Human dendritic cell subsets: an update

被引:969
作者
Collin, Matthew
Bigley, Venetia
机构
[1] Newcastle Upon Tyne Hosp NHS Fdn Trust, Inst Cellular Med, Human Dendrit Cell Lab, Newcastle Upon Tyne, Tyne & Wear, England
[2] Newcastle Upon Tyne Hosp NHS Fdn Trust, NIHR Newcastle Biomed Res Ctr, Newcastle Upon Tyne, Tyne & Wear, England
[3] Newcastle Univ, Newcastle Upon Tyne, Tyne & Wear, England
基金
英国惠康基金;
关键词
antigen presentation/processing; dendritic cell; transcriptomics; HUMAN LANGERHANS CELLS; ANTIGEN CROSS-PRESENTATION; CD8(+) T-CELLS; COLONY-STIMULATING FACTOR; DRAINING LYMPH-NODES; IFN-ALPHA PRODUCTION; TRANSCRIPTION FACTOR; I INTERFERON; LINEAGE COMMITMENT; HUMAN TISSUES;
D O I
10.1111/imm.12888
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
Dendritic cells (DC) are a class of bone-marrow-derived cells arising from lympho-myeloid haematopoiesis that form an essential interface between the innate sensing of pathogens and the activation of adaptive immunity. This task requires a wide range of mechanisms and responses, which are divided between three major DC subsets: plasmacytoid DC (pDC), myeloid/conventional DC1 (cDC1) and myeloid/conventional DC2 (cDC2). Each DC subset develops under the control of a specific repertoire of transcription factors involving differential levels of IRF8 and IRF4 in collaboration with PU.1, ID2, E2-2, ZEB2, KLF4, IKZF1 and BATF3. DC haematopoiesis is conserved between mammalian species and is distinct from monocyte development. Although monocytes can differentiate into DC, especially during inflammation, most quiescent tissues contain significant resident populations of DC lineage cells. An extended range of surface markers facilitates the identification of specific DC subsets although it remains difficult to dissociate cDC2 from monocyte-derived DC in some settings. Recent studies based on an increasing level of resolution of phenotype and gene expression have identified pre-DC in human blood and heterogeneity among cDC2. These advances facilitate the integration of mouse and human immunology, support efforts to unravel human DC function in vivo and continue to present new translational opportunities to medicine.
引用
收藏
页码:3 / 20
页数:18
相关论文
共 202 条
[31]   Comparative genomics analysis of mononuclear phagocyte subsets confirms homology between lymphoid tissue-resident and dermal XCR1+ DCs in mouse and human and distinguishes them from Langerhans cells [J].
Carpentier, Sabrina ;
Thien-Phong Vu Manh ;
Chelbi, Rabie ;
Henri, Sandrine ;
Malissen, Bernard ;
Haniffa, Muzlifah ;
Ginhoux, Florent ;
Dalod, Marc .
JOURNAL OF IMMUNOLOGICAL METHODS, 2016, 432 :35-49
[32]   Plasmacytoid monocytes migrate to inflamed lymph nodes and produce large amounts of type I interferon [J].
Cella, M ;
Jarrossay, D ;
Facchetti, F ;
Alebardi, O ;
Nakajima, H ;
Lanzavecchia, A ;
Colonna, M .
NATURE MEDICINE, 1999, 5 (08) :919-923
[33]   Langerhans cell (LC) proliferation mediates neonatal development, homeostasis, and inflammation-associated expansion of the epidermal LC network [J].
Chorro, Laurent ;
Sarde, Aurelien ;
Li, Mei ;
Woollard, Kevin J. ;
Chambon, Pierre ;
Malissen, Bernard ;
Kissenpfennig, Adrien ;
Barbaroux, Jean-Baptiste ;
Groves, Richard ;
Geissmann, Frederic .
JOURNAL OF EXPERIMENTAL MEDICINE, 2009, 206 (13) :3089-3100
[34]   Resident CD141 (BDCA3)+ dendritic cells in human skin produce IL-10 and induce regulatory T cells that suppress skin inflammation [J].
Chu, Chung-Ching ;
Ali, Niwa ;
Karagiannis, Panagiotis ;
Di Meglio, Paola ;
Skowera, Ania ;
Napolitano, Luca ;
Barinaga, Guillermo ;
Grys, Katarzyna ;
Sharif-Paghaleh, Ehsan ;
Karagiannis, Sophia N. ;
Peakman, Mark ;
Lombardi, Giovanna ;
Nestle, Frank O. .
JOURNAL OF EXPERIMENTAL MEDICINE, 2012, 209 (05) :935-945
[35]   Life-threatening influenza and impaired interferon amplification in human IRF7 deficiency [J].
Ciancanelli, Michael J. ;
Huang, Sarah X. L. ;
Luthra, Priya ;
Garner, Hannah ;
Itan, Yuval ;
Volpi, Stefano ;
Lafaille, Fabien G. ;
Trouillet, Celine ;
Schmolke, Mirco ;
Albrecht, Randy A. ;
Israelsson, Elisabeth ;
Lim, Hye Kyung ;
Casadio, Melina ;
Hermesh, Tamar ;
Lorenzo, Lazaro ;
Leung, Lawrence W. ;
Pedergnana, Vincent ;
Boisson, Bertrand ;
Okada, Satoshi ;
Picard, Capucine ;
Ringuier, Benedicte ;
Troussier, Francoise ;
Chaussabel, Damien ;
Abel, Laurent ;
Pellier, Isabelle ;
Notarangelo, Luigi D. ;
Garcia-Sastre, Adolfo ;
Basler, Christopher F. ;
Geissmann, Frederic ;
Zhang, Shen-Ying ;
Snoeck, Hans-Willem ;
Casanova, Jean-Laurent .
SCIENCE, 2015, 348 (6233) :448-453
[36]   β-Catenin Signaling Drives Differentiation and Proinflammatory Function of IRF8-Dependent Dendritic Cells [J].
Cohen, Sara B. ;
Smith, Norah L. ;
McDougal, Courtney ;
Pepper, Marion ;
Shah, Suhagi ;
Yap, George S. ;
Acha-Orbea, Hans ;
Jiang, Aimin ;
Clausen, Bjoern E. ;
Rudd, Brian D. ;
Denkers, Eric Y. .
JOURNAL OF IMMUNOLOGY, 2015, 194 (01) :210-222
[37]   Antigen delivery to early endosomes eliminates the superiority of human blood BDCA3+ dendritic cells at cross presentation [J].
Cohn, Lillian ;
Chatterjee, Bithi ;
Esselborn, Filipp ;
Smed-Soerensen, Anna ;
Nakamura, Norihiro ;
Chalouni, Cecile ;
Lee, Byoung-Chul ;
Vandlen, Richard ;
Keler, Tibor ;
Lauer, Peter ;
Brockstedt, Dirk ;
Mellman, Ira ;
Delamarre, Lelia .
JOURNAL OF EXPERIMENTAL MEDICINE, 2013, 210 (05) :1049-1063
[38]   TLR3 Signaling Promotes the Induction of Unique Human BDCA-3 Dendritic Cell Populations [J].
Colletti, Nicholas J. ;
Liu, Hong ;
Gower, Adam C. ;
Alekseyev, Yuriy O. ;
Arendt, Christopher W. ;
Shaw, Michael H. .
FRONTIERS IN IMMUNOLOGY, 2016, 7
[39]   Langerhans cell origin and regulation [J].
Collin, Matthew ;
Milne, Paul .
CURRENT OPINION IN HEMATOLOGY, 2016, 23 (01) :28-35
[40]   Haematopoietic and immune defects associated with GATA2 mutation [J].
Collin, Matthew ;
Dickinson, Rachel ;
Bigley, Venetia .
BRITISH JOURNAL OF HAEMATOLOGY, 2015, 169 (02) :173-187