-
1
-
-
46749135222
-
Blood monocytes: distinct subsets, how they relate to dendritic cells, and their possible roles in the regulation of T-cell responses
-
Geissmann F., Auffray C., Palframan R., Wirrig C., Ciocca A., Campisi L., Narni-Mancinelli E., Lauvau G. Blood monocytes: distinct subsets, how they relate to dendritic cells, and their possible roles in the regulation of T-cell responses. Immunol. Cell Biol. 2008, 86:398-408.
-
(2008)
Immunol. Cell Biol.
, vol.86
, pp. 398-408
-
-
Geissmann, F.1
Auffray, C.2
Palframan, R.3
Wirrig, C.4
Ciocca, A.5
Campisi, L.6
Narni-Mancinelli, E.7
Lauvau, G.8
-
2
-
-
67649404131
-
Blood monocytes: development, heterogeneity, and relationship with dendritic cells
-
Auffray C., Sieweke M.H., Geissmann F. Blood monocytes: development, heterogeneity, and relationship with dendritic cells. Annu. Rev. Immunol. 2009, 27:669-692.
-
(2009)
Annu. Rev. Immunol.
, vol.27
, pp. 669-692
-
-
Auffray, C.1
Sieweke, M.H.2
Geissmann, F.3
-
3
-
-
76449107634
-
Monocytes in atherosclerosis: subsets and functions
-
Woollard K.J., Geissmann F. Monocytes in atherosclerosis: subsets and functions. Nat. Rev. Cardiol. 2010, 7:77-86.
-
(2010)
Nat. Rev. Cardiol.
, vol.7
, pp. 77-86
-
-
Woollard, K.J.1
Geissmann, F.2
-
4
-
-
42649108339
-
Monocyte-mediated defense against microbial pathogens
-
Serbina N.V., Jia T., Hohl T.M., Pamer E.G. Monocyte-mediated defense against microbial pathogens. Annu. Rev. Immunol. 2008, 26:421-452.
-
(2008)
Annu. Rev. Immunol.
, vol.26
, pp. 421-452
-
-
Serbina, N.V.1
Jia, T.2
Hohl, T.M.3
Pamer, E.G.4
-
5
-
-
84871027896
-
Inflammatory monocytes and the pathogenesis of viral encephalitis
-
Terry R.L., Getts D.R., Deffrasnes C., van Vreden C., Campbell I.L., King N.J. Inflammatory monocytes and the pathogenesis of viral encephalitis. J. Neuroinflamm. 2012, 9:270.
-
(2012)
J. Neuroinflamm.
, vol.9
, pp. 270
-
-
Terry, R.L.1
Getts, D.R.2
Deffrasnes, C.3
van Vreden, C.4
Campbell, I.L.5
King, N.J.6
-
6
-
-
0037625155
-
TNF/iNOS-producing dendritic cells mediate innate immune defense against bacterial infection
-
Serbina N.V., Salazar-Mather T.P., Biron C.A., Kuziel W.A., Pamer E.G. TNF/iNOS-producing dendritic cells mediate innate immune defense against bacterial infection. Immunity 2003, 19:59-70.
-
(2003)
Immunity
, vol.19
, pp. 59-70
-
-
Serbina, N.V.1
Salazar-Mather, T.P.2
Biron, C.A.3
Kuziel, W.A.4
Pamer, E.G.5
-
7
-
-
84887786185
-
Essential yet limited role for CCR2+ inflammatory monocytes during Mycobacterium tuberculosis-specific T cell priming
-
Samstein M., Schreiber H.A., Leiner I.M., Susac B., Glickman M.S., Pamer E.G. Essential yet limited role for CCR2+ inflammatory monocytes during Mycobacterium tuberculosis-specific T cell priming. eLife 2013, 2:e01086.
-
(2013)
eLife
, vol.2
, pp. e01086
-
-
Samstein, M.1
Schreiber, H.A.2
Leiner, I.M.3
Susac, B.4
Glickman, M.S.5
Pamer, E.G.6
-
8
-
-
2942614999
-
CCR2-dependent trafficking of F4/80dim macrophages and CD11cdim/intermediate dendritic cells is crucial for T cell recruitment to lungs infected with Mycobacterium tuberculosis
-
Peters W., Cyster J.G., Mack M., Schlondorff D., Wolf A.J., Ernst J.D., Charo I.F. CCR2-dependent trafficking of F4/80dim macrophages and CD11cdim/intermediate dendritic cells is crucial for T cell recruitment to lungs infected with Mycobacterium tuberculosis. J. Immunol. 2004, 172:7647-7653.
-
(2004)
J. Immunol.
, vol.172
, pp. 7647-7653
-
-
Peters, W.1
Cyster, J.G.2
Mack, M.3
Schlondorff, D.4
Wolf, A.J.5
Ernst, J.D.6
Charo, I.F.7
-
9
-
-
47949122479
-
CCR2 mediates conventional dendritic cell recruitment and the formation of bronchovascular mononuclear cell infiltrates in the lungs of mice infected with Cryptococcus neoformans
-
Osterholzer J.J., Curtis J.L., Polak T., Ames T., Chen G.H., McDonald R., Huffnagle G.B., Toews G.B. CCR2 mediates conventional dendritic cell recruitment and the formation of bronchovascular mononuclear cell infiltrates in the lungs of mice infected with Cryptococcus neoformans. J. Immunol. 2008, 181:610-620.
-
(2008)
J. Immunol.
, vol.181
, pp. 610-620
-
-
Osterholzer, J.J.1
Curtis, J.L.2
Polak, T.3
Ames, T.4
Chen, G.H.5
McDonald, R.6
Huffnagle, G.B.7
Toews, G.B.8
-
10
-
-
0034651769
-
CCR2 expression determines T1 versus T2 polarization during pulmonary Cryptococcus neoformans infection
-
Traynor T.R., Kuziel W.A., Toews G.B., Huffnagle G.B. CCR2 expression determines T1 versus T2 polarization during pulmonary Cryptococcus neoformans infection. J. Immunol. 2000, 164:2021-2027.
-
(2000)
J. Immunol.
, vol.164
, pp. 2021-2027
-
-
Traynor, T.R.1
Kuziel, W.A.2
Toews, G.B.3
Huffnagle, G.B.4
-
11
-
-
84891365225
-
Inflammatory monocytes mediate early and organ-specific innate defense during systemic candidiasis
-
Ngo L.Y., Kasahara S., Kumasaka D.K., Knoblaugh S.E., Jhingran A., Hohl T.M. Inflammatory monocytes mediate early and organ-specific innate defense during systemic candidiasis. J. Infect. Dis. 2013, 209:109-119.
-
(2013)
J. Infect. Dis.
, vol.209
, pp. 109-119
-
-
Ngo, L.Y.1
Kasahara, S.2
Kumasaka, D.K.3
Knoblaugh, S.E.4
Jhingran, A.5
Hohl, T.M.6
-
12
-
-
77950263400
-
Inflammatory monocytes but not neutrophils are necessary to control infection with Toxoplasma gondii in mice
-
Dunay I.R., Fuchs A., Sibley L.D. Inflammatory monocytes but not neutrophils are necessary to control infection with Toxoplasma gondii in mice. Infect. Immun. 2010, 78:1564-1570.
-
(2010)
Infect. Immun.
, vol.78
, pp. 1564-1570
-
-
Dunay, I.R.1
Fuchs, A.2
Sibley, L.D.3
-
13
-
-
77955661668
-
Monocytes mediate mucosal immunity to Toxoplasma gondii
-
Dunay I.R., Sibley L.D. Monocytes mediate mucosal immunity to Toxoplasma gondii. Curr. Opin. Immunol. 2010, 22:461-466.
-
(2010)
Curr. Opin. Immunol.
, vol.22
, pp. 461-466
-
-
Dunay, I.R.1
Sibley, L.D.2
-
14
-
-
78651107398
-
Recruited inflammatory monocytes stimulate antiviral Th1 immunity in infected tissue
-
Iijima N., Mattei L.M., Iwasaki A. Recruited inflammatory monocytes stimulate antiviral Th1 immunity in infected tissue. Proc. Natl. Acad. Sci. USA 2011, 108:284-289.
-
(2011)
Proc. Natl. Acad. Sci. USA
, vol.108
, pp. 284-289
-
-
Iijima, N.1
Mattei, L.M.2
Iwasaki, A.3
-
15
-
-
77956271696
-
Depletion of Gr-1+, but not Ly6G+, immune cells exacerbates virus replication and disease in an intranasal model of herpes simplex virus type 1 infection
-
Wojtasiak M., Pickett D., Tate M., Londrigan S., Bedoui S., Brooks A., Reading P. Depletion of Gr-1+, but not Ly6G+, immune cells exacerbates virus replication and disease in an intranasal model of herpes simplex virus type 1 infection. J. Gen. Virol. 2010, 91:2158-2166.
-
(2010)
J. Gen. Virol.
, vol.91
, pp. 2158-2166
-
-
Wojtasiak, M.1
Pickett, D.2
Tate, M.3
Londrigan, S.4
Bedoui, S.5
Brooks, A.6
Reading, P.7
-
16
-
-
0035887925
-
Lack of CCR2 results in increased mortality and impaired leukocyte activation and trafficking following infection of the central nervous system with a neurotropic coronavirus
-
Chen B.P., Kuziel W.A., Lane T.E. Lack of CCR2 results in increased mortality and impaired leukocyte activation and trafficking following infection of the central nervous system with a neurotropic coronavirus. J. Immunol. 2001, 167:4585-4592.
-
(2001)
J. Immunol.
, vol.167
, pp. 4585-4592
-
-
Chen, B.P.1
Kuziel, W.A.2
Lane, T.E.3
-
17
-
-
41649100060
-
Combined inhibition of CCL2, CX3CR1, and CCR5 abrogates Ly6C(hi) and Ly6C(lo) monocytosis and almost abolishes atherosclerosis in hypercholesterolemic mice
-
Combadiere C., Potteaux S., Rodero M., Simon T., Pezard A., Esposito B., Merval R., Proudfoot A., Tedgui A., Mallat Z. Combined inhibition of CCL2, CX3CR1, and CCR5 abrogates Ly6C(hi) and Ly6C(lo) monocytosis and almost abolishes atherosclerosis in hypercholesterolemic mice. Circulation 2008, 117:1649-1657.
-
(2008)
Circulation
, vol.117
, pp. 1649-1657
-
-
Combadiere, C.1
Potteaux, S.2
Rodero, M.3
Simon, T.4
Pezard, A.5
Esposito, B.6
Merval, R.7
Proudfoot, A.8
Tedgui, A.9
Mallat, Z.10
-
18
-
-
84878000143
-
Monocyte-directed RNAi targeting CCR2 improves infarct healing in atherosclerosis-prone mice
-
Majmudar M.D., Keliher E.J., Heidt T., Leuschner F., Truelove J., Sena B.F., Gorbatov R., Iwamoto Y., Dutta P., Wojtkiewicz G., Courties G., Sebas M., Borodovsky A., Fitzgerald K., Nolte M.W., Dickneite G., Chen J.W., Anderson D.G., Swirski F.K., Weissleder R., Nahrendorf M. Monocyte-directed RNAi targeting CCR2 improves infarct healing in atherosclerosis-prone mice. Circulation 2013, 127:2038-2046.
-
(2013)
Circulation
, vol.127
, pp. 2038-2046
-
-
Majmudar, M.D.1
Keliher, E.J.2
Heidt, T.3
Leuschner, F.4
Truelove, J.5
Sena, B.F.6
Gorbatov, R.7
Iwamoto, Y.8
Dutta, P.9
Wojtkiewicz, G.10
Courties, G.11
Sebas, M.12
Borodovsky, A.13
Fitzgerald, K.14
Nolte, M.W.15
Dickneite, G.16
Chen, J.W.17
Anderson, D.G.18
Swirski, F.K.19
Weissleder, R.20
Nahrendorf, M.21
more..
-
20
-
-
84883829236
-
Nicotinamide phosphoribosyltransferase/visfatin expression by inflammatory monocytes mediates arthritis pathogenesis
-
Presumey J., Courties G., Louis-Plence P., Escriou V., Scherman D., Pers Y.M., Yssel H., Pene J., Kyburz D., Gay S., Jorgensen C., Apparailly F. Nicotinamide phosphoribosyltransferase/visfatin expression by inflammatory monocytes mediates arthritis pathogenesis. Ann. Rheum. Dis. 2013, 72:1717-1724.
-
(2013)
Ann. Rheum. Dis.
, vol.72
, pp. 1717-1724
-
-
Presumey, J.1
Courties, G.2
Louis-Plence, P.3
Escriou, V.4
Scherman, D.5
Pers, Y.M.6
Yssel, H.7
Pene, J.8
Kyburz, D.9
Gay, S.10
Jorgensen, C.11
Apparailly, F.12
-
21
-
-
65149093082
-
Circulating Ly-6C+ myeloid precursors migrate to the CNS and play a pathogenic role during autoimmune demyelinating disease
-
King I.L., Dickendesher T.L., Segal B.M. Circulating Ly-6C+ myeloid precursors migrate to the CNS and play a pathogenic role during autoimmune demyelinating disease. Blood 2009, 113:3190-3197.
-
(2009)
Blood
, vol.113
, pp. 3190-3197
-
-
King, I.L.1
Dickendesher, T.L.2
Segal, B.M.3
-
22
-
-
84870900504
-
Ly6C hi monocytes in the inflamed colon give rise to proinflammatory effector cells and migratory antigen-presenting cells
-
Zigmond E., Varol C., Farache J., Elmaliah E., Satpathy A.T., Friedlander G., Mack M., Shpigel N., Boneca I.G., Murphy K.M., Shakhar G., Halpern Z., Jung S. Ly6C hi monocytes in the inflamed colon give rise to proinflammatory effector cells and migratory antigen-presenting cells. Immunity 2012, 37:1076-1090.
-
(2012)
Immunity
, vol.37
, pp. 1076-1090
-
-
Zigmond, E.1
Varol, C.2
Farache, J.3
Elmaliah, E.4
Satpathy, A.T.5
Friedlander, G.6
Mack, M.7
Shpigel, N.8
Boneca, I.G.9
Murphy, K.M.10
Shakhar, G.11
Halpern, Z.12
Jung, S.13
-
23
-
-
78650058880
-
A role for spleen monocytes in post-ischemic brain inflammation and injury
-
Bao Y., Kim E., Bhosle S., Mehta H., Cho S. A role for spleen monocytes in post-ischemic brain inflammation and injury. J. Neuroinflamm. 2010, 7:92.
-
(2010)
J. Neuroinflamm.
, vol.7
, pp. 92
-
-
Bao, Y.1
Kim, E.2
Bhosle, S.3
Mehta, H.4
Cho, S.5
-
24
-
-
71449120488
-
Central neuroinvasion and demyelination by inflammatory macrophages after peripheral virus infection is controlled by SHP-1
-
Christophi G.P., Massa P.T. Central neuroinvasion and demyelination by inflammatory macrophages after peripheral virus infection is controlled by SHP-1. Viral Immunol. 2009, 22:371-387.
-
(2009)
Viral Immunol.
, vol.22
, pp. 371-387
-
-
Christophi, G.P.1
Massa, P.T.2
-
25
-
-
58149502606
-
Modulation of macrophage infiltration and inflammatory activity by the phosphatase SHP-1 in virus-induced demyelinating disease
-
Christophi G.P., Hudson C.A., Panos M., Gruber R.C., Massa P.T. Modulation of macrophage infiltration and inflammatory activity by the phosphatase SHP-1 in virus-induced demyelinating disease. J. Virol. 2009, 83:522-539.
-
(2009)
J. Virol.
, vol.83
, pp. 522-539
-
-
Christophi, G.P.1
Hudson, C.A.2
Panos, M.3
Gruber, R.C.4
Massa, P.T.5
-
26
-
-
34247263341
-
CCR2 regulates development of Theiler's murine encephalomyelitis virus-induced demyelinating disease
-
Bennett J.L., Elhofy A., Charo I., Miller S.D., Dal Canto M.C., Karpus W.J. CCR2 regulates development of Theiler's murine encephalomyelitis virus-induced demyelinating disease. Viral Immunol. 2007, 20:19-33.
-
(2007)
Viral Immunol.
, vol.20
, pp. 19-33
-
-
Bennett, J.L.1
Elhofy, A.2
Charo, I.3
Miller, S.D.4
Dal Canto, M.C.5
Karpus, W.J.6
-
27
-
-
53349153299
-
Ly6c+ "inflammatory monocytes" are microglial precursors recruited in a pathogenic manner in West Nile virus encephalitis
-
Getts D.R., Terry R.L., Getts M.T., Muller M., Rana S., Shrestha B., Radford J., Van Rooijen N., Campbell I.L., King N.J. Ly6c+ "inflammatory monocytes" are microglial precursors recruited in a pathogenic manner in West Nile virus encephalitis. J. Exp. Med. 2008, 205:2319-2337.
-
(2008)
J. Exp. Med.
, vol.205
, pp. 2319-2337
-
-
Getts, D.R.1
Terry, R.L.2
Getts, M.T.3
Muller, M.4
Rana, S.5
Shrestha, B.6
Radford, J.7
Van Rooijen, N.8
Campbell, I.L.9
King, N.J.10
-
28
-
-
84867901526
-
Targeted blockade in lethal West Nile virus encephalitis indicates a crucial role for very late antigen (VLA)-4-dependent recruitment of nitric oxide-producing macrophages
-
Getts D.R., Terry R.L., Getts M.T., Muller M., Rana S., Deffrasnes C., Ashhurst T.M., Radford J., Hofer M., Thomas S., Campbell I.L., King N.J. Targeted blockade in lethal West Nile virus encephalitis indicates a crucial role for very late antigen (VLA)-4-dependent recruitment of nitric oxide-producing macrophages. J. Neuroinflamm. 2012, 9:246.
-
(2012)
J. Neuroinflamm.
, vol.9
, pp. 246
-
-
Getts, D.R.1
Terry, R.L.2
Getts, M.T.3
Muller, M.4
Rana, S.5
Deffrasnes, C.6
Ashhurst, T.M.7
Radford, J.8
Hofer, M.9
Thomas, S.10
Campbell, I.L.11
King, N.J.12
-
29
-
-
84876207357
-
Nr4a1-dependent Ly6C(low) monocytes monitor endothelial cells and orchestrate their disposal
-
Carlin L.M., Stamatiades E.G., Auffray C., Hanna R.N., Glover L., Vizcay-Barrena G., Hedrick C.C., Cook H.T., Diebold S., Geissmann F. Nr4a1-dependent Ly6C(low) monocytes monitor endothelial cells and orchestrate their disposal. Cell 2013, 153:362-375.
-
(2013)
Cell
, vol.153
, pp. 362-375
-
-
Carlin, L.M.1
Stamatiades, E.G.2
Auffray, C.3
Hanna, R.N.4
Glover, L.5
Vizcay-Barrena, G.6
Hedrick, C.C.7
Cook, H.T.8
Diebold, S.9
Geissmann, F.10
-
30
-
-
34547728312
-
Monitoring of blood vessels and tissues by a population of monocytes with patrolling behavior
-
Auffray C., Fogg D., Garfa M., Elain G., Join-Lambert O., Kayal S., Sarnacki S., Cumano A., Lauvau G., Geissmann F. Monitoring of blood vessels and tissues by a population of monocytes with patrolling behavior. Science 2007, 317:666-670.
-
(2007)
Science
, vol.317
, pp. 666-670
-
-
Auffray, C.1
Fogg, D.2
Garfa, M.3
Elain, G.4
Join-Lambert, O.5
Kayal, S.6
Sarnacki, S.7
Cumano, A.8
Lauvau, G.9
Geissmann, F.10
-
31
-
-
36549033197
-
The healing myocardium sequentially mobilizes two monocyte subsets with divergent and complementary functions
-
Nahrendorf M., Swirski F., Aikawa E., Stangenberg L., Wurdinger T., Figueiredo J., Libby P., Weissleder R., Pittet M. The healing myocardium sequentially mobilizes two monocyte subsets with divergent and complementary functions. J. Exp. Med. 2007, 204:3037-3047.
-
(2007)
J. Exp. Med.
, vol.204
, pp. 3037-3047
-
-
Nahrendorf, M.1
Swirski, F.2
Aikawa, E.3
Stangenberg, L.4
Wurdinger, T.5
Figueiredo, J.6
Libby, P.7
Weissleder, R.8
Pittet, M.9
-
33
-
-
1642406217
-
Subpopulations of mouse blood monocytes differ in maturation stage and inflammatory response
-
Sunderkötter C., Nikolic T., Dillon M.J., Van Rooijen N., Stehling M., Drevets D.A., Leenen P.J.M. Subpopulations of mouse blood monocytes differ in maturation stage and inflammatory response. J. Immunol. 2004, 172:4410-4417.
-
(2004)
J. Immunol.
, vol.172
, pp. 4410-4417
-
-
Sunderkötter, C.1
Nikolic, T.2
Dillon, M.J.3
Van Rooijen, N.4
Stehling, M.5
Drevets, D.A.6
Leenen, P.J.M.7
-
34
-
-
79951825635
-
Accelerated dendritic cell differentiation from migrating Ly6C(lo) bone marrow monocytes in early dermal West Nile virus infection
-
Davison A.M., King N.J. Accelerated dendritic cell differentiation from migrating Ly6C(lo) bone marrow monocytes in early dermal West Nile virus infection. J. Immunol. 2011, 186:2382-2396.
-
(2011)
J. Immunol.
, vol.186
, pp. 2382-2396
-
-
Davison, A.M.1
King, N.J.2
-
35
-
-
33747358360
-
Migratory fate and differentiation of blood monocyte subsets
-
Tacke F., Randolph G.J. Migratory fate and differentiation of blood monocyte subsets. Immunobiology 2006, 211:609-618.
-
(2006)
Immunobiology
, vol.211
, pp. 609-618
-
-
Tacke, F.1
Randolph, G.J.2
-
36
-
-
33846408655
-
Monocytes give rise to mucosal, but not splenic, conventional dendritic cells
-
Varol C., Landsman L., Fogg D., Greenshtein L., Gildor B., Margalit R., Kalchenko V., Geissmann F., Jung S. Monocytes give rise to mucosal, but not splenic, conventional dendritic cells. J. Exp. Med. 2007, 204:171-180.
-
(2007)
J. Exp. Med.
, vol.204
, pp. 171-180
-
-
Varol, C.1
Landsman, L.2
Fogg, D.3
Greenshtein, L.4
Gildor, B.5
Margalit, R.6
Kalchenko, V.7
Geissmann, F.8
Jung, S.9
-
37
-
-
33747358360
-
Migratory fate and differentiation of blood monocyte subsets
-
Tacke F., Randolph G. Migratory fate and differentiation of blood monocyte subsets. Immunobiology 2006, 211:609-618.
-
(2006)
Immunobiology
, vol.211
, pp. 609-618
-
-
Tacke, F.1
Randolph, G.2
-
38
-
-
0034624828
-
A clonogenic common myeloid progenitor that gives rise to all myeloid lineages
-
Akashi K., Traver D., Miyamoto T., Weissman I.L. A clonogenic common myeloid progenitor that gives rise to all myeloid lineages. Nature 2000, 404:193-197.
-
(2000)
Nature
, vol.404
, pp. 193-197
-
-
Akashi, K.1
Traver, D.2
Miyamoto, T.3
Weissman, I.L.4
-
39
-
-
0023922373
-
Purification and characterization of mouse hematopoietic stem cells
-
Spangrude G.J., Heimfeld S., Weissman I.L. Purification and characterization of mouse hematopoietic stem cells. Science 1988, 241:58-62.
-
(1988)
Science
, vol.241
, pp. 58-62
-
-
Spangrude, G.J.1
Heimfeld, S.2
Weissman, I.L.3
-
40
-
-
0030831130
-
Identification of clonogenic common lymphoid progenitors in mouse bone marrow
-
Kondo M., Weissman I.L., Akashi K. Identification of clonogenic common lymphoid progenitors in mouse bone marrow. Cell 1997, 91:661-672.
-
(1997)
Cell
, vol.91
, pp. 661-672
-
-
Kondo, M.1
Weissman, I.L.2
Akashi, K.3
-
41
-
-
0028534860
-
The long-term repopulating subset of hematopoietic stem cells is deterministic and isolatable by phenotype
-
Morrison S.J., Weissman I.L. The long-term repopulating subset of hematopoietic stem cells is deterministic and isolatable by phenotype. Immunity 1994, 1:661-673.
-
(1994)
Immunity
, vol.1
, pp. 661-673
-
-
Morrison, S.J.1
Weissman, I.L.2
-
42
-
-
0028114205
-
Opposing actions of c-ets/PU.1 and c-myb protooncogene products in regulating the macrophage-specific promoters of the human and mouse colony-stimulating factor-1 receptor (c-fms) genes
-
Reddy M.A., Yang B.S., Yue X., Barnett C.J., Ross I.L., Sweet M.J., Hume D.A., Ostrowski M.C. Opposing actions of c-ets/PU.1 and c-myb protooncogene products in regulating the macrophage-specific promoters of the human and mouse colony-stimulating factor-1 receptor (c-fms) genes. J. Exp. Med. 1994, 180:2309-2319.
-
(1994)
J. Exp. Med.
, vol.180
, pp. 2309-2319
-
-
Reddy, M.A.1
Yang, B.S.2
Yue, X.3
Barnett, C.J.4
Ross, I.L.5
Sweet, M.J.6
Hume, D.A.7
Ostrowski, M.C.8
-
43
-
-
33846593911
-
A two-step, PU.1-dependent mechanism for developmentally regulated chromatin remodeling and transcription of the c-fms gene
-
Krysinska H., Hoogenkamp M., Ingram R., Wilson N., Tagoh H., Laslo P., Singh H., Bonifer C. A two-step, PU.1-dependent mechanism for developmentally regulated chromatin remodeling and transcription of the c-fms gene. Mol. Cell. Biol. 2007, 27:878-887.
-
(2007)
Mol. Cell. Biol.
, vol.27
, pp. 878-887
-
-
Krysinska, H.1
Hoogenkamp, M.2
Ingram, R.3
Wilson, N.4
Tagoh, H.5
Laslo, P.6
Singh, H.7
Bonifer, C.8
-
44
-
-
0032479989
-
PU.1 regulates both cytokine-dependent proliferation and differentiation of granulocyte/macrophage progenitors
-
DeKoter R.P., Walsh J.C., Singh H. PU.1 regulates both cytokine-dependent proliferation and differentiation of granulocyte/macrophage progenitors. EMBO J. 1998, 17:4456-4468.
-
(1998)
EMBO J.
, vol.17
, pp. 4456-4468
-
-
DeKoter, R.P.1
Walsh, J.C.2
Singh, H.3
-
45
-
-
0036645169
-
Transcription factor complex formation and chromatin fine structure alterations at the murine c-fms (CSF-1 receptor) locus during maturation of myeloid precursor cells
-
Tagoh H., Himes R., Clarke D., Leenen P.J., Riggs A.D., Hume D., Bonifer C. Transcription factor complex formation and chromatin fine structure alterations at the murine c-fms (CSF-1 receptor) locus during maturation of myeloid precursor cells. Genes Dev. 2002, 16:1721-1737.
-
(2002)
Genes Dev.
, vol.16
, pp. 1721-1737
-
-
Tagoh, H.1
Himes, R.2
Clarke, D.3
Leenen, P.J.4
Riggs, A.D.5
Hume, D.6
Bonifer, C.7
-
46
-
-
30344444770
-
A clonogenic bone marrow progenitor specific for macrophages and dendritic cells
-
Fogg D.K., Sibon C., Miled C., Jung S., Aucouturier P., Littman D.R., Cumano A., Geissmann F. A clonogenic bone marrow progenitor specific for macrophages and dendritic cells. Science 2006, 311:83-87.
-
(2006)
Science
, vol.311
, pp. 83-87
-
-
Fogg, D.K.1
Sibon, C.2
Miled, C.3
Jung, S.4
Aucouturier, P.5
Littman, D.R.6
Cumano, A.7
Geissmann, F.8
-
47
-
-
63449110370
-
CX3CR1+ CD115+ CD135+ common macrophage/DC precursors and the role of CX3CR1 in their response to inflammation
-
Auffray C., Fogg D., Narni-Mancinelli E., Senechal B., Trouillet C., Saederup N., Leemput J., Bigot K., Campisi L., Abitbol M., Molina T., Charo I., Hume D., Cumano A., Lauvau G., Geissmann F. CX3CR1+ CD115+ CD135+ common macrophage/DC precursors and the role of CX3CR1 in their response to inflammation. J. Exp. Med. 2009, 206:595-606.
-
(2009)
J. Exp. Med.
, vol.206
, pp. 595-606
-
-
Auffray, C.1
Fogg, D.2
Narni-Mancinelli, E.3
Senechal, B.4
Trouillet, C.5
Saederup, N.6
Leemput, J.7
Bigot, K.8
Campisi, L.9
Abitbol, M.10
Molina, T.11
Charo, I.12
Hume, D.13
Cumano, A.14
Lauvau, G.15
Geissmann, F.16
-
48
-
-
35548970740
-
Identification of clonogenic common Flt3+M-CSFR+ plasmacytoid and conventional dendritic cell progenitors in mouse bone marrow
-
Onai N., Obata-Onai A., Schmid M.A., Ohteki T., Jarrossay D., Manz M.G. Identification of clonogenic common Flt3+M-CSFR+ plasmacytoid and conventional dendritic cell progenitors in mouse bone marrow. Nat. Immunol. 2007, 8:1207-1216.
-
(2007)
Nat. Immunol.
, vol.8
, pp. 1207-1216
-
-
Onai, N.1
Obata-Onai, A.2
Schmid, M.A.3
Ohteki, T.4
Jarrossay, D.5
Manz, M.G.6
-
49
-
-
76249095169
-
Development of monocytes, macrophages, and dendritic cells
-
Geissmann F., Manz M.G., Jung S., Sieweke M.H., Merad M., Ley K. Development of monocytes, macrophages, and dendritic cells. Science 2010, 327:656-661.
-
(2010)
Science
, vol.327
, pp. 656-661
-
-
Geissmann, F.1
Manz, M.G.2
Jung, S.3
Sieweke, M.H.4
Merad, M.5
Ley, K.6
-
50
-
-
84880838451
-
Origin of monocytes and macrophages in a committed progenitor
-
Hettinger J., Richards D.M., Hansson J., Barra M.M., Joschko A.C., Krijgsveld J., Feuerer M. Origin of monocytes and macrophages in a committed progenitor. Nat. Immunol. 2013, 14:821-830.
-
(2013)
Nat. Immunol.
, vol.14
, pp. 821-830
-
-
Hettinger, J.1
Richards, D.M.2
Hansson, J.3
Barra, M.M.4
Joschko, A.C.5
Krijgsveld, J.6
Feuerer, M.7
-
51
-
-
80355136629
-
Studying the mononuclear phagocyte system in the molecular age
-
Chow A., Brown B.D., Merad M. Studying the mononuclear phagocyte system in the molecular age. Nat. Rev. Immunol. 2011, 11:788-798.
-
(2011)
Nat. Rev. Immunol.
, vol.11
, pp. 788-798
-
-
Chow, A.1
Brown, B.D.2
Merad, M.3
-
52
-
-
0028136726
-
Requirement of transcription factor PU.1 in the development of multiple hematopoietic lineages
-
Scott E.W., Simon M.C., Anastasi J., Singh H. Requirement of transcription factor PU.1 in the development of multiple hematopoietic lineages. Science 1994, 265:1573-1577.
-
(1994)
Science
, vol.265
, pp. 1573-1577
-
-
Scott, E.W.1
Simon, M.C.2
Anastasi, J.3
Singh, H.4
-
53
-
-
0033151624
-
Direct interaction of hematopoietic transcription factors PU.1 and GATA-1: functional antagonism in erythroid cells
-
Rekhtman N., Radparvar F., Evans T., Skoultchi A.I. Direct interaction of hematopoietic transcription factors PU.1 and GATA-1: functional antagonism in erythroid cells. Genes Dev. 1999, 13:1398-1411.
-
(1999)
Genes Dev.
, vol.13
, pp. 1398-1411
-
-
Rekhtman, N.1
Radparvar, F.2
Evans, T.3
Skoultchi, A.I.4
-
54
-
-
0033587755
-
Negative cross-talk between hematopoietic regulators: GATA proteins repress PU.1
-
Zhang P., Behre G., Pan J., Iwama A., Wara-Aswapati N., Radomska H.S., Auron P.E., Tenen D.G., Sun Z. Negative cross-talk between hematopoietic regulators: GATA proteins repress PU.1. Proc. Natl. Acad. Sci. USA 1999, 96:8705-8710.
-
(1999)
Proc. Natl. Acad. Sci. USA
, vol.96
, pp. 8705-8710
-
-
Zhang, P.1
Behre, G.2
Pan, J.3
Iwama, A.4
Wara-Aswapati, N.5
Radomska, H.S.6
Auron, P.E.7
Tenen, D.G.8
Sun, Z.9
-
55
-
-
0031029557
-
Absence of granulocyte colony-stimulating factor signaling and neutrophil development in CCAAT enhancer binding protein alpha-deficient mice
-
Zhang D.E., Zhang P., Wang N.D., Hetherington C.J., Darlington G.J., Tenen D.G. Absence of granulocyte colony-stimulating factor signaling and neutrophil development in CCAAT enhancer binding protein alpha-deficient mice. Proc. Natl. Acad. Sci. USA 1997, 94:569-574.
-
(1997)
Proc. Natl. Acad. Sci. USA
, vol.94
, pp. 569-574
-
-
Zhang, D.E.1
Zhang, P.2
Wang, N.D.3
Hetherington, C.J.4
Darlington, G.J.5
Tenen, D.G.6
-
56
-
-
34648831595
-
The Kruppel-like factor KLF4 is a critical regulator of monocyte differentiation
-
Feinberg M.W., Wara A.K., Cao Z., Lebedeva M.A., Rosenbauer F., Iwasaki H., Hirai H., Katz J.P., Haspel R.L., Gray S., Akashi K., Segre J., Kaestner K.H., Tenen D.G., Jain M.K. The Kruppel-like factor KLF4 is a critical regulator of monocyte differentiation. EMBO J. 2007, 26:4138-4148.
-
(2007)
EMBO J.
, vol.26
, pp. 4138-4148
-
-
Feinberg, M.W.1
Wara, A.K.2
Cao, Z.3
Lebedeva, M.A.4
Rosenbauer, F.5
Iwasaki, H.6
Hirai, H.7
Katz, J.P.8
Haspel, R.L.9
Gray, S.10
Akashi, K.11
Segre, J.12
Kaestner, K.H.13
Tenen, D.G.14
Jain, M.K.15
-
57
-
-
0027476673
-
The zinc finger transcription factor Egr-1 is essential for and restricts differentiation along the macrophage lineage
-
Nguyen H.Q., Hoffman-Liebermann B., Liebermann D.A. The zinc finger transcription factor Egr-1 is essential for and restricts differentiation along the macrophage lineage. Cell 1993, 72:197-209.
-
(1993)
Cell
, vol.72
, pp. 197-209
-
-
Nguyen, H.Q.1
Hoffman-Liebermann, B.2
Liebermann, D.A.3
-
58
-
-
0029082386
-
The zinc finger transcription factor Egr-1 potentiates macrophage differentiation of hematopoietic cells
-
Krishnaraju K., Nguyen H.Q., Liebermann D.A., Hoffman B. The zinc finger transcription factor Egr-1 potentiates macrophage differentiation of hematopoietic cells. Mol. Cell. Biol. 1995, 15:5499-5507.
-
(1995)
Mol. Cell. Biol.
, vol.15
, pp. 5499-5507
-
-
Krishnaraju, K.1
Nguyen, H.Q.2
Liebermann, D.A.3
Hoffman, B.4
-
59
-
-
84878605147
-
PU.1 level-directed chromatin structure remodeling at the Irf8 gene drives dendritic cell commitment
-
Schonheit J., Kuhl C., Gebhardt M.L., Klett F.F., Riemke P., Scheller M., Huang G., Naumann R., Leutz A., Stocking C., Priller J., Andrade-Navarro M.A., Rosenbauer F. PU.1 level-directed chromatin structure remodeling at the Irf8 gene drives dendritic cell commitment. Cell Rep. 2013, 3:1617-1628.
-
(2013)
Cell Rep.
, vol.3
, pp. 1617-1628
-
-
Schonheit, J.1
Kuhl, C.2
Gebhardt, M.L.3
Klett, F.F.4
Riemke, P.5
Scheller, M.6
Huang, G.7
Naumann, R.8
Leutz, A.9
Stocking, C.10
Priller, J.11
Andrade-Navarro, M.A.12
Rosenbauer, F.13
-
60
-
-
18644373047
-
PU.1 regulates the commitment of adult hematopoietic progenitors and restricts granulopoiesis
-
Dakic A., Metcalf D., Di Rago L., Mifsud S., Wu L., Nutt S.L. PU.1 regulates the commitment of adult hematopoietic progenitors and restricts granulopoiesis. J. Exp. Med. 2005, 201:1487-1502.
-
(2005)
J. Exp. Med.
, vol.201
, pp. 1487-1502
-
-
Dakic, A.1
Metcalf, D.2
Di Rago, L.3
Mifsud, S.4
Wu, L.5
Nutt, S.L.6
-
61
-
-
23944446085
-
Distinctive and indispensable roles of PU.1 in maintenance of hematopoietic stem cells and their differentiation
-
Iwasaki H., Somoza C., Shigematsu H., Duprez E.A., Iwasaki-Arai J., Mizuno S., Arinobu Y., Geary K., Zhang P., Dayaram T., Fenyus M.L., Elf S., Chan S., Kastner P., Huettner C.S., Murray R., Tenen D.G., Akashi K. Distinctive and indispensable roles of PU.1 in maintenance of hematopoietic stem cells and their differentiation. Blood 2005, 106:1590-1600.
-
(2005)
Blood
, vol.106
, pp. 1590-1600
-
-
Iwasaki, H.1
Somoza, C.2
Shigematsu, H.3
Duprez, E.A.4
Iwasaki-Arai, J.5
Mizuno, S.6
Arinobu, Y.7
Geary, K.8
Zhang, P.9
Dayaram, T.10
Fenyus, M.L.11
Elf, S.12
Chan, S.13
Kastner, P.14
Huettner, C.S.15
Murray, R.16
Tenen, D.G.17
Akashi, K.18
-
62
-
-
0242549003
-
Targeted disruption of the PU.1 gene results in multiple hematopoietic abnormalities
-
McKercher S.R., Torbett B.E., Anderson K.L., Henkel G.W., Vestal D.J., Baribault H., Klemsz M., Feeney A.J., Wu G.E., Paige C.J., Maki R.A. Targeted disruption of the PU.1 gene results in multiple hematopoietic abnormalities. EMBO J. 1996, 15:5647-5658.
-
(1996)
EMBO J.
, vol.15
, pp. 5647-5658
-
-
McKercher, S.R.1
Torbett, B.E.2
Anderson, K.L.3
Henkel, G.W.4
Vestal, D.J.5
Baribault, H.6
Klemsz, M.7
Feeney, A.J.8
Wu, G.E.9
Paige, C.J.10
Maki, R.A.11
-
63
-
-
58149148414
-
IRF8 regulates B-cell lineage specification, commitment, and differentiation
-
Wang H., Lee C.H., Qi C., Tailor P., Feng J., Abbasi S., Atsumi T., Morse H.C. IRF8 regulates B-cell lineage specification, commitment, and differentiation. Blood 2008, 112:4028-4038.
-
(2008)
Blood
, vol.112
, pp. 4028-4038
-
-
Wang, H.1
Lee, C.H.2
Qi, C.3
Tailor, P.4
Feng, J.5
Abbasi, S.6
Atsumi, T.7
Morse, H.C.8
-
64
-
-
0033680746
-
ICSBP directs bipotential myeloid progenitor cells to differentiate into mature macrophages
-
Tamura T., Nagamura-Inoue T., Shmeltzer Z., Kuwata T., Ozato K. ICSBP directs bipotential myeloid progenitor cells to differentiate into mature macrophages. Immunity 2000, 13:155-165.
-
(2000)
Immunity
, vol.13
, pp. 155-165
-
-
Tamura, T.1
Nagamura-Inoue, T.2
Shmeltzer, Z.3
Kuwata, T.4
Ozato, K.5
-
65
-
-
66549130217
-
Nf1 haploinsufficiency and Icsbp deficiency synergize in the development of leukemias
-
Koenigsmann J., Rudolph C., Sander S., Kershaw O., Gruber A.D., Bullinger L., Schlegelberger B., Carstanjen D. Nf1 haploinsufficiency and Icsbp deficiency synergize in the development of leukemias. Blood 2009, 113:4690-4701.
-
(2009)
Blood
, vol.113
, pp. 4690-4701
-
-
Koenigsmann, J.1
Rudolph, C.2
Sander, S.3
Kershaw, O.4
Gruber, A.D.5
Bullinger, L.6
Schlegelberger, B.7
Carstanjen, D.8
-
66
-
-
0033485888
-
Altered development and cytokine responses of myeloid progenitors in the absence of transcription factor, interferon consensus sequence binding protein
-
Scheller M., Foerster J., Heyworth C.M., Waring J.F., Lohler J., Gilmore G.L., Shadduck R.K., Dexter T.M., Horak I. Altered development and cytokine responses of myeloid progenitors in the absence of transcription factor, interferon consensus sequence binding protein. Blood 1999, 94:3764-3771.
-
(1999)
Blood
, vol.94
, pp. 3764-3771
-
-
Scheller, M.1
Foerster, J.2
Heyworth, C.M.3
Waring, J.F.4
Lohler, J.5
Gilmore, G.L.6
Shadduck, R.K.7
Dexter, T.M.8
Horak, I.9
-
67
-
-
16044369709
-
Immunodeficiency and chronic myelogenous leukemia-like syndrome in mice with a targeted mutation of the ICSBP gene
-
Holtschke T., Lohler J., Kanno Y., Fehr T., Giese N., Rosenbauer F., Lou J., Knobeloch K.P., Gabriele L., Waring J.F., Bachmann M.F., Zinkernagel R.M., Morse H.C., Ozato K., Horak I. Immunodeficiency and chronic myelogenous leukemia-like syndrome in mice with a targeted mutation of the ICSBP gene. Cell 1996, 87:307-317.
-
(1996)
Cell
, vol.87
, pp. 307-317
-
-
Holtschke, T.1
Lohler, J.2
Kanno, Y.3
Fehr, T.4
Giese, N.5
Rosenbauer, F.6
Lou, J.7
Knobeloch, K.P.8
Gabriele, L.9
Waring, J.F.10
Bachmann, M.F.11
Zinkernagel, R.M.12
Morse, H.C.13
Ozato, K.14
Horak, I.15
-
68
-
-
0036681793
-
IFN consensus sequence binding protein/IFN regulatory factor-8 guides bone marrow progenitor cells toward the macrophage lineage
-
Tsujimura H., Nagamura-Inoue T., Tamura T., Ozato K. IFN consensus sequence binding protein/IFN regulatory factor-8 guides bone marrow progenitor cells toward the macrophage lineage. J. Immunol. 2002, 169:1261-1269.
-
(2002)
J. Immunol.
, vol.169
, pp. 1261-1269
-
-
Tsujimura, H.1
Nagamura-Inoue, T.2
Tamura, T.3
Ozato, K.4
-
69
-
-
77349083495
-
Peripheral CD103+ dendritic cells form a unified subset developmentally related to CD8alpha+ conventional dendritic cells
-
Edelson B.T., Kc W., Juang R., Kohyama M., Benoit L.A., Klekotka P.A., Moon C., Albring J.C., Ise W., Michael D.G., Bhattacharya D., Stappenbeck T.S., Holtzman M.J., Sung S.S., Murphy T.L., Hildner K., Murphy K.M. Peripheral CD103+ dendritic cells form a unified subset developmentally related to CD8alpha+ conventional dendritic cells. J. Exp. Med. 2010, 207:823-836.
-
(2010)
J. Exp. Med.
, vol.207
, pp. 823-836
-
-
Edelson, B.T.1
Kc, W.2
Juang, R.3
Kohyama, M.4
Benoit, L.A.5
Klekotka, P.A.6
Moon, C.7
Albring, J.C.8
Ise, W.9
Michael, D.G.10
Bhattacharya, D.11
Stappenbeck, T.S.12
Holtzman, M.J.13
Sung, S.S.14
Murphy, T.L.15
Hildner, K.16
Murphy, K.M.17
-
70
-
-
0037310617
-
Cutting edge: IFN consensus sequence binding protein/IFN regulatory factor 8 drives the development of type I IFN-producing plasmacytoid dendritic cells
-
Tsujimura H., Tamura T., Ozato K. Cutting edge: IFN consensus sequence binding protein/IFN regulatory factor 8 drives the development of type I IFN-producing plasmacytoid dendritic cells. J. Immunol. 2003, 170:1131-1135.
-
(2003)
J. Immunol.
, vol.170
, pp. 1131-1135
-
-
Tsujimura, H.1
Tamura, T.2
Ozato, K.3
-
71
-
-
84857724877
-
IRF-8 extinguishes neutrophil production and promotes dendritic cell lineage commitment in both myeloid and lymphoid mouse progenitors
-
Becker A.M., Michael D.G., Satpathy A.T., Sciammas R., Singh H., Bhattacharya D. IRF-8 extinguishes neutrophil production and promotes dendritic cell lineage commitment in both myeloid and lymphoid mouse progenitors. Blood 2012, 119:2003-2012.
-
(2012)
Blood
, vol.119
, pp. 2003-2012
-
-
Becker, A.M.1
Michael, D.G.2
Satpathy, A.T.3
Sciammas, R.4
Singh, H.5
Bhattacharya, D.6
-
72
-
-
84874229894
-
Essential requirement for IRF8 and SLC15A4 implicates plasmacytoid dendritic cells in the pathogenesis of lupus
-
Baccala R., Gonzalez-Quintial R., Blasius A.L., Rimann I., Ozato K., Kono D.H., Beutler B., Theofilopoulos A.N. Essential requirement for IRF8 and SLC15A4 implicates plasmacytoid dendritic cells in the pathogenesis of lupus. Proc. Natl. Acad. Sci. USA 2013, 110:2940-2945.
-
(2013)
Proc. Natl. Acad. Sci. USA
, vol.110
, pp. 2940-2945
-
-
Baccala, R.1
Gonzalez-Quintial, R.2
Blasius, A.L.3
Rimann, I.4
Ozato, K.5
Kono, D.H.6
Beutler, B.7
Theofilopoulos, A.N.8
-
73
-
-
84876493933
-
Essential role of the IRF8-KLF4 transcription factor cascade in murine monocyte differentiation
-
Kurotaki D., Osato N., Nishiyama A., Yamamoto M., Ban T., Sato H., Nakabayashi J., Umehara M., Miyake N., Matsumoto N., Nakazawa M., Ozato K., Tamura T. Essential role of the IRF8-KLF4 transcription factor cascade in murine monocyte differentiation. Blood 2013, 121:1839-1849.
-
(2013)
Blood
, vol.121
, pp. 1839-1849
-
-
Kurotaki, D.1
Osato, N.2
Nishiyama, A.3
Yamamoto, M.4
Ban, T.5
Sato, H.6
Nakabayashi, J.7
Umehara, M.8
Miyake, N.9
Matsumoto, N.10
Nakazawa, M.11
Ozato, K.12
Tamura, T.13
-
74
-
-
45949099415
-
Kruppel-like factor 4 is essential for inflammatory monocyte differentiation in vivo
-
Alder J.K., Georgantas R.W., Hildreth R.L., Kaplan I.M., Morisot S., Yu X., McDevitt M., Civin C.I. Kruppel-like factor 4 is essential for inflammatory monocyte differentiation in vivo. J. Immunol. 2008, 180:5645-5652.
-
(2008)
J. Immunol.
, vol.180
, pp. 5645-5652
-
-
Alder, J.K.1
Georgantas, R.W.2
Hildreth, R.L.3
Kaplan, I.M.4
Morisot, S.5
Yu, X.6
McDevitt, M.7
Civin, C.I.8
-
75
-
-
77952496377
-
Editorial: CSF1R, CSF-1, and IL-34, a "menage a trois" conserved across vertebrates
-
Droin N., Solary E. Editorial: CSF1R, CSF-1, and IL-34, a "menage a trois" conserved across vertebrates. J. Leukoc. Biol. 2010, 87:745-747.
-
(2010)
J. Leukoc. Biol.
, vol.87
, pp. 745-747
-
-
Droin, N.1
Solary, E.2
-
76
-
-
0036092801
-
Targeted disruption of the mouse colony-stimulating factor 1 receptor gene results in osteopetrosis, mononuclear phagocyte deficiency, increased primitive progenitor cell frequencies, and reproductive defects
-
Dai X.M., Ryan G.R., Hapel A.J., Dominguez M.G., Russell R.G., Kapp S., Sylvestre V., Stanley E.R. Targeted disruption of the mouse colony-stimulating factor 1 receptor gene results in osteopetrosis, mononuclear phagocyte deficiency, increased primitive progenitor cell frequencies, and reproductive defects. Blood 2002, 99:111-120.
-
(2002)
Blood
, vol.99
, pp. 111-120
-
-
Dai, X.M.1
Ryan, G.R.2
Hapel, A.J.3
Dominguez, M.G.4
Russell, R.G.5
Kapp, S.6
Sylvestre, V.7
Stanley, E.R.8
-
77
-
-
0028290252
-
Role of colony stimulating factor-1 in the establishment and regulation of tissue macrophages during postnatal development of the mouse
-
Cecchini M.G., Dominguez M.G., Mocci S., Wetterwald A., Felix R., Fleisch H., Chisholm O., Hofstetter W., Pollard J.W., Stanley E.R. Role of colony stimulating factor-1 in the establishment and regulation of tissue macrophages during postnatal development of the mouse. Development 1994, 120:1357-1372.
-
(1994)
Development
, vol.120
, pp. 1357-1372
-
-
Cecchini, M.G.1
Dominguez, M.G.2
Mocci, S.3
Wetterwald, A.4
Felix, R.5
Fleisch, H.6
Chisholm, O.7
Hofstetter, W.8
Pollard, J.W.9
Stanley, E.R.10
-
78
-
-
0029859536
-
Cytokine regulation of the macrophage (M phi) system studied using the colony stimulating factor-1-deficient op/op mouse
-
Wiktor-Jedrzejczak W., Gordon S. Cytokine regulation of the macrophage (M phi) system studied using the colony stimulating factor-1-deficient op/op mouse. Physiol. Rev. 1996, 76:927-947.
-
(1996)
Physiol. Rev.
, vol.76
, pp. 927-947
-
-
Wiktor-Jedrzejczak, W.1
Gordon, S.2
-
79
-
-
84864152036
-
IL-34 is a tissue-restricted ligand of CSF1R required for the development of Langerhans cells and microglia
-
Wang Y., Szretter K.J., Vermi W., Gilfillan S., Rossini C., Cella M., Barrow A.D., Diamond M.S., Colonna M. IL-34 is a tissue-restricted ligand of CSF1R required for the development of Langerhans cells and microglia. Nat. Immunol. 2012, 13:753-760.
-
(2012)
Nat. Immunol.
, vol.13
, pp. 753-760
-
-
Wang, Y.1
Szretter, K.J.2
Vermi, W.3
Gilfillan, S.4
Rossini, C.5
Cella, M.6
Barrow, A.D.7
Diamond, M.S.8
Colonna, M.9
-
80
-
-
84856830351
-
IFNgamma induces monopoiesis and inhibits neutrophil development during inflammation
-
de Bruin A.M., Libregts S.F., Valkhof M., Boon L., Touw I.P., Nolte M.A. IFNgamma induces monopoiesis and inhibits neutrophil development during inflammation. Blood 2012, 119:1543-1554.
-
(2012)
Blood
, vol.119
, pp. 1543-1554
-
-
de Bruin, A.M.1
Libregts, S.F.2
Valkhof, M.3
Boon, L.4
Touw, I.P.5
Nolte, M.A.6
-
81
-
-
79952237074
-
Type I interferon signaling regulates Ly6C(hi) monocytes and neutrophils during acute viral pneumonia in mice
-
Seo S.U., Kwon H.J., Ko H.J., Byun Y.H., Seong B.L., Uematsu S., Akira S., Kweon M.N. Type I interferon signaling regulates Ly6C(hi) monocytes and neutrophils during acute viral pneumonia in mice. PLoS Pathog. 2011, 7:e1001304.
-
(2011)
PLoS Pathog.
, vol.7
, pp. e1001304
-
-
Seo, S.U.1
Kwon, H.J.2
Ko, H.J.3
Byun, Y.H.4
Seong, B.L.5
Uematsu, S.6
Akira, S.7
Kweon, M.N.8
-
82
-
-
80051959957
-
The transcription factor NR4A1 (Nur77) controls bone marrow differentiation and the survival of Ly6C(-) monocytes
-
Hanna R.N., Carlin L.M., Hubbeling H.G., Nackiewicz D., Green A.M., Punt J.A., Geissmann F., Hedrick C.C. The transcription factor NR4A1 (Nur77) controls bone marrow differentiation and the survival of Ly6C(-) monocytes. Nat. Immunol. 2011, 12:778-785.
-
(2011)
Nat. Immunol.
, vol.12
, pp. 778-785
-
-
Hanna, R.N.1
Carlin, L.M.2
Hubbeling, H.G.3
Nackiewicz, D.4
Green, A.M.5
Punt, J.A.6
Geissmann, F.7
Hedrick, C.C.8
-
83
-
-
27744464859
-
The microglial "activation" continuum: from innate to adaptive responses
-
Town T., Nikolic V., Tan J. The microglial "activation" continuum: from innate to adaptive responses. J. Neuroinflamm. 2005, 2:24.
-
(2005)
J. Neuroinflamm.
, vol.2
, pp. 24
-
-
Town, T.1
Nikolic, V.2
Tan, J.3
-
84
-
-
61449224570
-
Microglia: gatekeepers of central nervous system immunology
-
Tambuyzer B.R., Ponsaerts P., Nouwen E.J. Microglia: gatekeepers of central nervous system immunology. J. Leukoc. Biol. 2009, 85:352-370.
-
(2009)
J. Leukoc. Biol.
, vol.85
, pp. 352-370
-
-
Tambuyzer, B.R.1
Ponsaerts, P.2
Nouwen, E.J.3
-
85
-
-
0032737272
-
Microglia derive from progenitors, originating from the yolk sac, and which proliferate in the brain
-
Alliot F., Godin I., Pessac B. Microglia derive from progenitors, originating from the yolk sac, and which proliferate in the brain. Brain Res. Dev. Brain Res. 1999, 117:145-152.
-
(1999)
Brain Res. Dev. Brain Res.
, vol.117
, pp. 145-152
-
-
Alliot, F.1
Godin, I.2
Pessac, B.3
-
86
-
-
78149360132
-
Fate mapping analysis reveals that adult microglia derive from primitive macrophages
-
Ginhoux F., Greter M., Leboeuf M., Nandi S., See P., Gokhan S., Mehler M.F., Conway S.J., Ng L.G., Stanley E.R., Samokhvalov I.M., Merad M. Fate mapping analysis reveals that adult microglia derive from primitive macrophages. Science 2010, 330:841-845.
-
(2010)
Science
, vol.330
, pp. 841-845
-
-
Ginhoux, F.1
Greter, M.2
Leboeuf, M.3
Nandi, S.4
See, P.5
Gokhan, S.6
Mehler, M.F.7
Conway, S.J.8
Ng, L.G.9
Stanley, E.R.10
Samokhvalov, I.M.11
Merad, M.12
-
87
-
-
78650233802
-
Microglia in the CNS: immigrants from another world
-
Prinz M., Mildner A. Microglia in the CNS: immigrants from another world. Glia 2011, 59:177-187.
-
(2011)
Glia
, vol.59
, pp. 177-187
-
-
Prinz, M.1
Mildner, A.2
-
88
-
-
84875892857
-
Microglia emerge from erythromyeloid precursors via Pu.1- and Irf8-dependent pathways
-
Kierdorf K., Erny D., Goldmann T., Sander V., Schulz C., Perdiguero E.G., Wieghofer P., Heinrich A., Riemke P., Holscher C., Muller D.N., Luckow B., Brocker T., Debowski K., Fritz G., Opdenakker G., Diefenbach A., Biber K., Heikenwalder M., Geissmann F., Rosenbauer F., Prinz M. Microglia emerge from erythromyeloid precursors via Pu.1- and Irf8-dependent pathways. Nat. Neurosci. 2013, 16:273-280.
-
(2013)
Nat. Neurosci.
, vol.16
, pp. 273-280
-
-
Kierdorf, K.1
Erny, D.2
Goldmann, T.3
Sander, V.4
Schulz, C.5
Perdiguero, E.G.6
Wieghofer, P.7
Heinrich, A.8
Riemke, P.9
Holscher, C.10
Muller, D.N.11
Luckow, B.12
Brocker, T.13
Debowski, K.14
Fritz, G.15
Opdenakker, G.16
Diefenbach, A.17
Biber, K.18
Heikenwalder, M.19
Geissmann, F.20
Rosenbauer, F.21
Prinz, M.22
more..
-
89
-
-
33749258893
-
Circulating monocytes engraft in the brain, differentiate into microglia and contribute to the pathology following meningitis in mice
-
Djukic M., Mildner A., Schmidt H., Czesnik D., Bruck W., Priller J., Nau R., Prinz M. Circulating monocytes engraft in the brain, differentiate into microglia and contribute to the pathology following meningitis in mice. Brain 2006, 129:2394-2403.
-
(2006)
Brain
, vol.129
, pp. 2394-2403
-
-
Djukic, M.1
Mildner, A.2
Schmidt, H.3
Czesnik, D.4
Bruck, W.5
Priller, J.6
Nau, R.7
Prinz, M.8
-
90
-
-
36448955070
-
Microglia in the adult brain arise from Ly-6ChiCCR2+ monocytes only under defined host conditions
-
Mildner A., Schmidt H., Nitsche M., Merkler D., Hanisch U.-K., Mack M., Heikenwalder M., Brück W., Priller J., Prinz M. Microglia in the adult brain arise from Ly-6ChiCCR2+ monocytes only under defined host conditions. Nat. Neurosci. 2007, 10:1544-1553.
-
(2007)
Nat. Neurosci.
, vol.10
, pp. 1544-1553
-
-
Mildner, A.1
Schmidt, H.2
Nitsche, M.3
Merkler, D.4
Hanisch, U.-K.5
Mack, M.6
Heikenwalder, M.7
Brück, W.8
Priller, J.9
Prinz, M.10
-
91
-
-
84866673725
-
Interferon regulatory factor 8/interferon consensus sequence binding protein is a critical transcription factor for the physiological phenotype of microglia
-
Horiuchi M., Wakayama K., Itoh A., Kawai K., Pleasure D., Ozato K., Itoh T. Interferon regulatory factor 8/interferon consensus sequence binding protein is a critical transcription factor for the physiological phenotype of microglia. J. Neuroinflamm. 2012, 9:227.
-
(2012)
J. Neuroinflamm.
, vol.9
, pp. 227
-
-
Horiuchi, M.1
Wakayama, K.2
Itoh, A.3
Kawai, K.4
Pleasure, D.5
Ozato, K.6
Itoh, T.7
-
92
-
-
84875950146
-
IFN regulatory factor 8 is a key constitutive determinant of the morphological and molecular properties of microglia in the CNS
-
Minten C., Terry R., Deffrasnes C., King N.J., Campbell I.L. IFN regulatory factor 8 is a key constitutive determinant of the morphological and molecular properties of microglia in the CNS. PLoS ONE 2012, 7:e49851.
-
(2012)
PLoS ONE
, vol.7
, pp. e49851
-
-
Minten, C.1
Terry, R.2
Deffrasnes, C.3
King, N.J.4
Campbell, I.L.5
-
93
-
-
80053533411
-
PU.1 and haematopoietic cell fate: dosage matters
-
Mak K.S., Funnell A.P., Pearson R.C., Crossley M. PU.1 and haematopoietic cell fate: dosage matters. Int. J. Cell Biol. 2011, 2011:808524.
-
(2011)
Int. J. Cell Biol.
, vol.2011
, pp. 808524
-
-
Mak, K.S.1
Funnell, A.P.2
Pearson, R.C.3
Crossley, M.4
-
94
-
-
35348875999
-
Transcriptional control of granulocyte and monocyte development
-
Friedman A.D. Transcriptional control of granulocyte and monocyte development. Oncogene 2007, 26:6816-6828.
-
(2007)
Oncogene
, vol.26
, pp. 6816-6828
-
-
Friedman, A.D.1
-
95
-
-
0037071397
-
Transcriptional regulation of granulocyte and monocyte development
-
Friedman A.D. Transcriptional regulation of granulocyte and monocyte development. Oncogene 2002, 21:3377-3390.
-
(2002)
Oncogene
, vol.21
, pp. 3377-3390
-
-
Friedman, A.D.1
|