1)Steinman RM, Cohn ZA. Identification of a novel cell type in peripheral lymphoid organs of mice. J Exp Med. 1973; 137: 1142-62
|
|
|
2)Banchereau J, Steinman RM. Dendritic cell and the control of immunity. Nature. 1998; 392: 245-52
|
|
|
3)Swiecki M, Colonna M. Unraveling the functions of plasmacytoid dendritic cells during viral infections, autoimmunity, and tolerance. Immunol Rev. 2010; 234: 142-62
|
|
|
4)Siegal FP, Kadowaki N, Shodell M, et al. The nature of the principal type 1 interferon-producing cells in human blood. Science. 1999; 284: 1835-7
|
|
|
5)Cella M, Jarrossay D, Facchetti F, et al. Plasmacytoid monocytes migrate to inflamed lymph nodes and produce large amounts of type I interferon. Nat Med. 1999; 5: 868-70
|
|
|
6)Asselin-Paturel C, Boonstra A, Dalod M, et al. Mouse type I IFN-producing cells are immature APCs with plasmacytoid morphology. Nat Immunol. 2001; 2: 1144-50
|
|
|
7)Nakano H, Yanagita M, Gunn MD. CD11c+B220+Gr-1+ cells in mouse lymph nodes and spleen display characteristics of plasmacytoid dendritic cells. J Exp Med. 2001; 194: 1171-8
|
|
|
8)Björck P. Isolation and characterization of plasmacytoid dendritic cells from Flt3 ligand and granulocyte-macrophage colony-stimulating factor-treated mice. Blood. 2001; 98: 3520-6
|
|
|
9)Gilliet M, Cao W, Liu YJ. Plasmacytoid dendritic cells: sensing nucleic acids in viral infection and autoimmune diseases. Nat Rev Immunol. 2008; 8: 594-606
|
|
|
10)Banchereau J, Pascual V. Type I interferon in systemic lupus erythematosus and other autoimmune diseases. Immunity. 2006; 25: 383-92
|
|
|
11) Randolph GJ, Inaba K, Robbiani DF, et al. Differentiation of phagocytic monocytes into lymph node dendritic cells in vivo. Immunity. 1999; 11: 753-61
|
|
|
12) Shortman K, Naik SH. Steady-state and inflammatory dendritic-cell development. Nat Immunol. 2007; 7: 19-30
|
|
|
13) Geissmann F, Manz MG, Jung S, et al. Development of monocytes, macrophages, and dendritic cells. Science. 2010; 327: 656-61
|
|
|
14) Merad M, Manz MG. Dendritic cell homeostasis. Blood. 2009; 113: 3418-27
|
|
|
15) McKenna HJ, Stocking KL, Miller RE, et al. Mice lacking flt3 ligand have deficient hematopoiesis affecting hematopoietic progenitor cells, dendritic cells, and natural killer cells. Blood. 2000; 95: 3489-97
|
|
|
16)Waskow C, Liu K, Darrasse-Jèze G, et al. The receptor tyrosine kinase Flt3 is required for dendritic cell development in peripheral lymphoid tissues. Nat Immunol. 2008; 9: 676-83
|
|
|
17)Fogg DK, Sibon C, Miled C, et al. A clonogenic bone marrow progenitor specific for macrophages and dendritic cells. Science. 2006; 311: 83-7
|
|
|
18)Onai N, Obata-Onai A, Schmid MA, et al. Identification of clonogenic Flt3+M-CSFR+ plasmacytoid and conventional dendritic cell progenitors in mouse bone marrow. Nat Immunol. 2007; 8: 1207-16
|
|
|
19)Naik SH, Sathe P, Park HY, et al. Development of plasmacytoid and conventional dendritic cell subtypes from single precursor cells derived in vitro and in vivo. Nat Immunol. 2007; 8: 1217-26
|
|
|
20)Onai N, Kurabayashi K, Hosoi-Amaike M, et al. A clonogenic progenitor with prominent plasmacytoid dendritic cell developmental potential. Immunity. 2013; 38: 943-57
|
|
|
21)Hettinger J, Richards DM, Hansson J, et al. Origin of monocytes and macrophages in a committed progenitor. Nat Immunol. 2013; 14: 821-30
|
|
|
22)Watowich SS, Liu YJ. Mechanisms regulating dendritic cell specification and development. Immunol Rev. 2010; 238: 76-92
|
|
|
23)Belz GT, Nutt SL. Transcriptional programming of the dendritic cell network. Nat Rev Immunol. 2012; 12: 101-13
|
|
|
24)Cisse B, Caton ML, Lehner M, et al. Transcription factor E2-2 is an essential and specific regulator of plasmacytoid dendritic cell development. Cell. 2008; 135: 37-48
|
|
|
25)Chen W, Antonenko S, Sederstrom JM, et al. Thrombopoietin cooperates with FLT3-ligand in the generation of plasmacytoid dendritic cell precursors from human hematopoietic progenitors. Blood. 2004; 103: 2547-53
|
|
|
26)Schmid MA, Takizawa H, Baumjohann DR, et al. Bone marrow dendritic cell progenitors sense pathogens via Toll-like receptors and subsequently migrate to inflamed lymph nodes. Blood. 2011; 118: 4829-40
|
|
|
27)GeurtsvanKessel CH, Willart MA, van Rijt LS, et al. Clearance of influenza virus from the lung depends on migratory langerin+CD11b- but not plasmacytoid dendritic cells. J Exp Med. 2008; 205: 1621-34
|
|
|
28)Desch AN, Randolph GJ, Murphy KM, et al. Efferocytic CD103+ pulmonary dendritic cells selectively acquire and present apoptotic cell-associated antigen. J Exp Med. 2011; 208: 1789-97
|
|
|
29)Beaty SR, Rose CE Jr, Sung SS. Diverse and potent chemokine production by lung dendritic cells in homeostasis and in allergic lung inflammation. J Immunol. 2007; 178: 1882-95
|
|
|
30)van Rijt LS, Jung S, Kleinjan A, et al. In vivo depletion of lung CD11c+ dendritic cells during allergen challenge abrogates the characteristic features of asthma. J Exp Med. 2005; 201: 981-91
|
|
|
31)Hammad H, Chieppa M, Perros F, et al. House dust mite allergen induces asthma via Toll-like receptor 4 triggering of airway structural cells. Nat Med. 2009; 15: 410-6
|
|
|
32)Kool M, van Nimwegen M, Willart MA, et al. An anti-inflammatory role for plasmacytoid dendritic cells in allergic airway inflammation. J Immunol. 2009; 183: 1074-82
|
|
|
33)de Heer HJ, Hammad H, Soullie T, et al. Essential role of lung plasmacytoid dendritic cells in preventing asthmatic reactions to harmless inhaled antigen. J Exp Med. 2004; 200: 89-98
|
|
|
34)Wikstrom ME, Stumbles PA. Mouse respiratory tract dendritic cell subsets and the immunological fate of inhaled antigens. Immunol Cell Biol. 2007; 85: 182-8
|
|
|
35)GeurtsvanKessel CH, Bergen IM, Muskens F, et al. Both conventional and interferon killer dendritic cells have antigen-presenting capacity during influenza virus infection. PLoS One. 2009; 4: e7187
|
|
|
36)Jakubzick C, Helft J, Kaplan TJ, et al. Optimization of methods to study pulmonary dendritic cell migration reveals distinct capacities of DC subsets to acquire soluble versus particulate antigen. J Immunol Methods. 2008; 337: 121-31
|
|
|
37)Grayson MH, Cheung D, Rohlfing MM, et al. Induction of high-affinity IgE receptor on lung dendritic cells during viral infection leads to mucous cell metaplasia. J Exp Med. 2007; 204: 2759-69
|
|
|
38)Cheung DS, Ehlenbach SJ, Kitchens RT, et al. Cutting edge: CD49d+ neutrophils induce FcεRI expression on lung dendritic cells in a mouse model of postviral asthma. J Immunol. 2010; 185: 4983-7
|
|
|
39)Hammad H, Plantinga M, Deswarte K, et al. Inflammatory dendritic cells—not basophils—are necessary and sufficient for induction of Th2 immunity to inhaled house dust mite allergen. J Exp Med. 2010; 207: 2097-111
|
|
|
40)Plantinga M, Hammad H, Lambrecht BN. Origin and functional specializations of DC subsets in the lung. Eur J Immunol. 2010; 40: 2112-8
|
|
|
41)Ginhoux F, Liu K, Helft J, et al. The origin and development of nonlymphoid tissue CD103+DCs. J Exp Med. 2009; 206: 3115-30
|
|
|
42)Hildner K, Edelson BT, Purtha WE, et al. Batf3 deficiency reveals a critical role for CD8α+ dendritic cells in cytotoxic T cell immunity. Science. 2008; 322: 1097-100
|
|
|
43)Edelson BT, KC W, Juang R, et al. Peripheral CD103+ dendritic cells form a unified subset developmentally related to CD8α+ conventional dendritic cells. J Exp Med. 2010; 207: 823-36
|
|
|
44)Jakubzick C, Tacke F, Ginhoux F, et al. Blood monocyte subsets differentially give rise to CD103+ and CD103- pulmonary dendritic cell populations. J Immunol. 2008; 180: 3019-27
|
|
|
45)Varol C, Landsman L, Fogg DK, et al. Monocytes give rise to mucosal, but not splenic, conventional dendritic cells. J Exp Med. 2007; 204: 171-80
|
|
|
46)Varol C, Vallon-Eberhard A, Elinav E, et al. Intestinal lamina propria dendritic cell subsets have different origin and functions. Immunity. 2009; 31: 502-12
|
|
|
47)Bogunovic M, Ginhoux F, Helft J, et al. Origin of the lamina propria dendritic cell network. Immunity. 2009; 31: 513-25
|
|
|