Publications

Found 251 results
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A
Rimmelé P, Bigarella CL, Liang R, Izac B, Dieguez-Gonzalez R, Barbet G, Donovan M, Brugnara C, Blander JM, Sinclair DA, Ghaffari S. Aging-like phenotype and defective lineage specification in SIRT1-deleted hematopoietic stem and progenitor cells. Stem Cell Reports. 2014;3(1):44-59.
Rimmelé P, Bigarella CL, Liang R, Izac B, Dieguez-Gonzalez R, Barbet G, Donovan M, Brugnara C, Blander JM, Sinclair DA, Ghaffari S. Aging-like phenotype and defective lineage specification in SIRT1-deleted hematopoietic stem and progenitor cells. Stem Cell Reports. 2014;3(1):44-59.
Rimmelé P, Bigarella CL, Liang R, Izac B, Dieguez-Gonzalez R, Barbet G, Donovan M, Brugnara C, Blander JM, Sinclair DA, Ghaffari S. Aging-like phenotype and defective lineage specification in SIRT1-deleted hematopoietic stem and progenitor cells. Stem Cell Reports. 2014;3(1):44-59.
Rimmelé P, Bigarella CL, Liang R, Izac B, Dieguez-Gonzalez R, Barbet G, Donovan M, Brugnara C, Blander JM, Sinclair DA, Ghaffari S. Aging-like phenotype and defective lineage specification in SIRT1-deleted hematopoietic stem and progenitor cells. Stem Cell Reports. 2014;3(1):44-59.
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.
Blander JM, Sant'Angelo DB, Bottomly K, Janeway CA. Alteration at a single amino acid residue in the T cell receptor alpha chain complementarity determining region 2 changes the differentiation of naive CD4 T cells in response to antigen from T helper cell type 1 (Th1) to Th2. J Exp Med. 2000;191(12):2065-74.
Blander JM, Sant'Angelo DB, Bottomly K, Janeway CA. Alteration at a single amino acid residue in the T cell receptor alpha chain complementarity determining region 2 changes the differentiation of naive CD4 T cells in response to antigen from T helper cell type 1 (Th1) to Th2. J Exp Med. 2000;191(12):2065-74.
Robson ME, Bradbury AR, Arun B, Domchek SM, Ford JM, Hampel HL, Lipkin SM, Syngal S, Wollins DS, Lindor NM. American Society of Clinical Oncology Policy Statement Update: Genetic and Genomic Testing for Cancer Susceptibility. J Clin Oncol. 2015;33(31):3660-7.
J Blander M. Analysis of the TLR/NF-kappaB pathway in antigen-presenting cells in malignancies promoted by inflammation. Methods Mol Biol. 2009;512:99-117.
Campisi L, Barbet G, Ding Y, Esplugues E, Flavell RA, J Blander M. Apoptosis in response to microbial infection induces autoreactive TH17 cells. Nat Immunol. 2016;17(9):1084-92.
Campisi L, Barbet G, Ding Y, Esplugues E, Flavell RA, J Blander M. Apoptosis in response to microbial infection induces autoreactive TH17 cells. Nat Immunol. 2016;17(9):1084-92.
Glynn S, Lipkin S, Zhang T, Sboner A, Elemento O, Van Besien K, Beltran H. The application of precision medicine in diagnosing familial Mediterranean fever. Leuk Lymphoma. 2019;60(8):2091-2093.
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.
B
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.
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.
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.
Cong J, Liu P, Han Z, Ying W, Li C, Yang Y, Wang S, Yang J, Cao F, Shen J, Zeng Y, Bai Y, Zhou C, Ye L, Zhou R, Guo C, Cang C, Kasper DL, Song X, Dai L, Sun L, Pan W, Zhu S. Bile acids modified by the intestinal microbiota promote colorectal cancer growth by suppressing CD8+ T cell effector functions. Immunity. 2024;57(4):876-889.e11.
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.