motomura Y, Morita H, Moro K, Nakae S, Artis D, Endo TA, Kuroki Y, Ohara O, Koyasu S, Kubo M. Basophil-derived interleukin-4 controls the function of natural helper cells, a member of ILC2s, in lung inflammation. Immunity. 2014;40(5):758-71.
Collins N, Han S-J, Enamorado M, Link VM, Huang B, E Moseman A, Kishton RJ, Shannon JP, Dixit D, Schwab SR, Hickman HD, Restifo NP, McGavern DB, Schwartzberg PL, Belkaid Y. The Bone Marrow Protects and Optimizes Immunological Memory during Dietary Restriction. Cell. 2019;178(5):1088-1101.e15.
Collins N, Han S-J, Enamorado M, Link VM, Huang B, E Moseman A, Kishton RJ, Shannon JP, Dixit D, Schwab SR, Hickman HD, Restifo NP, McGavern DB, Schwartzberg PL, Belkaid Y. The Bone Marrow Protects and Optimizes Immunological Memory during Dietary Restriction. Cell. 2019;178(5):1088-1101.e15.
Dohlman AB, Mendoza DArguijo, Ding S, Gao M, Dressman H, Iliev ID, Lipkin SM, Shen X. The cancer microbiome atlas: a pan-cancer comparative analysis to distinguish tissue-resident microbiota from contaminants. Cell Host Microbe. 2020;.
Offit K, Tkachuk KA, Stadler ZK, Walsh MF, Diaz-Zabala H, Levin JD, Steinsnyder Z, Ravichandran V, Sharaf RN, Frey MK, Lipkin SM, Robson ME, Hamilton JG, Vijai J, Mukherjee S. Cascading After Peridiagnostic Cancer Genetic Testing: An Alternative to Population-Based Screening. J Clin Oncol. 2020;:JCO1902010.
Artomov M, Joseph V, Tiao G, Thomas T, Schrader K, Klein RJ, Kiezun A, Gupta N, Margolin L, Stratigos AJ, Kim I, Shannon K, Ellisen LW, Haber D, Getz G, Tsao H, Lipkin SM, Altshuler D, Offit K, Daly MJ. Case-control analysis identifies shared properties of rare germline variation in cancer predisposing genes. Eur J Hum Genet. 2019;27(5):824-828.
Moretti J, Jia B, Hutchins Z, Roy S, Yip H, Wu J, Shan M, Jaffrey SR, Coers J, J Blander M. Caspase-11 interaction with NLRP3 potentiates the noncanonical activation of the NLRP3 inflammasome. Nat Immunol. 2022;23(5):705-717.
Tummers B, Mari L, Guy CS, Heckmann BL, Rodriguez DA, Rühl S, Moretti J, Crawford JChase, Fitzgerald P, Kanneganti T-D, Janke LJ, Pelletier S, J Blander M, Green DR. Caspase-8-Dependent Inflammatory Responses Are Controlled by Its Adaptor, FADD, and Necroptosis. Immunity. 2020;52(6):994-1006.e8.
Tummers B, Mari L, Guy CS, Heckmann BL, Rodriguez DA, Rühl S, Moretti J, Crawford JChase, Fitzgerald P, Kanneganti T-D, Janke LJ, Pelletier S, J Blander M, Green DR. Caspase-8-Dependent Inflammatory Responses Are Controlled by Its Adaptor, FADD, and Necroptosis. Immunity. 2020;52(6):994-1006.e8.
Mackley EC, Houston S, Marriott CL, Halford EE, Lucas B, Cerovic V, Filbey KJ, Maizels RM, Hepworth MR, Sonnenberg GF, Milling S, Withers DR. CCR7-dependent trafficking of RORγ⁺ ILCs creates a unique microenvironment within mucosal draining lymph nodes. Nat Commun. 2015;6:5862.