-
1
-
-
84902588402
-
Intestinal dendritic cells in the regulation of mucosal immunity
-
Bekiaris, V., E. K. Persson, and W. W. Agace. 2014. Intestinal dendritic cells in the regulation of mucosal immunity. Immunol. Rev. 260: 86-101.
-
(2014)
Immunol. Rev.
, vol.260
, pp. 86-101
-
-
Bekiaris, V.1
Persson, E.K.2
Agace, W.W.3
-
2
-
-
84900461408
-
Development and function of dendritic cell subsets
-
Mildner, A., and S. Jung. 2014. Development and function of dendritic cell subsets. Immunity 40: 642-656.
-
(2014)
Immunity
, vol.40
, pp. 642-656
-
-
Mildner, A.1
Jung, S.2
-
3
-
-
12444297666
-
The conduit system transports soluble antigens from the afferent lymph to resident dendritic cells in the T cell area of the lymph node
-
Sixt, M., N. Kanazawa, M. Selg, T. Samson, G. Roos, D. P. Reinhardt, R. Pabst, M. B. Lutz, and L. Sorokin. 2005. The conduit system transports soluble antigens from the afferent lymph to resident dendritic cells in the T cell area of the lymph node. Immunity 22: 19-29.
-
(2005)
Immunity
, vol.22
, pp. 19-29
-
-
Sixt, M.1
Kanazawa, N.2
Selg, M.3
Samson, T.4
Roos, G.5
Reinhardt, D.P.6
Pabst, R.7
Lutz, M.B.8
Sorokin, L.9
-
4
-
-
0024422064
-
Characterization of sheep afferent lymph dendritic cells and their role in antigen carriage
-
Bujdoso, R., J. Hopkins, B. M. Dutia, P. Young, and I. McConnell. 1989. Characterization of sheep afferent lymph dendritic cells and their role in antigen carriage. J. Exp. Med. 170: 1285-1301.
-
(1989)
J. Exp. Med.
, vol.170
, pp. 1285-1301
-
-
Bujdoso, R.1
Hopkins, J.2
Dutia, B.M.3
Young, P.4
McConnell, I.5
-
5
-
-
0022652789
-
Functional characteristics of the veiled cells in afferent lymph from the rat intestine
-
Mayrhofer, G., P. G. Holt, and J. M. Papadimitriou. 1986. Functional characteristics of the veiled cells in afferent lymph from the rat intestine. Immunology 58: 379-387.
-
(1986)
Immunology
, vol.58
, pp. 379-387
-
-
Mayrhofer, G.1
Holt, P.G.2
Papadimitriou, J.M.3
-
6
-
-
0025859978
-
Lymph-borne (veiled) dendritic cells can acquire and present intestinally administered antigens
-
Liu, L. M., and G. G. MacPherson. 1991. Lymph-borne (veiled) dendritic cells can acquire and present intestinally administered antigens. Immunology 73: 281-286.
-
(1991)
Immunology
, vol.73
, pp. 281-286
-
-
Liu, L.M.1
MacPherson, G.G.2
-
7
-
-
0033214348
-
CCR7 coordinates the primary immune response by establishing functional microenvironments in secondary lymphoid organs
-
Förster, R., A. Schubel, D. Breitfeld, E. Kremmer, I. Renner-Müller, E. Wolf, and M. Lipp. 1999. CCR7 coordinates the primary immune response by establishing functional microenvironments in secondary lymphoid organs. Cell 99: 23-33.
-
(1999)
Cell
, vol.99
, pp. 23-33
-
-
Förster, R.1
Schubel, A.2
Breitfeld, D.3
Kremmer, E.4
Renner-Müller, I.5
Wolf, E.6
Lipp, M.7
-
8
-
-
4143096772
-
CCR7 governs skin dendritic cell migration under inflammatory and steady-state conditions
-
Ohl, L., M. Mohaupt, N. Czeloth, G. Hintzen, Z. Kiafard, J. Zwirner, T. Blankenstein, G. Henning, and R. Förster. 2004. CCR7 governs skin dendritic cell migration under inflammatory and steady-state conditions. Immunity 21: 279-288.
-
(2004)
Immunity
, vol.21
, pp. 279-288
-
-
Ohl, L.1
Mohaupt, M.2
Czeloth, N.3
Hintzen, G.4
Kiafard, Z.5
Zwirner, J.6
Blankenstein, T.7
Henning, G.8
Förster, R.9
-
9
-
-
26844538936
-
Functional specialization of gut CD103+ dendritic cells in the regulation of tissue-selective T cell homing
-
Johansson-Lindbom, B., M. Svensson, O. Pabst, C. Palmqvist, G. Marquez, R. Förster, andW.W. Agace. 2005. Functional specialization of gut CD103+ dendritic cells in the regulation of tissue-selective T cell homing. J. Exp. Med. 202: 1063-1073.
-
(2005)
J. Exp. Med.
, vol.202
, pp. 1063-1073
-
-
Johansson-Lindbom, B.1
Svensson, M.2
Pabst, O.3
Palmqvist, C.4
Marquez, G.5
Förster, R.6
Agace, W.W.7
-
10
-
-
26844468978
-
Essential role for CD103 in the T cell-mediated regulation of experimental colitis
-
Annacker, O., J. L. Coombes, V. Malmstrom, H. H. Uhlig, T. Bourne, B. Johansson-Lindbom, W. W. Agace, C. M. Parker, and F. Powrie. 2005. Essential role for CD103 in the T cell-mediated regulation of experimental colitis. J. Exp. Med. 202: 1051-1061.
-
(2005)
J. Exp. Med.
, vol.202
, pp. 1051-1061
-
-
Annacker, O.1
Coombes, J.L.2
Malmstrom, V.3
Uhlig, H.H.4
Bourne, T.5
Johansson-Lindbom, B.6
Agace, W.W.7
Parker, C.M.8
Powrie, F.9
-
11
-
-
34547788180
-
A functionally specialized population of mucosal CD103+ DCs induces Foxp3+ regulatory T cells via a TGF-beta and retinoic acid-dependent mechanism
-
Coombes, J. L., K. R. R. Siddiqui, C. V. Arancibia-Cárcamo, J. Hall, C.-M. Sun, Y. Belkaid, and F. Powrie. 2007. A functionally specialized population of mucosal CD103+ DCs induces Foxp3+ regulatory T cells via a TGF-beta and retinoic acid-dependent mechanism. J. Exp. Med. 204: 1757-1764.
-
(2007)
J. Exp. Med.
, vol.204
, pp. 1757-1764
-
-
Coombes, J.L.1
Siddiqui, K.R.R.2
Arancibia-Cárcamo, C.V.3
Hall, J.4
Sun, C.-M.5
Belkaid, Y.6
Powrie, F.7
-
12
-
-
34547757390
-
Small intestine lamina propria dendritic cells promote de novo generation of Foxp3 T reg cells via retinoic acid
-
Sun, C.-M., J. A. Hall, R. B. Blank, N. Bouladoux, M. Oukka, J. R. Mora, and Y. Belkaid. 2007. Small intestine lamina propria dendritic cells promote de novo generation of Foxp3 T reg cells via retinoic acid. J. Exp. Med. 204: 1775-1785.
-
(2007)
J. Exp. Med.
, vol.204
, pp. 1775-1785
-
-
Sun, C.-M.1
Hall, J.A.2
Blank, R.B.3
Bouladoux, N.4
Oukka, M.5
Mora, J.R.6
Belkaid, Y.7
-
13
-
-
33645054315
-
Oral tolerance originates in the intestinal immune system and relies on antigen carriage by dendritic cells
-
Worbs, T., U. Bode, S. Yan, M.W. Hoffmann, G. Hintzen, G. Bernhardt, R. Förster, and O. Pabst. 2006. Oral tolerance originates in the intestinal immune system and relies on antigen carriage by dendritic cells. J. Exp. Med. 203: 519-527.
-
(2006)
J. Exp. Med.
, vol.203
, pp. 519-527
-
-
Worbs, T.1
Bode, U.2
Yan, S.3
Hoffmann, M.W.4
Hintzen, G.5
Bernhardt, G.6
Förster, R.7
Pabst, O.8
-
14
-
-
51049092467
-
Small intestinal CD103+ dendritic cells display unique functional properties that are conserved between mice and humans
-
Jaensson, E., H. Uronen-Hansson, O. Pabst, B. Eksteen, J. Tian, J. L. Coombes, P.-L. Berg, T. Davidsson, F. Powrie, B. Johansson-Lindbom, and W. W. Agace. 2008. Small intestinal CD103+ dendritic cells display unique functional properties that are conserved between mice and humans. J. Exp. Med. 205: 2139-2149.
-
(2008)
J. Exp. Med.
, vol.205
, pp. 2139-2149
-
-
Jaensson, E.1
Uronen-Hansson, H.2
Pabst, O.3
Eksteen, B.4
Tian, J.5
Coombes, J.L.6
Berg, P.-L.7
Davidsson, T.8
Powrie, F.9
Johansson-Lindbom, B.10
Agace, W.W.11
-
15
-
-
84874069797
-
Intestinal CD103(-) dendritic cells migrate in lymph and prime effector T cells
-
Cerovic, V., S. A. Houston, C. L. Scott, A. Aumeunier, U. Yrlid, A. M. Mowat, and S. W. F. Milling. 2013. Intestinal CD103(-) dendritic cells migrate in lymph and prime effector T cells. Mucosal Immunol. 6: 104-113.
-
(2013)
Mucosal Immunol.
, vol.6
, pp. 104-113
-
-
Cerovic, V.1
Houston, S.A.2
Scott, C.L.3
Aumeunier, A.4
Yrlid, U.5
Mowat, A.M.6
Milling, S.W.F.7
-
16
-
-
0028895941
-
Endotoxin-mediated dendritic cell release from the intestine: Characterization of released dendritic cells and TNF dependence
-
MacPherson, G. G., C. D. Jenkins, M. J. Stein, and C. Edwards. 1995. Endotoxin-mediated dendritic cell release from the intestine: characterization of released dendritic cells and TNF dependence. J. Immunol. 154: 1317-1322.
-
(1995)
J. Immunol.
, vol.154
, pp. 1317-1322
-
-
MacPherson, G.G.1
Jenkins, C.D.2
Stein, M.J.3
Edwards, C.4
-
17
-
-
33645962487
-
Regulation of intestinal dendritic cell migration and activation by plasmacytoid dendritic cells, TNF-alpha and type 1 IFNs after feeding a TLR7/8 ligand
-
Yrlid, U., S. W. F. Milling, J. L. Miller, S. Cartland, C. D. Jenkins, and G. G. MacPherson. 2006. Regulation of intestinal dendritic cell migration and activation by plasmacytoid dendritic cells, TNF-alpha and type 1 IFNs after feeding a TLR7/8 ligand. J. Immunol. 176: 5205-5212.
-
(2006)
J. Immunol.
, vol.176
, pp. 5205-5212
-
-
Yrlid, U.1
Milling, S.W.F.2
Miller, J.L.3
Cartland, S.4
Jenkins, C.D.5
MacPherson, G.G.6
-
18
-
-
84871150034
-
Systemic flagellin immunization stimulates mucosal CD103+ dendritic cells and drives Foxp3+ regulatory T cell and IgA responses in the mesenteric lymph node
-
Flores-Langarica, A., J. L. Marshall, J. Hitchcock, C. Cook, J. Jobanputra, S. Bobat, E. A. Ross, R. E. Coughlan, I. R. Henderson, S. Uematsu, et al. 2012. Systemic flagellin immunization stimulates mucosal CD103+ dendritic cells and drives Foxp3+ regulatory T cell and IgA responses in the mesenteric lymph node. J. Immunol. 189: 5745-5754.
-
(2012)
J. Immunol.
, vol.189
, pp. 5745-5754
-
-
Flores-Langarica, A.1
Marshall, J.L.2
Hitchcock, J.3
Cook, C.4
Jobanputra, J.5
Bobat, S.6
Ross, E.A.7
Coughlan, R.E.8
Henderson, I.R.9
Uematsu, S.10
-
19
-
-
0032526346
-
Expanding dendritic cells in vivo enhances the induction of oral tolerance
-
Viney, J. L., A. M. Mowat, J. M. O'Malley, E. Williamson, and N. A. Fanger. 1998. Expanding dendritic cells in vivo enhances the induction of oral tolerance. J. Immunol. 160: 5815-5825.
-
(1998)
J. Immunol.
, vol.160
, pp. 5815-5825
-
-
Viney, J.L.1
Mowat, A.M.2
O'Malley, J.M.3
Williamson, E.4
Fanger, N.A.5
-
20
-
-
70249131137
-
Type i interferon signaling in dendritic cells stimulates the development of lymph-node-resident T follicular helper cells
-
Cucak, H., U. Yrlid, B. Reizis, U. Kalinke, and B. Johansson-Lindbom. 2009. Type I interferon signaling in dendritic cells stimulates the development of lymph-node-resident T follicular helper cells. Immunity 31: 491-501.
-
(2009)
Immunity
, vol.31
, pp. 491-501
-
-
Cucak, H.1
Yrlid, U.2
Reizis, B.3
Kalinke, U.4
Johansson-Lindbom, B.5
-
21
-
-
0031985413
-
TNF receptor-deficient mice reveal divergent roles for p55 and p75 in several models of inflammation
-
Peschon, J. J., D. S. Torrance, K. L. Stocking, M. B. Glaccum, C. Otten, C. R. Willis, K. Charrier, P. J. Morrissey, C. B. Ware, and K. M. Mohler. 1998. TNF receptor-deficient mice reveal divergent roles for p55 and p75 in several models of inflammation. J. Immunol. 160: 943-952.
-
(1998)
J. Immunol.
, vol.160
, pp. 943-952
-
-
Peschon, J.J.1
Torrance, D.S.2
Stocking, K.L.3
Glaccum, M.B.4
Otten, C.5
Willis, C.R.6
Charrier, K.7
Morrissey, P.J.8
Ware, C.B.9
Mohler, K.M.10
-
22
-
-
23844435577
-
TNF-alpha-dependent and -independent maturation of dendritic cells and recruited CD11c(int)CD11b+ cells during oral Salmonella infection
-
Sundquist, M., and M. J. Wick. 2005. TNF-alpha-dependent and -independent maturation of dendritic cells and recruited CD11c(int)CD11b+ cells during oral Salmonella infection. J. Immunol. 175: 3287-3298.
-
(2005)
J. Immunol.
, vol.175
, pp. 3287-3298
-
-
Sundquist, M.1
Wick, M.J.2
-
23
-
-
0033136775
-
Cutting edge: Generation of IL-18 receptor-deficient mice: Evidence for IL-1 receptor-related protein as an essential IL-18 binding receptor
-
Hoshino, K., H. Tsutsui, T. Kawai, K. Takeda, K. Nakanishi, Y. Takeda, and S. Akira. 1999. Cutting edge: generation of IL-18 receptor-deficient mice: evidence for IL-1 receptor-related protein as an essential IL-18 binding receptor. J. Immunol. 162: 5041-5044.
-
(1999)
J. Immunol.
, vol.162
, pp. 5041-5044
-
-
Hoshino, K.1
Tsutsui, H.2
Kawai, T.3
Takeda, K.4
Nakanishi, K.5
Takeda, Y.6
Akira, S.7
-
24
-
-
48749132777
-
Toll-like receptors activate innate and adaptive immunity by using dendritic cell-intrinsic and -extrinsic mechanisms
-
Hou, B., B. Reizis, and A. L. DeFranco. 2008. Toll-like receptors activate innate and adaptive immunity by using dendritic cell-intrinsic and -extrinsic mechanisms. Immunity 29: 272-282.
-
(2008)
Immunity
, vol.29
, pp. 272-282
-
-
Hou, B.1
Reizis, B.2
DeFranco, A.L.3
-
25
-
-
34447275920
-
Notch-RBP-J signaling controls the homeostasis of CD8- dendritic cells in the spleen
-
Caton, M. L., M. R. Smith-Raska, and B. Reizis. 2007. Notch-RBP-J signaling controls the homeostasis of CD8- dendritic cells in the spleen. J. Exp. Med. 204: 1653-1664.
-
(2007)
J. Exp. Med.
, vol.204
, pp. 1653-1664
-
-
Caton, M.L.1
Smith-Raska, M.R.2
Reizis, B.3
-
26
-
-
0032127279
-
Targeted disruption of the MyD88 gene results in loss of IL-1- and IL-18-mediated function
-
Adachi, O., T. Kawai, K. Takeda, M. Matsumoto, H. Tsutsui, M. Sakagami, K. Nakanishi, and S. Akira. 1998. Targeted disruption of the MyD88 gene results in loss of IL-1- and IL-18-mediated function. Immunity 9: 143-150.
-
(1998)
Immunity
, vol.9
, pp. 143-150
-
-
Adachi, O.1
Kawai, T.2
Takeda, K.3
Matsumoto, M.4
Tsutsui, H.5
Sakagami, M.6
Nakanishi, K.7
Akira, S.8
-
27
-
-
0043176281
-
Role of adaptor TRIF in the MyD88-independent Toll-like receptor signaling pathway
-
Yamamoto, M., S. Sato, H. Hemmi, K. Hoshino, T. Kaisho, H. Sanjo, O. Takeuchi, M. Sugiyama, M. Okabe, K. Takeda, and S. Akira. 2003. Role of adaptor TRIF in the MyD88-independent Toll-like receptor signaling pathway. Science 301: 640-643.
-
(2003)
Science
, vol.301
, pp. 640-643
-
-
Yamamoto, M.1
Sato, S.2
Hemmi, H.3
Hoshino, K.4
Kaisho, T.5
Sanjo, H.6
Takeuchi, O.7
Sugiyama, M.8
Okabe, M.9
Takeda, K.10
Akira, S.11
-
28
-
-
34548864372
-
Collection of lymphborne dendritic cells in the rat
-
Milling, S. W. F., C. Jenkins, and G. MacPherson. 2006. Collection of lymphborne dendritic cells in the rat. Nat. Protoc. 1: 2263-2270.
-
(2006)
Nat. Protoc.
, vol.1
, pp. 2263-2270
-
-
Milling, S.W.F.1
Jenkins, C.2
MacPherson, G.3
-
29
-
-
77954131234
-
Intestinal inflammation abrogates the tolerogenic properties of MLN CD103+ dendritic cells
-
Laffont, S., K. R. R. Siddiqui, and F. Powrie. 2010. Intestinal inflammation abrogates the tolerogenic properties of MLN CD103+ dendritic cells. Eur. J. Immunol. 40: 1877-1883.
-
(2010)
Eur. J. Immunol.
, vol.40
, pp. 1877-1883
-
-
Laffont, S.1
Siddiqui, K.R.R.2
Powrie, F.3
-
30
-
-
73949107838
-
Intestinal CD103+, but not CX3CR1+, antigen sampling cells migrate in lymph and serve classical dendritic cell functions
-
Schulz, O., E. Jaensson, E. K. Persson, X. Liu, T. Worbs, W. W. Agace, and O. Pabst. 2009. Intestinal CD103+, but not CX3CR1+, antigen sampling cells migrate in lymph and serve classical dendritic cell functions. J. Exp. Med. 206: 3101-3114.
-
(2009)
J. Exp. Med.
, vol.206
, pp. 3101-3114
-
-
Schulz, O.1
Jaensson, E.2
Persson, E.K.3
Liu, X.4
Worbs, T.5
Agace, W.W.6
Pabst, O.7
-
31
-
-
39749178448
-
Normal proportion and expression of maturation markers in migratory dendritic cells in the absence of germs or Toll-like receptor signaling
-
Wilson, N. S., L. J. Young, F. Kupresanin, S. H. Naik, D. Vremec, W. R. Heath, S. Akira, K. Shortman, J. Boyle, E. Maraskovsky, et al. 2008. Normal proportion and expression of maturation markers in migratory dendritic cells in the absence of germs or Toll-like receptor signaling. Immunol. Cell Biol. 86: 200-205.
-
(2008)
Immunol. Cell Biol.
, vol.86
, pp. 200-205
-
-
Wilson, N.S.1
Young, L.J.2
Kupresanin, F.3
Naik, S.H.4
Vremec, D.5
Heath, W.R.6
Akira, S.7
Shortman, K.8
Boyle, J.9
Maraskovsky, E.10
-
32
-
-
84893646173
-
Dendritic cell subsets in the intestinal lamina propria: Ontogeny and function
-
Persson, E. K., C. L. Scott, A. M. Mowat, and W. W. Agace. 2013. Dendritic cell subsets in the intestinal lamina propria: ontogeny and function. Eur. J. Immunol. 43: 3098-3107.
-
(2013)
Eur. J. Immunol.
, vol.43
, pp. 3098-3107
-
-
Persson, E.K.1
Scott, C.L.2
Mowat, A.M.3
Agace, W.W.4
-
33
-
-
62649139025
-
Immunological and inflammatory functions of the interleukin-1 family
-
Dinarello, C. A. 2009. Immunological and inflammatory functions of the interleukin-1 family. Annu. Rev. Immunol. 27: 519-550.
-
(2009)
Annu. Rev. Immunol.
, vol.27
, pp. 519-550
-
-
Dinarello, C.A.1
-
34
-
-
84927661602
-
Inflammasome-independent regulation of IL-1-family cytokines
-
Netea, M. G., F. L. van de Veerdonk, J. W. van der Meer, C. A. Dinarello, and L. A. Joosten. 2015. Inflammasome-independent regulation of IL-1-family cytokines. Annu. Rev. Immunol. 33: 49-77.
-
(2015)
Annu. Rev. Immunol.
, vol.33
, pp. 49-77
-
-
Netea, M.G.1
Veerdonk De Van, F.L.2
Meer Der Van, J.W.3
Dinarello, C.A.4
Joosten, L.A.5
-
35
-
-
84897053496
-
Microbiota-dependent crosstalk between macrophages and ILC3 promotes intestinal homeostasis
-
Mortha, A., A. Chudnovskiy, D. Hashimoto, M. Bogunovic, S. P. Spencer, Y. Belkaid, and M. Merad. 2014. Microbiota-dependent crosstalk between macrophages and ILC3 promotes intestinal homeostasis. Science 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
-
36
-
-
34249284197
-
Use of axenic animals in studying the adaptation of mammals to their commensal intestinal microbiota
-
Smith, K., K. D. McCoy, and A. J. Macpherson. 2007. Use of axenic animals in studying the adaptation of mammals to their commensal intestinal microbiota. Semin. Immunol. 19: 59-69.
-
(2007)
Semin. Immunol.
, vol.19
, pp. 59-69
-
-
Smith, K.1
McCoy, K.D.2
MacPherson, A.J.3
-
37
-
-
5644300399
-
Retinoic acid imprints gut-homing specificity on T cells
-
Iwata, M., A. Hirakiyama, Y. Eshima, H. Kagechika, C. Kato, and S.-Y. Song. 2004. Retinoic acid imprints gut-homing specificity on T cells. Immunity 21: 527-538.
-
(2004)
Immunity
, vol.21
, pp. 527-538
-
-
Iwata, M.1
Hirakiyama, A.2
Eshima, Y.3
Kagechika, H.4
Kato, C.5
Song, S.-Y.6
-
38
-
-
0035903326
-
Dendritic cells induce peripheral T cell unresponsiveness under steady state conditions in vivo
-
Hawiger, D., K. Inaba, Y. Dorsett, M. Guo, K. Mahnke, M. Rivera, J. V. Ravetch, R. M. Steinman, and M. C. Nussenzweig. 2001. Dendritic cells induce peripheral T cell unresponsiveness under steady state conditions in vivo. J. Exp. Med. 194: 769-779.
-
(2001)
J. Exp. Med.
, vol.194
, pp. 769-779
-
-
Hawiger, D.1
Inaba, K.2
Dorsett, Y.3
Guo, M.4
Mahnke, K.5
Rivera, M.6
Ravetch, J.V.7
Steinman, R.M.8
Nussenzweig, M.C.9
-
39
-
-
30744474950
-
CCR7 is critically important for migration of dendritic cells in intestinal lamina propria to mesenteric lymph nodes
-
Jang, M. H., N. Sougawa, T. Tanaka, T. Hirata, T. Hiroi, K. Tohya, Z. Guo, E. Umemoto, Y. Ebisuno, B.-G. Yang, et al. 2006. CCR7 is critically important for migration of dendritic cells in intestinal lamina propria to mesenteric lymph nodes. J. Immunol. 176: 803-810.
-
(2006)
J. Immunol.
, vol.176
, pp. 803-810
-
-
Jang, M.H.1
Sougawa, N.2
Tanaka, T.3
Hirata, T.4
Hiroi, T.5
Tohya, K.6
Guo, Z.7
Umemoto, E.8
Ebisuno, Y.9
Yang, B.-G.10
-
40
-
-
84926645140
-
Lymph-borne CD8a+ dendritic cells are uniquely able to cross-prime CD8+ T cells with antigen acquired from intestinal epithelial cells
-
Cerovic, V., S. A. Houston, J. Westlund, L. Utriainen, E. S. Davison, C. L. Scott, C. C. Bain, T. Joeris, W. W. Agace, and R. A. Kroczek, et al. 2015. Lymph-borne CD8a+ dendritic cells are uniquely able to cross-prime CD8+ T cells with antigen acquired from intestinal epithelial cells. Mucosal Immunol. 8: 38-48.
-
(2015)
Mucosal Immunol.
, vol.8
, pp. 38-48
-
-
Cerovic, V.1
Houston, S.A.2
Westlund, J.3
Utriainen, L.4
Davison, E.S.5
Scott, C.L.6
Bain, C.C.7
Joeris, T.8
Agace, W.W.9
Kroczek, R.A.10
-
41
-
-
84908003512
-
TLR5-mediated sensing of gut microbiota is necessary for antibody responses to seasonal influenza vaccination
-
Oh, J. Z., R. Ravindran, B. Chassaing, F. A. Carvalho, M. S. Maddur, M. Bower, P. Hakimpour, K. P. Gill, H. I. Nakaya, F. Yarovinsky, et al. 2014. TLR5-mediated sensing of gut microbiota is necessary for antibody responses to seasonal influenza vaccination. Immunity 41: 478-492.
-
(2014)
Immunity
, vol.41
, pp. 478-492
-
-
Oh, J.Z.1
Ravindran, R.2
Chassaing, B.3
Carvalho, F.A.4
Maddur, M.S.5
Bower, M.6
Hakimpour, P.7
Gill, K.P.8
Nakaya, H.I.9
Yarovinsky, F.10
-
42
-
-
76249120134
-
Recognition of peptidoglycan from the microbiota by Nod1 enhances systemic innate immunity
-
Clarke, T. B., K. M. Davis, E. S. Lysenko, A. Y. Zhou, Y. Yu, and J. N. Weiser. 2010. Recognition of peptidoglycan from the microbiota by Nod1 enhances systemic innate immunity. Nat. Med. 16: 228-231.
-
(2010)
Nat. Med.
, vol.16
, pp. 228-231
-
-
Clarke, T.B.1
Davis, K.M.2
Lysenko, E.S.3
Zhou, A.Y.4
Yu, Y.5
Weiser, J.N.6
-
43
-
-
0034614894
-
A discrete subpopulation of dendritic cells transports apoptotic intestinal epithelial cells to T cell areas of mesenteric lymph nodes
-
Huang, F. P., N. Platt, M. Wykes, J. R. Major, T. J. Powell, C. D. Jenkins, and G. G. MacPherson. 2000. A discrete subpopulation of dendritic cells transports apoptotic intestinal epithelial cells to T cell areas of mesenteric lymph nodes. J. Exp. Med. 191: 435-444.
-
(2000)
J. Exp. Med.
, vol.191
, pp. 435-444
-
-
Huang, F.P.1
Platt, N.2
Wykes, M.3
Major, J.R.4
Powell, T.J.5
Jenkins, C.D.6
MacPherson, G.G.7
-
44
-
-
27744510768
-
Dendritic cells in germ-free and specific pathogen-free mice have similar phenotypes and in vitro antigen presenting function
-
Walton, K. L. W., J. He, B. L. Kelsall, R. B. Sartor, and N. C. Fisher. 2006. Dendritic cells in germ-free and specific pathogen-free mice have similar phenotypes and in vitro antigen presenting function. Immunol. Lett. 102: 16-24.
-
(2006)
Immunol. Lett.
, vol.102
, pp. 16-24
-
-
Walton, K.L.W.1
He, J.2
Kelsall, B.L.3
Sartor, R.B.4
Fisher, N.C.5
-
45
-
-
80052845560
-
Caspase-8 regulates TNF-a-induced epithelial necroptosis and terminal ileitis
-
Günther, C., E. Martini, N. Wittkopf, K. Amann, B. Weigmann, H. Neumann, M. J. Waldner, S. M. Hedrick, S. Tenzer, M. F. Neurath, and C. Becker. 2011. Caspase-8 regulates TNF-a-induced epithelial necroptosis and terminal ileitis. Nature 477: 335-339.
-
(2011)
Nature
, vol.477
, pp. 335-339
-
-
Günther, C.1
Martini, E.2
Wittkopf, N.3
Amann, K.4
Weigmann, B.5
Neumann, H.6
Waldner, M.J.7
Hedrick, S.M.8
Tenzer, S.9
Neurath, M.F.10
Becker, C.11
-
46
-
-
84874263775
-
Necroptosis: The release of damage-associated molecular patterns and its physiological relevance
-
Kaczmarek, A., P. Vandenabeele, and D. V. Krysko. 2013. Necroptosis: the release of damage-associated molecular patterns and its physiological relevance. Immunity 38: 209-223.
-
(2013)
Immunity
, vol.38
, pp. 209-223
-
-
Kaczmarek, A.1
Vandenabeele, P.2
Krysko, D.V.3
-
47
-
-
35748945719
-
The grateful dead: Damage-associated molecular pattern molecules and reduction/ oxidation regulate immunity
-
Lotze, M. T., H. J. Zeh, A. Rubartelli, L. J. Sparvero, A. A. Amoscato, N. R. Washburn, M. E. Devera, X. Liang, M. Tör, and T. Billiar. 2007. The grateful dead: damage-associated molecular pattern molecules and reduction/ oxidation regulate immunity. Immunol. Rev. 220: 60-81.
-
(2007)
Immunol. Rev.
, vol.220
, pp. 60-81
-
-
Lotze, M.T.1
Zeh, H.J.2
Rubartelli, A.3
Sparvero, L.J.4
Amoscato, A.A.5
Washburn, N.R.6
Devera, M.E.7
Liang, X.8
Tör, M.9
Billiar, T.10
-
48
-
-
84872435502
-
Interstitial dendritic cell guidance by haptotactic chemokine gradients
-
Weber, M., R. Hauschild, J. Schwarz, C. Moussion, I. de Vries, D. F. Legler, S. A. Luther, T. Bollenbach, and M. Sixt. 2013. Interstitial dendritic cell guidance by haptotactic chemokine gradients. Science 339: 328-332.
-
(2013)
Science
, vol.339
, pp. 328-332
-
-
Weber, M.1
Hauschild, R.2
Schwarz, J.3
Moussion, C.4
De Vries, I.5
Legler, D.F.6
Luther, S.A.7
Bollenbach, T.8
Sixt, M.9
-
49
-
-
0033989109
-
Ultrastructural and three dimensional aspects of the lymphatic vessels of the absorbing peripheral lymphatic apparatus in Peyer's patches of the rabbit
-
Azzali, G., and M. L. Arcari. 2000. Ultrastructural and three dimensional aspects of the lymphatic vessels of the absorbing peripheral lymphatic apparatus in Peyer's patches of the rabbit. Anat. Rec. 258: 71-79.
-
(2000)
Anat. Rec.
, vol.258
, pp. 71-79
-
-
Azzali, G.1
Arcari, M.L.2
-
50
-
-
76149126108
-
Lymphatic endothelial cell sphingosine kinase activity is required for lymphocyte egress and lymphatic patterning
-
Pham, T. H. M., P. Baluk, Y. Xu, I. Grigorova, A. J. Bankovich, R. Pappu, S. R. Coughlin, D. M. McDonald, S. R. Schwab, and J. G. Cyster. 2010. Lymphatic endothelial cell sphingosine kinase activity is required for lymphocyte egress and lymphatic patterning. J. Exp. Med. 207: 17-27.
-
(2010)
J. Exp. Med.
, vol.207
, pp. 17-27
-
-
Pham, T.H.M.1
Baluk, P.2
Xu, Y.3
Grigorova, I.4
Bankovich, A.J.5
Pappu, R.6
Coughlin, S.R.7
McDonald, D.M.8
Schwab, S.R.9
Cyster, J.G.10
-
51
-
-
84880669087
-
CXCR4 promotes B cell egress from Peyer's patches
-
Schmidt, T. H., O. Bannard, E. E. Gray, and J. G. Cyster. 2013. CXCR4 promotes B cell egress from Peyer's patches. J. Exp. Med. 210: 1099-1107.
-
(2013)
J. Exp. Med.
, vol.210
, pp. 1099-1107
-
-
Schmidt, T.H.1
Bannard, O.2
Gray, E.E.3
Cyster, J.G.4
-
52
-
-
84928206908
-
Homeostatic NF-kB signaling in steady-state migratory dendritic cells regulates immune homeostasis and tolerance
-
Baratin, M., C. Foray, O. Demaria, M. Habbeddine, E. Pollet, J. Maurizio, C. Verthuy, S. Davanture, H. Azukizawa, A. Flores-Langarica, et al. 2015. Homeostatic NF-kB signaling in steady-state migratory dendritic cells regulates immune homeostasis and tolerance. Immunity 42: 627-639.
-
(2015)
Immunity
, vol.42
, pp. 627-639
-
-
Baratin, M.1
Foray, C.2
Demaria, O.3
Habbeddine, M.4
Pollet, E.5
Maurizio, J.6
Verthuy, C.7
Davanture, S.8
Azukizawa, H.9
Flores-Langarica, A.10
-
53
-
-
79960400021
-
MyD88-dependent TLR1/2 signals educate dendritic cells with gut-specific imprinting properties
-
Wang, S., E. J. Villablanca, J. De Calisto, D. C. O. Gomes, D. D. Nguyen, E. Mizoguchi, J. C. Kagan, H.-C. Reinecker, N. Hacohen, C. Nagler, et al. 2011. MyD88-dependent TLR1/2 signals educate dendritic cells with gut-specific imprinting properties. J. Immunol. 187: 141-150.
-
(2011)
J. Immunol.
, vol.187
, pp. 141-150
-
-
Wang, S.1
Villablanca, E.J.2
De Calisto, J.3
Gomes, D.C.O.4
Nguyen, D.D.5
Mizoguchi, E.6
Kagan, J.C.7
Reinecker, H.-C.8
Hacohen, N.9
Nagler, C.10
-
54
-
-
79951821905
-
Expression of retinaldehyde dehydrogenase enzymes in mucosal dendritic cells and gut-draining lymph node stromal cells is controlled by dietary Vitamin A
-
Molenaar, R., M. Knippenberg, G. Goverse, B. J. Olivier, A. F. de Vos, T. O'Toole, and R. E. Mebius. 2011. Expression of retinaldehyde dehydrogenase enzymes in mucosal dendritic cells and gut-draining lymph node stromal cells is controlled by dietary vitamin A. J. Immunol. 186: 1934-1942.
-
(2011)
J. Immunol.
, vol.186
, pp. 1934-1942
-
-
Molenaar, R.1
Knippenberg, M.2
Goverse, G.3
Olivier, B.J.4
De Vos, A.F.5
O'Toole, T.6
Mebius, R.E.7
-
55
-
-
42449110816
-
Phosphatidylinositol-3-OH kinase and nutrient-sensing mTOR pathways control T lymphocyte trafficking
-
Sinclair, L. V., D. Finlay, C. Feijoo, G. H. Cornish, A. Gray, A. Ager, K. Okkenhaug, T. J. Hagenbeek, H. Spits, and D. A. Cantrell. 2008. Phosphatidylinositol-3-OH kinase and nutrient-sensing mTOR pathways control T lymphocyte trafficking. Nat. Immunol. 9: 513-521.
-
(2008)
Nat. Immunol.
, vol.9
, pp. 513-521
-
-
Sinclair, L.V.1
Finlay, D.2
Feijoo, C.3
Cornish, G.H.4
Gray, A.5
Ager, A.6
Okkenhaug, K.7
Hagenbeek, T.J.8
Spits, H.9
Cantrell, D.A.10
-
56
-
-
84865372949
-
Dynamic in situ cytometry uncovers T cell receptor signaling during immunological synapses and kinapses in vivo
-
Moreau, H. D., F. Lemaitre, E. Terriac, G. Azar, M. Piel, A.-M. Lennon-Dumenil, and P. Bousso. 2012. Dynamic in situ cytometry uncovers T cell receptor signaling during immunological synapses and kinapses in vivo. Immunity 37: 351-363.
-
(2012)
Immunity
, vol.37
, pp. 351-363
-
-
Moreau, H.D.1
Lemaitre, F.2
Terriac, E.3
Azar, G.4
Piel, M.5
Lennon-Dumenil, A.-M.6
Bousso, P.7
|