-
1
-
-
84907983938
-
Innate lymphoid cells in inflammation and immunity
-
McKenzie A.N., Spits H., Eberl G. Innate lymphoid cells in inflammation and immunity. Immunity 2014, 41:366-374.
-
(2014)
Immunity
, vol.41
, pp. 366-374
-
-
McKenzie, A.N.1
Spits, H.2
Eberl, G.3
-
3
-
-
84907968021
-
Development, differentiation, and diversity of innate lymphoid cells
-
Diefenbach A., Colonna M., Koyasu S. Development, differentiation, and diversity of innate lymphoid cells. Immunity 2014, 41:354-365.
-
(2014)
Immunity
, vol.41
, pp. 354-365
-
-
Diefenbach, A.1
Colonna, M.2
Koyasu, S.3
-
4
-
-
84906534108
-
Nfil3 is crucial for development of innate lymphoid cells and host protection against intestinal pathogens
-
Geiger T.L., Abt M.C., Gasteiger G., Firth M.A., O'Connor M.H., Geary C.D., O'Sullivan T.E., van den Brink M.R., Pamer E.G., Hanash A.M., et al. Nfil3 is crucial for development of innate lymphoid cells and host protection against intestinal pathogens. J Exp Med 2014, 211:1723-1731.
-
(2014)
J Exp Med
, vol.211
, pp. 1723-1731
-
-
Geiger, T.L.1
Abt, M.C.2
Gasteiger, G.3
Firth, M.A.4
O'Connor, M.H.5
Geary, C.D.6
O'Sullivan, T.E.7
van den Brink, M.R.8
Pamer, E.G.9
Hanash, A.M.10
-
5
-
-
84898640432
-
Differentiation of type 1 ILCs from a common progenitor to all helper-like innate lymphoid cell lineages
-
Klose C.S., Flach M., Mohle L., Rogell L., Hoyler T., Ebert K., Fabiunke C., Pfeifer D., Sexl V., Fonseca-Pereira D., et al. Differentiation of type 1 ILCs from a common progenitor to all helper-like innate lymphoid cell lineages. Cell 2014, 157:340-356.
-
(2014)
Cell
, vol.157
, pp. 340-356
-
-
Klose, C.S.1
Flach, M.2
Mohle, L.3
Rogell, L.4
Hoyler, T.5
Ebert, K.6
Fabiunke, C.7
Pfeifer, D.8
Sexl, V.9
Fonseca-Pereira, D.10
-
6
-
-
84896396519
-
The transcription factor GATA3 is critical for the development of all IL-7Ralpha-expressing innate lymphoid cells
-
Yagi R., Zhong C., Northrup D.L., Yu F., Bouladoux N., Spencer S., Hu G., Barron L., Sharma S., Nakayama T., et al. The transcription factor GATA3 is critical for the development of all IL-7Ralpha-expressing innate lymphoid cells. Immunity 2014, 40:378-388.
-
(2014)
Immunity
, vol.40
, pp. 378-388
-
-
Yagi, R.1
Zhong, C.2
Northrup, D.L.3
Yu, F.4
Bouladoux, N.5
Spencer, S.6
Hu, G.7
Barron, L.8
Sharma, S.9
Nakayama, T.10
-
7
-
-
84872977452
-
Innate lymphoid cells-a proposal for uniform nomenclature
-
Spits H., Artis D., Colonna M., Diefenbach A., Di Santo J.P., Eberl G., Koyasu S., Locksley R.M., McKenzie A.N., Mebius R.E., et al. Innate lymphoid cells-a proposal for uniform nomenclature. Nat Rev Immunol 2013, 13:145-149.
-
(2013)
Nat Rev Immunol
, vol.13
, pp. 145-149
-
-
Spits, H.1
Artis, D.2
Colonna, M.3
Diefenbach, A.4
Di Santo, J.P.5
Eberl, G.6
Koyasu, S.7
Locksley, R.M.8
McKenzie, A.N.9
Mebius, R.E.10
-
8
-
-
85027945857
-
Human type 1 innate lymphoid cells accumulate in inflamed mucosal tissues
-
Bernink J.H., Peters C.P., Munneke M., te Velde A.A., Meijer S.L., Weijer K., Hreggvidsdottir H.S., Heinsbroek S.E., Legrand N., Buskens C.J., et al. Human type 1 innate lymphoid cells accumulate in inflamed mucosal tissues. Nat Immunol 2013, 14:221-229.
-
(2013)
Nat Immunol
, vol.14
, pp. 221-229
-
-
Bernink, J.H.1
Peters, C.P.2
Munneke, M.3
te Velde, A.A.4
Meijer, S.L.5
Weijer, K.6
Hreggvidsdottir, H.S.7
Heinsbroek, S.E.8
Legrand, N.9
Buskens, C.J.10
-
9
-
-
84876780238
-
Intraepithelial type 1 innate lymphoid cells are a unique subset of IL-12- and IL-15-responsive IFN-gamma-producing cells
-
Fuchs A., Vermi W., Lee J.S., Lonardi S., Gilfillan S., Newberry R.D., Cella M., Colonna M. Intraepithelial type 1 innate lymphoid cells are a unique subset of IL-12- and IL-15-responsive IFN-gamma-producing cells. Immunity 2013, 38:769-781.
-
(2013)
Immunity
, vol.38
, pp. 769-781
-
-
Fuchs, A.1
Vermi, W.2
Lee, J.S.3
Lonardi, S.4
Gilfillan, S.5
Newberry, R.D.6
Cella, M.7
Colonna, M.8
-
10
-
-
84867769688
-
The transcription factor GATA-3 controls cell fate and maintenance of type 2 innate lymphoid cells
-
Hoyler T., Klose C.S., Souabni A., Turqueti-Neves A., Pfeifer D., Rawlins E.L., Voehringer D., Busslinger M., Diefenbach A. The transcription factor GATA-3 controls cell fate and maintenance of type 2 innate lymphoid cells. Immunity 2012, 37:634-648.
-
(2012)
Immunity
, vol.37
, pp. 634-648
-
-
Hoyler, T.1
Klose, C.S.2
Souabni, A.3
Turqueti-Neves, A.4
Pfeifer, D.5
Rawlins, E.L.6
Voehringer, D.7
Busslinger, M.8
Diefenbach, A.9
-
11
-
-
84863393407
-
Transcription factor RORalpha is critical for nuocyte development
-
Wong S.H., Walker J.A., Jolin H.E., Drynan L.F., Hams E., Camelo A., Barlow J.L., Neill D.R., Panova V., Koch U., et al. Transcription factor RORalpha is critical for nuocyte development. Nat Immunol 2012, 13:229-236.
-
(2012)
Nat Immunol
, vol.13
, pp. 229-236
-
-
Wong, S.H.1
Walker, J.A.2
Jolin, H.E.3
Drynan, L.F.4
Hams, E.5
Camelo, A.6
Barlow, J.L.7
Neill, D.R.8
Panova, V.9
Koch, U.10
-
12
-
-
84876762753
-
T cell factor 1 is required for group 2 innate lymphoid cell generation
-
Yang Q., Monticelli L.A., Saenz S.A., Chi A.W., Sonnenberg G.F., Tang J., De Obaldia M.E., Bailis W., Bryson J.L., Toscano K., et al. T cell factor 1 is required for group 2 innate lymphoid cell generation. Immunity 2013, 38:694-704.
-
(2013)
Immunity
, vol.38
, pp. 694-704
-
-
Yang, Q.1
Monticelli, L.A.2
Saenz, S.A.3
Chi, A.W.4
Sonnenberg, G.F.5
Tang, J.6
De Obaldia, M.E.7
Bailis, W.8
Bryson, J.L.9
Toscano, K.10
-
13
-
-
75749122181
-
Innate production of T(H)2 cytokines by adipose tissue-associated c-Kit(+)Sca-1(+) lymphoid cells
-
Moro K., Yamada T., Tanabe M., Takeuchi T., Ikawa T., Kawamoto H., Furusawa J., Ohtani M., Fujii H., Koyasu S. Innate production of T(H)2 cytokines by adipose tissue-associated c-Kit(+)Sca-1(+) lymphoid cells. Nature 2010, 463:540-544.
-
(2010)
Nature
, vol.463
, pp. 540-544
-
-
Moro, K.1
Yamada, T.2
Tanabe, M.3
Takeuchi, T.4
Ikawa, T.5
Kawamoto, H.6
Furusawa, J.7
Ohtani, M.8
Fujii, H.9
Koyasu, S.10
-
14
-
-
77951817855
-
Nuocytes represent a new innate effector leukocyte that mediates type-2 immunity
-
Neill D.R., Wong S.H., Bellosi A., Flynn R.J., Daly M., Langford T.K., Bucks C., Kane C.M., Fallon P.G., Pannell R., et al. Nuocytes represent a new innate effector leukocyte that mediates type-2 immunity. Nature 2010, 464:1367-1370.
-
(2010)
Nature
, vol.464
, pp. 1367-1370
-
-
Neill, D.R.1
Wong, S.H.2
Bellosi, A.3
Flynn, R.J.4
Daly, M.5
Langford, T.K.6
Bucks, C.7
Kane, C.M.8
Fallon, P.G.9
Pannell, R.10
-
15
-
-
59649099774
-
A human natural killer cell subset provides an innate source of IL-22 for mucosal immunity
-
Cella M., Fuchs A., Vermi W., Facchetti F., Otero K., Lennerz J.K., Doherty J.M., Mills J.C., Colonna M. A human natural killer cell subset provides an innate source of IL-22 for mucosal immunity. Nature 2009, 457:722-725.
-
(2009)
Nature
, vol.457
, pp. 722-725
-
-
Cella, M.1
Fuchs, A.2
Vermi, W.3
Facchetti, F.4
Otero, K.5
Lennerz, J.K.6
Doherty, J.M.7
Mills, J.C.8
Colonna, M.9
-
16
-
-
78049385155
-
Lineage relationship analysis of RORgammat+ innate lymphoid cells
-
Sawa S., Cherrier M., Lochner M., Satoh-Takayama N., Fehling H.J., Langa F., Di Santo J.P., Eberl G. Lineage relationship analysis of RORgammat+ innate lymphoid cells. Science 2010, 330:665-669.
-
(2010)
Science
, vol.330
, pp. 665-669
-
-
Sawa, S.1
Cherrier, M.2
Lochner, M.3
Satoh-Takayama, N.4
Fehling, H.J.5
Langa, F.6
Di Santo, J.P.7
Eberl, G.8
-
18
-
-
84897480560
-
Maternal retinoids control type 3 innate lymphoid cells and set the offspring immunity
-
van de Pavert S.A., Ferreira M., Domingues R.G., Ribeiro H., Molenaar R., Moreira-Santos L., Almeida F.F., Ibiza S., Barbosa I., Goverse G., et al. Maternal retinoids control type 3 innate lymphoid cells and set the offspring immunity. Nature 2014, 508:123-127.
-
(2014)
Nature
, vol.508
, pp. 123-127
-
-
van de Pavert, S.A.1
Ferreira, M.2
Domingues, R.G.3
Ribeiro, H.4
Molenaar, R.5
Moreira-Santos, L.6
Almeida, F.F.7
Ibiza, S.8
Barbosa, I.9
Goverse, G.10
-
19
-
-
77951878587
-
Innate lymphoid cells drive interleukin-23-dependent innate intestinal pathology
-
Buonocore S., Ahern P.P., Uhlig H.H., Ivanov I.I., Littman D.R., Maloy K.J., Powrie F. Innate lymphoid cells drive interleukin-23-dependent innate intestinal pathology. Nature 2010, 464:1371-1375.
-
(2010)
Nature
, vol.464
, pp. 1371-1375
-
-
Buonocore, S.1
Ahern, P.P.2
Uhlig, H.H.3
Ivanov, I.I.4
Littman, D.R.5
Maloy, K.J.6
Powrie, F.7
-
20
-
-
57849145994
-
Influence of the transcription factor RORgammat on the development of NKp46+ cell populations in gut and skin
-
Luci C., Reynders A., Ivanov I.I., Cognet C., Chiche L., Chasson L., Hardwigsen J., Anguiano E., Banchereau J., Chaussabel D., et al. Influence of the transcription factor RORgammat on the development of NKp46+ cell populations in gut and skin. Nat Immunol 2009, 10:75-82.
-
(2009)
Nat Immunol
, vol.10
, pp. 75-82
-
-
Luci, C.1
Reynders, A.2
Ivanov, I.I.3
Cognet, C.4
Chiche, L.5
Chasson, L.6
Hardwigsen, J.7
Anguiano, E.8
Banchereau, J.9
Chaussabel, D.10
-
21
-
-
57849117363
-
RORgammat and commensal microflora are required for the differentiation of mucosal interleukin 22-producing NKp46+ cells
-
Sanos S.L., Bui V.L., Mortha A., Oberle K., Heners C., Johner C., Diefenbach A. RORgammat and commensal microflora are required for the differentiation of mucosal interleukin 22-producing NKp46+ cells. Nat Immunol 2009, 10:83-91.
-
(2009)
Nat Immunol
, vol.10
, pp. 83-91
-
-
Sanos, S.L.1
Bui, V.L.2
Mortha, A.3
Oberle, K.4
Heners, C.5
Johner, C.6
Diefenbach, A.7
-
22
-
-
0037978900
-
Organogenesis of lymphoid tissues
-
Mebius R.E. Organogenesis of lymphoid tissues. Nat Rev Immunol 2003, 3:292-303.
-
(2003)
Nat Rev Immunol
, vol.3
, pp. 292-303
-
-
Mebius, R.E.1
-
23
-
-
0030710079
-
- LTbeta+ cells that can differentiate to APC, NK cells, and follicular cells but not T or B cells
-
- LTbeta+ cells that can differentiate to APC, NK cells, and follicular cells but not T or B cells. Immunity 1997, 7:493-504.
-
(1997)
Immunity
, vol.7
, pp. 493-504
-
-
Mebius, R.E.1
Rennert, P.2
Weissman, I.L.3
-
24
-
-
0346496018
-
An essential function for the nuclear receptor RORgamma(t) in the generation of fetal lymphoid tissue inducer cells
-
Eberl G., Marmon S., Sunshine M.J., Rennert P.D., Choi Y., Littman D.R. An essential function for the nuclear receptor RORgamma(t) in the generation of fetal lymphoid tissue inducer cells. Nat Immunol 2004, 5:64-73.
-
(2004)
Nat Immunol
, vol.5
, pp. 64-73
-
-
Eberl, G.1
Marmon, S.2
Sunshine, M.J.3
Rennert, P.D.4
Choi, Y.5
Littman, D.R.6
-
25
-
-
57849131584
-
+ natural killer-like cells
-
+ natural killer-like cells. Nat Immunol 2009, 10:66-74.
-
(2009)
Nat Immunol
, vol.10
, pp. 66-74
-
-
Cupedo, T.1
Crellin, N.K.2
Papazian, N.3
Rombouts, E.J.4
Weijer, K.5
Grogan, J.L.6
Fibbe, W.E.7
Cornelissen, J.J.8
Spits, H.9
-
26
-
-
3042720708
-
Thymic origin of intestinal alphabeta T cells revealed by fate mapping of RORgammat+ cells
-
Eberl G., Littman D.R. Thymic origin of intestinal alphabeta T cells revealed by fate mapping of RORgammat+ cells. Science 2004, 305:248-251.
-
(2004)
Science
, vol.305
, pp. 248-251
-
-
Eberl, G.1
Littman, D.R.2
-
27
-
-
56749146467
-
Lymphoid tissue genesis induced by commensals through NOD1 regulates intestinal homeostasis
-
Bouskra D., Brezillon C., Berard M., Werts C., Varona R., Boneca I.G., Eberl G. Lymphoid tissue genesis induced by commensals through NOD1 regulates intestinal homeostasis. Nature 2008, 456:507-510.
-
(2008)
Nature
, vol.456
, pp. 507-510
-
-
Bouskra, D.1
Brezillon, C.2
Berard, M.3
Werts, C.4
Varona, R.5
Boneca, I.G.6
Eberl, G.7
-
28
-
-
48749091530
-
Requirement for lymphoid tissue-inducer cells in isolated follicle formation and T cell-independent immunoglobulin A generation in the gut
-
Tsuji M., Suzuki K., Kitamura H., Maruya M., Kinoshita K., Ivanov I.I., Itoh K., Littman D.R., Fagarasan S. Requirement for lymphoid tissue-inducer cells in isolated follicle formation and T cell-independent immunoglobulin A generation in the gut. Immunity 2008, 29:261-271.
-
(2008)
Immunity
, vol.29
, pp. 261-271
-
-
Tsuji, M.1
Suzuki, K.2
Kitamura, H.3
Maruya, M.4
Kinoshita, K.5
Ivanov, I.I.6
Itoh, K.7
Littman, D.R.8
Fagarasan, S.9
-
29
-
-
84896631269
-
Innate lymphoid cells integrate stromal and immunological signals to enhance antibody production by splenic marginal zone B cells
-
Magri G., Miyajima M., Bascones S., Mortha A., Puga I., Cassis L., Barra C.M., Comerma L., Chudnovskiy A., Gentile M., et al. Innate lymphoid cells integrate stromal and immunological signals to enhance antibody production by splenic marginal zone B cells. Nat Immunol 2014, 15:354-364.
-
(2014)
Nat Immunol
, vol.15
, pp. 354-364
-
-
Magri, G.1
Miyajima, M.2
Bascones, S.3
Mortha, A.4
Puga, I.5
Cassis, L.6
Barra, C.M.7
Comerma, L.8
Chudnovskiy, A.9
Gentile, M.10
-
30
-
-
84865411384
-
Cutting edge: lymphoid tissue inducer cells maintain memory CD4 T cells within secondary lymphoid tissue
-
Withers D.R., Gaspal F.M., Mackley E.C., Marriott C.L., Ross E.A., Desanti G.E., Roberts N.A., White A.J., Flores-Langarica A., McConnell F.M., et al. Cutting edge: lymphoid tissue inducer cells maintain memory CD4 T cells within secondary lymphoid tissue. J Immunol 2012, 189:2094-2098.
-
(2012)
J Immunol
, vol.189
, pp. 2094-2098
-
-
Withers, D.R.1
Gaspal, F.M.2
Mackley, E.C.3
Marriott, C.L.4
Ross, E.A.5
Desanti, G.E.6
Roberts, N.A.7
White, A.J.8
Flores-Langarica, A.9
McConnell, F.M.10
-
31
-
-
33846904226
-
- cells in relation to B- and T-zone stroma in spleen
-
- cells in relation to B- and T-zone stroma in spleen. Blood 2007, 109:1602-1610.
-
(2007)
Blood
, vol.109
, pp. 1602-1610
-
-
Kim, M.Y.1
McConnell, F.M.2
Gaspal, F.M.3
White, A.4
Glanville, S.H.5
Bekiaris, V.6
Walker, L.S.7
Caamano, J.8
Jenkinson, E.9
Anderson, G.10
-
32
-
-
44049100259
-
Restoration of lymphoid organ integrity through the interaction of lymphoid tissue-inducer cells with stroma of the T cell zone
-
Scandella E., Bolinger B., Lattmann E., Miller S., Favre S., Littman D.R., Finke D., Luther S.A., Junt T., Ludewig B. Restoration of lymphoid organ integrity through the interaction of lymphoid tissue-inducer cells with stroma of the T cell zone. Nat Immunol 2008, 9:667-675.
-
(2008)
Nat Immunol
, vol.9
, pp. 667-675
-
-
Scandella, E.1
Bolinger, B.2
Lattmann, E.3
Miller, S.4
Favre, S.5
Littman, D.R.6
Finke, D.7
Luther, S.A.8
Junt, T.9
Ludewig, B.10
-
33
-
-
84863632660
-
Follicular dendritic cells emerge from ubiquitous perivascular precursors
-
Krautler N.J., Kana V., Kranich J., Tian Y., Perera D., Lemm D., Schwarz P., Armulik A., Browning J.L., Tallquist M., et al. Follicular dendritic cells emerge from ubiquitous perivascular precursors. Cell 2012, 150:194-206.
-
(2012)
Cell
, vol.150
, pp. 194-206
-
-
Krautler, N.J.1
Kana, V.2
Kranich, J.3
Tian, Y.4
Perera, D.5
Lemm, D.6
Schwarz, P.7
Armulik, A.8
Browning, J.L.9
Tallquist, M.10
-
34
-
-
79952986650
-
RORgammat+ innate lymphoid cells regulate intestinal homeostasis by integrating negative signals from the symbiotic microbiota
-
Sawa S., Lochner M., Satoh-Takayama N., Dulauroy S., Berard M., Kleinschek M., Cua D., Di Santo J.P., Eberl G. RORgammat+ innate lymphoid cells regulate intestinal homeostasis by integrating negative signals from the symbiotic microbiota. Nat Immunol 2011, 12:320-326.
-
(2011)
Nat Immunol
, vol.12
, pp. 320-326
-
-
Sawa, S.1
Lochner, M.2
Satoh-Takayama, N.3
Dulauroy, S.4
Berard, M.5
Kleinschek, M.6
Cua, D.7
Di Santo, J.P.8
Eberl, G.9
-
35
-
-
57449118239
-
Microbial flora drives interleukin 22 production in intestinal NKp46+ cells that provide innate mucosal immune defense
-
Satoh-Takayama N., Vosshenrich C.A., Lesjean-Pottier S., Sawa S., Lochner M., Rattis F., Mention J.J., Thiam K., Cerf-Bensussan N., Mandelboim O., et al. Microbial flora drives interleukin 22 production in intestinal NKp46+ cells that provide innate mucosal immune defense. Immunity 2008, 29:958-970.
-
(2008)
Immunity
, vol.29
, pp. 958-970
-
-
Satoh-Takayama, N.1
Vosshenrich, C.A.2
Lesjean-Pottier, S.3
Sawa, S.4
Lochner, M.5
Rattis, F.6
Mention, J.J.7
Thiam, K.8
Cerf-Bensussan, N.9
Mandelboim, O.10
-
36
-
-
84861989207
-
Innate lymphoid cells promote anatomical containment of lymphoid-resident commensal bacteria
-
Sonnenberg G.F., Monticelli L.A., Alenghat T., Fung T.C., Hutnick N.A., Kunisawa J., Shibata N., Grunberg S., Sinha R., Zahm A.M., et al. Innate lymphoid cells promote anatomical containment of lymphoid-resident commensal bacteria. Science 2012, 336:1321-1325.
-
(2012)
Science
, vol.336
, pp. 1321-1325
-
-
Sonnenberg, G.F.1
Monticelli, L.A.2
Alenghat, T.3
Fung, T.C.4
Hutnick, N.A.5
Kunisawa, J.6
Shibata, N.7
Grunberg, S.8
Sinha, R.9
Zahm, A.M.10
-
37
-
-
84882668842
-
Group 3 innate lymphoid cells inhibit T-cell-mediated intestinal inflammation through aryl hydrocarbon receptor signaling and regulation of microflora
-
Qiu J., Guo X., Chen Z.M., He L., Sonnenberg G.F., Artis D., Fu Y.X., Zhou L. Group 3 innate lymphoid cells inhibit T-cell-mediated intestinal inflammation through aryl hydrocarbon receptor signaling and regulation of microflora. Immunity 2013, 39:386-399.
-
(2013)
Immunity
, vol.39
, pp. 386-399
-
-
Qiu, J.1
Guo, X.2
Chen, Z.M.3
He, L.4
Sonnenberg, G.F.5
Artis, D.6
Fu, Y.X.7
Zhou, L.8
-
38
-
-
79960500206
-
Lymphotoxin controls the IL-22 protection pathway in gut innate lymphoid cells during mucosal pathogen challenge
-
Tumanov A.V., Koroleva E.P., Guo X., Wang Y., Kruglov A., Nedospasov S., Fu Y.X. Lymphotoxin controls the IL-22 protection pathway in gut innate lymphoid cells during mucosal pathogen challenge. Cell Host Microbe 2011, 10:44-53.
-
(2011)
Cell Host Microbe
, vol.10
, pp. 44-53
-
-
Tumanov, A.V.1
Koroleva, E.P.2
Guo, X.3
Wang, Y.4
Kruglov, A.5
Nedospasov, S.6
Fu, Y.X.7
-
39
-
-
40049083827
-
Interleukin-22 mediates early host defense against attaching and effacing bacterial pathogens
-
Zheng Y., Valdez P.A., Danilenko D.M., Hu Y., Sa S.M., Gong Q., Abbas A.R., Modrusan Z., Ghilardi N., de Sauvage F.J., et al. Interleukin-22 mediates early host defense against attaching and effacing bacterial pathogens. Nat Med 2008, 14:282-289.
-
(2008)
Nat Med
, vol.14
, pp. 282-289
-
-
Zheng, Y.1
Valdez, P.A.2
Danilenko, D.M.3
Hu, Y.4
Sa, S.M.5
Gong, Q.6
Abbas, A.R.7
Modrusan, Z.8
Ghilardi, N.9
de Sauvage, F.J.10
-
40
-
-
38849141814
-
IL-22 ameliorates intestinal inflammation in a mouse model of ulcerative colitis
-
Sugimoto K., Ogawa A., Mizoguchi E., Shimomura Y., Andoh A., Bhan A.K., Blumberg R.S., Xavier R.J., Mizoguchi A. IL-22 ameliorates intestinal inflammation in a mouse model of ulcerative colitis. J Clin Invest 2008, 118:534-544.
-
(2008)
J Clin Invest
, vol.118
, pp. 534-544
-
-
Sugimoto, K.1
Ogawa, A.2
Mizoguchi, E.3
Shimomura, Y.4
Andoh, A.5
Bhan, A.K.6
Blumberg, R.S.7
Xavier, R.J.8
Mizoguchi, A.9
-
41
-
-
84907208430
-
Innate lymphoid cells regulate intestinal epithelial cell glycosylation
-
Goto Y., Obata T., Kunisawa J., Sato S., Ivanov I.I., Lamichhane A., Takeyama N., Kamioka M., Sakamoto M., Matsuki T., et al. Innate lymphoid cells regulate intestinal epithelial cell glycosylation. Science 2014, 345:1254009.
-
(2014)
Science
, vol.345
, pp. 1254009
-
-
Goto, Y.1
Obata, T.2
Kunisawa, J.3
Sato, S.4
Ivanov, I.I.5
Lamichhane, A.6
Takeyama, N.7
Kamioka, M.8
Sakamoto, M.9
Matsuki, T.10
-
42
-
-
84908403149
-
Rapid fucosylation of intestinal epithelium sustains host-commensal symbiosis in sickness
-
Pickard J.M., Maurice C.F., Kinnebrew M.A., Abt M.C., Schenten D., Golovkina T.V., Bogatyrev S.R., Ismagilov R.F., Pamer E.G., Turnbaugh P.J., et al. Rapid fucosylation of intestinal epithelium sustains host-commensal symbiosis in sickness. Nature 2014, 30:638-641.
-
(2014)
Nature
, vol.30
, pp. 638-641
-
-
Pickard, J.M.1
Maurice, C.F.2
Kinnebrew, M.A.3
Abt, M.C.4
Schenten, D.5
Golovkina, T.V.6
Bogatyrev, S.R.7
Ismagilov, R.F.8
Pamer, E.G.9
Turnbaugh, P.J.10
-
43
-
-
84878737123
-
Innate lymphoid cells regulate CD4 T-cell responses to intestinal commensal bacteria
-
Hepworth M.R., Monticelli L.A., Fung T.C., Ziegler C.G., Grunberg S., Sinha R., Mantegazza A.R., Ma H.L., Crawford A., Angelosanto J.M., et al. Innate lymphoid cells regulate CD4 T-cell responses to intestinal commensal bacteria. Nature 2013, 6:113-117.
-
(2013)
Nature
, vol.6
, pp. 113-117
-
-
Hepworth, M.R.1
Monticelli, L.A.2
Fung, T.C.3
Ziegler, C.G.4
Grunberg, S.5
Sinha, R.6
Mantegazza, A.R.7
Ma, H.L.8
Crawford, A.9
Angelosanto, J.M.10
-
44
-
-
84907228164
-
Activated group 3 innate lymphoid cells promote T-cell-mediated immune responses
-
von Burg N., Chappaz S., Baerenwaldt A., Horvath E., Bose Dasgupta S., Ashok D., Pieters J., Tacchini-Cottier F., Rolink A., Acha-Orbea H., et al. Activated group 3 innate lymphoid cells promote T-cell-mediated immune responses. Proc Natl Acad Sci U S A 2014, 111:12835-12840.
-
(2014)
Proc Natl Acad Sci U S A
, vol.111
, pp. 12835-12840
-
-
von Burg, N.1
Chappaz, S.2
Baerenwaldt, A.3
Horvath, E.4
Bose Dasgupta, S.5
Ashok, D.6
Pieters, J.7
Tacchini-Cottier, F.8
Rolink, A.9
Acha-Orbea, H.10
-
45
-
-
58149097584
-
The who, how and where of antigen presentation to B cells
-
Batista F.D., Harwood N.E. The who, how and where of antigen presentation to B cells. Nat Rev Immunol 2009, 9:15-27.
-
(2009)
Nat Rev Immunol
, vol.9
, pp. 15-27
-
-
Batista, F.D.1
Harwood, N.E.2
-
46
-
-
79952675131
-
Follicular helper CD4 T cells (TFH)
-
Crotty S. Follicular helper CD4 T cells (TFH). Annu Rev Immunol 2011, 29:621-663.
-
(2011)
Annu Rev Immunol
, vol.29
, pp. 621-663
-
-
Crotty, S.1
-
47
-
-
84873674970
-
T-cell subsets in the germinal center
-
Ramiscal R.R., Vinuesa C.G. T-cell subsets in the germinal center. Immunol Rev 2013, 252:146-155.
-
(2013)
Immunol Rev
, vol.252
, pp. 146-155
-
-
Ramiscal, R.R.1
Vinuesa, C.G.2
-
49
-
-
84859717525
-
Germinal center selection and the development of memory B and plasma cells
-
Shlomchik M.J., Weisel F. Germinal center selection and the development of memory B and plasma cells. Immunol Rev 2012, 247:52-63.
-
(2012)
Immunol Rev
, vol.247
, pp. 52-63
-
-
Shlomchik, M.J.1
Weisel, F.2
-
50
-
-
0038066310
-
(-) accessory cells costimulate primed CD4 T cells through OX40 and CD30 at sites where T cells collaborate with B cells
-
(-) accessory cells costimulate primed CD4 T cells through OX40 and CD30 at sites where T cells collaborate with B cells. Immunity 2003, 18:643-654.
-
(2003)
Immunity
, vol.18
, pp. 643-654
-
-
Kim, M.Y.1
Gaspal, F.M.2
Wiggett, H.E.3
McConnell, F.M.4
Gulbranson-Judge, A.5
Raykundalia, C.6
Walker, L.S.7
Goodall, M.D.8
Lane, P.J.9
-
51
-
-
77954627022
-
Expansion of human NK-22 cells with IL-7, IL-2, and IL-1beta reveals intrinsic functional plasticity
-
Cella M., Otero K., Colonna M. Expansion of human NK-22 cells with IL-7, IL-2, and IL-1beta reveals intrinsic functional plasticity. Proc Natl Acad Sci U S A 2010, 107:10961-11096.
-
(2010)
Proc Natl Acad Sci U S A
, vol.107
, pp. 10961-11096
-
-
Cella, M.1
Otero, K.2
Colonna, M.3
-
53
-
-
84879602800
-
RORgammat(+) innate lymphoid cells acquire a proinflammatory program upon engagement of the activating receptor NKp44
-
Glatzer T., Killig M., Meisig J., Ommert I., Luetke-Eversloh M., Babic M., Paclik D., Bluthgen N., Seidl R., Seifarth C., et al. RORgammat(+) innate lymphoid cells acquire a proinflammatory program upon engagement of the activating receptor NKp44. Immunity 2013, 38:1223-1235.
-
(2013)
Immunity
, vol.38
, pp. 1223-1235
-
-
Glatzer, T.1
Killig, M.2
Meisig, J.3
Ommert, I.4
Luetke-Eversloh, M.5
Babic, M.6
Paclik, D.7
Bluthgen, N.8
Seidl, R.9
Seifarth, C.10
-
54
-
-
84872946832
-
Marginal zone B cells: virtues of innate-like antibody-producing lymphocytes
-
Cerutti A., Cols M., Puga I. Marginal zone B cells: virtues of innate-like antibody-producing lymphocytes. Nat Rev Immunol 2013, 13:118-132.
-
(2013)
Nat Rev Immunol
, vol.13
, pp. 118-132
-
-
Cerutti, A.1
Cols, M.2
Puga, I.3
-
55
-
-
84855962862
-
B cell-helper neutrophils stimulate the diversification and production of immunoglobulin in the marginal zone of the spleen
-
Puga I., Cols M., Barra C.M., He B., Cassis L., Gentile M., Comerma L., Chorny A., Shan M., Xu W., et al. B cell-helper neutrophils stimulate the diversification and production of immunoglobulin in the marginal zone of the spleen. Nat Immunol 2012, 13:170-180.
-
(2012)
Nat Immunol
, vol.13
, pp. 170-180
-
-
Puga, I.1
Cols, M.2
Barra, C.M.3
He, B.4
Cassis, L.5
Gentile, M.6
Comerma, L.7
Chorny, A.8
Shan, M.9
Xu, W.10
-
56
-
-
34250205694
-
Intestinal bacteria trigger T cell-independent immunoglobulin A(2) class switching by inducing epithelial-cell secretion of the cytokine APRIL
-
He B., Xu W., Santini P.A., Polydorides A.D., Chiu A., Estrella J., Shan M., Chadburn A., Villanacci V., Plebani A., et al. Intestinal bacteria trigger T cell-independent immunoglobulin A(2) class switching by inducing epithelial-cell secretion of the cytokine APRIL. Immunity 2007, 26:812-826.
-
(2007)
Immunity
, vol.26
, pp. 812-826
-
-
He, B.1
Xu, W.2
Santini, P.A.3
Polydorides, A.D.4
Chiu, A.5
Estrella, J.6
Shan, M.7
Chadburn, A.8
Villanacci, V.9
Plebani, A.10
-
57
-
-
84908134474
-
C-type lectin-like receptor LOX-1 promotes dendritic cell-mediated class-switched B cell responses
-
Joo H., Li D., Dullaers M., Kim T.W., Duluc D., Upchurch K., Xue Y., Zurawski S., Le Grand R., Liu Y.J., et al. C-type lectin-like receptor LOX-1 promotes dendritic cell-mediated class-switched B cell responses. Immunity 2014, 41:592-604.
-
(2014)
Immunity
, vol.41
, pp. 592-604
-
-
Joo, H.1
Li, D.2
Dullaers, M.3
Kim, T.W.4
Duluc, D.5
Upchurch, K.6
Xue, Y.7
Zurawski, S.8
Le Grand, R.9
Liu, Y.J.10
-
58
-
-
0036732753
-
DCs induce CD40-independent immunoglobulin class switching through BLyS and APRIL
-
Litinskiy M.B., Nardelli B., Hilbert D.M., He B., Schaffer A., Casali P., Cerutti A. DCs induce CD40-independent immunoglobulin class switching through BLyS and APRIL. Nat Immunol 2002, 3:822-829.
-
(2002)
Nat Immunol
, vol.3
, pp. 822-829
-
-
Litinskiy, M.B.1
Nardelli, B.2
Hilbert, D.M.3
He, B.4
Schaffer, A.5
Casali, P.6
Cerutti, A.7
-
59
-
-
84870280096
-
Macrophages induce differentiation of plasma cells through CXCL10/IP-10
-
S1811-1812
-
Xu W., Joo H., Clayton S., Dullaers M., Herve M.C., Blankenship D., De La Morena M.T., Balderas R., Picard C., Casanova J.L., et al. Macrophages induce differentiation of plasma cells through CXCL10/IP-10. J Exp Med 2012, 209:1813-1823. S1811-1812.
-
(2012)
J Exp Med
, vol.209
, pp. 1813-1823
-
-
Xu, W.1
Joo, H.2
Clayton, S.3
Dullaers, M.4
Herve, M.C.5
Blankenship, D.6
De La Morena, M.T.7
Balderas, R.8
Picard, C.9
Casanova, J.L.10
-
60
-
-
84902581045
-
Intestinal IgA production and its role in host-microbe interaction
-
Gutzeit C., Magri G., Cerutti A. Intestinal IgA production and its role in host-microbe interaction. Immunol Rev 2014, 260:76-85.
-
(2014)
Immunol Rev
, vol.260
, pp. 76-85
-
-
Gutzeit, C.1
Magri, G.2
Cerutti, A.3
-
61
-
-
73349099737
-
A dominant, coordinated T regulatory cell-IgA response to the intestinal microbiota
-
Cong Y., Feng T., Fujihashi K., Schoeb T.R., Elson C.O. A dominant, coordinated T regulatory cell-IgA response to the intestinal microbiota. Proc Natl Acad Sci U S A 2009, 106:19256-19261.
-
(2009)
Proc Natl Acad Sci U S A
, vol.106
, pp. 19256-19261
-
-
Cong, Y.1
Feng, T.2
Fujihashi, K.3
Schoeb, T.R.4
Elson, C.O.5
-
62
-
-
77952311371
-
Adaptive immune regulation in the gut: T cell-dependent and T cell-independent IgA synthesis
-
Fagarasan S., Kawamoto S., Kanagawa O., Suzuki K. Adaptive immune regulation in the gut: T cell-dependent and T cell-independent IgA synthesis. Annu Rev Immunol 2010, 28:243-273.
-
(2010)
Annu Rev Immunol
, vol.28
, pp. 243-273
-
-
Fagarasan, S.1
Kawamoto, S.2
Kanagawa, O.3
Suzuki, K.4
-
63
-
-
84904384753
-
Foxp3(+) T cells regulate immunoglobulin a selection and facilitate diversification of bacterial species responsible for immune homeostasis
-
Kawamoto S., Maruya M., Kato L.M., Suda W., Atarashi K., Doi Y., Tsutsui Y., Qin H., Honda K., Okada T., et al. Foxp3(+) T cells regulate immunoglobulin a selection and facilitate diversification of bacterial species responsible for immune homeostasis. Immunity 2014, 41:152-165.
-
(2014)
Immunity
, vol.41
, pp. 152-165
-
-
Kawamoto, S.1
Maruya, M.2
Kato, L.M.3
Suda, W.4
Atarashi, K.5
Doi, Y.6
Tsutsui, Y.7
Qin, H.8
Honda, K.9
Okada, T.10
-
64
-
-
84860123211
-
The inhibitory receptor PD-1 regulates IgA selection and bacterial composition in the gut
-
Kawamoto S., Tran T.H., Maruya M., Suzuki K., Doi Y., Tsutsui Y., Kato L.M., Fagarasan S. The inhibitory receptor PD-1 regulates IgA selection and bacterial composition in the gut. Science 2012, 336:485-489.
-
(2012)
Science
, vol.336
, pp. 485-489
-
-
Kawamoto, S.1
Tran, T.H.2
Maruya, M.3
Suzuki, K.4
Doi, Y.5
Tsutsui, Y.6
Kato, L.M.7
Fagarasan, S.8
-
65
-
-
84889247024
-
Nonredundant function of soluble LTalpha3 produced by innate lymphoid cells in intestinal homeostasis
-
Kruglov A.A., Grivennikov S.I., Kuprash D.V., Winsauer C., Prepens S., Seleznik G.M., Eberl G., Littman D.R., Heikenwalder M., Tumanov A.V., et al. Nonredundant function of soluble LTalpha3 produced by innate lymphoid cells in intestinal homeostasis. Science 2013, 342:1243-1246.
-
(2013)
Science
, vol.342
, pp. 1243-1246
-
-
Kruglov, A.A.1
Grivennikov, S.I.2
Kuprash, D.V.3
Winsauer, C.4
Prepens, S.5
Seleznik, G.M.6
Eberl, G.7
Littman, D.R.8
Heikenwalder, M.9
Tumanov, A.V.10
-
66
-
-
34548176272
-
Regulation of IgA production by naturally occurring TNF/iNOS-producing dendritic cells
-
Tezuka H., Abe Y., Iwata M., Takeuchi H., Ishikawa H., Matsushita M., Shiohara T., Akira S., Ohteki T. Regulation of IgA production by naturally occurring TNF/iNOS-producing dendritic cells. Nature 2007, 448:929-933.
-
(2007)
Nature
, vol.448
, pp. 929-933
-
-
Tezuka, H.1
Abe, Y.2
Iwata, M.3
Takeuchi, H.4
Ishikawa, H.5
Matsushita, M.6
Shiohara, T.7
Akira, S.8
Ohteki, T.9
-
67
-
-
84897053496
-
Microbiota-dependent crosstalk between macrophages and ILC3 promotes intestinal homeostasis
-
Mortha A., Chudnovskiy A., Hashimoto D., Bogunovic M., Spencer S.P., Belkaid Y., Merad M. Microbiota-dependent crosstalk between macrophages and ILC3 promotes intestinal homeostasis. Science 2014, 343:1249288.
-
(2014)
Science
, vol.343
, pp. 1249288
-
-
Mortha, A.1
Chudnovskiy, A.2
Hashimoto, D.3
Bogunovic, M.4
Spencer, S.P.5
Belkaid, Y.6
Merad, M.7
-
68
-
-
44349195660
-
The regulation of IgA class switching
-
Cerutti A. The regulation of IgA class switching. Nat Rev Immunol 2008, 8:421-434.
-
(2008)
Nat Rev Immunol
, vol.8
, pp. 421-434
-
-
Cerutti, A.1
-
69
-
-
72949113702
-
How did our complex immune system evolve?
-
Cooper M.D., Herrin B.R. How did our complex immune system evolve?. Nat Rev Immunol 2010, 10:2-3.
-
(2010)
Nat Rev Immunol
, vol.10
, pp. 2-3
-
-
Cooper, M.D.1
Herrin, B.R.2
-
70
-
-
0036718611
-
Comparative analyses of immunoglobulin genes: surprises and portents
-
Flajnik M.F. Comparative analyses of immunoglobulin genes: surprises and portents. Nat Rev Immunol 2002, 2:688-698.
-
(2002)
Nat Rev Immunol
, vol.2
, pp. 688-698
-
-
Flajnik, M.F.1
|