Spontaneous generation and survival of blood dendritic cells in mononuclear cell culture without exogenous cytokines

被引:48
作者
Ho, CSK
Munster, D
Pyke, CM
Hart, DNJ
López, JA
机构
[1] Mater Med Res Inst, Dendritic Cell Lab, Brisbane, Qld 4101, Australia
[2] Univ Queensland, Mater Misericordiae Hosp, Dept Surg, Brisbane, Qld, Australia
关键词
D O I
10.1182/blood.V99.8.2897
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Studies on purified blood dendritic cells (DCs) are hampered by poor viability in tissue culture. We, therefore, attempted to study some of the interactions/relationships between DCs and other blood cells by culturing unseparated peripheral blood mononuclear cell (PBMC) preparations in vitro. Flow cytometric techniques were used to undertake a phenotypic and functional analysis of DCs within the cultured PBMC population. We discovered that both the CD11c(+) and CD11c(-) CD123(hi) DC subsets maintained their viability throughout the 3-day culture period, without the addition of exogenous cytokines. This viability was accompanied by progressive up-regulation of the surface costimulatory (CD40, CD80, CD86) and activation (CMRF-44, CMRF-56, CD83) molecules. The survival and apparent production of DCs in PBMC culture (without exogenous cytokines) and that of sorted DCs (with cytokines) were evaluated and compared by using TruCOUNT analysis. Absolute DC counts increased (for CD123hi and CD11c+ subsets) after overnight culture of PBMCs. Single-cell lineage depletion experiments demonstrated the rapid and spontaneous emergence of "new" in vitro generated DCs from CD14(+)/CD16(+) PBMC radioresistant precursors, additional to the preexisting ex vivo DC population. Unlike monocyte-derived DCs, blood DCs increased dextran uptake with culture and activation. Finally, DCs obtained after culture of PBMCs for 3 days were as effective as freshly isolated DCs in stimulating an allogeneic mixed leukocyte reaction. (C) 2002 by The American Society of Hematology.
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收藏
页码:2897 / 2904
页数:8
相关论文
共 38 条
[1]   Generation of interferon α-producing predendritic cell (Pre-DC)2 from human CD34+ hematopoietic stem cells [J].
Blom, B ;
Ho, S ;
Antonenko, S ;
Liu, YJ .
JOURNAL OF EXPERIMENTAL MEDICINE, 2000, 192 (12) :1785-1795
[2]   CD34(+) hematopoietic progenitors from human cord blood differentiate along two independent dendritic cell pathways in response to GM-CSF+TNF alpha [J].
Caux, C ;
Vanbervliet, B ;
Massacrier, C ;
DezutterDambuyant, C ;
deSaintVis, B ;
Jacquet, C ;
Yoneda, K ;
Imamura, S ;
Schmitt, D ;
Banchereau, J .
JOURNAL OF EXPERIMENTAL MEDICINE, 1996, 184 (02) :695-706
[3]   Plasmacytoid dendritic cells activated by influenza virus and CD40L drive a potent THI polarization [J].
Cella, M ;
Facchetti, F ;
Lanzavecchia, A ;
Colonna, M .
NATURE IMMUNOLOGY, 2000, 1 (04) :305-310
[4]  
Crawford K, 1999, J IMMUNOL, V163, P5920
[5]   INVOLVEMENT OF GRANULOCYTE-MACROPHAGE COLONY-STIMULATING FACTOR IN PULMONARY HOMEOSTASIS [J].
DRANOFF, G ;
CRAWFORD, AD ;
SADELAIN, M ;
REAM, B ;
RASHID, A ;
BRONSON, RT ;
DICKERSIN, GR ;
BACHURSKI, CJ ;
MARK, EL ;
WHITSETT, JA ;
MULLIGAN, RC .
SCIENCE, 1994, 264 (5159) :713-716
[6]   BDCA-2, BDCA-3 and BDCA-4: Three markers for distinct subsets of dendritic cells in human peripheral blood [J].
Dzionek, A ;
Fuchs, A ;
Schmidt, P ;
Cremer, S ;
Zysk, M ;
Miltenyi, S ;
Buck, DW ;
Schmitz, J .
JOURNAL OF IMMUNOLOGY, 2000, 165 (11) :6037-6046
[7]  
EGNER W, 1995, IMMUNOLOGY, V85, P611
[8]   Lectin ligands on human dendritic cells and identification of a peanut agglutinin positive subset in blood [J].
El Sherbini, H ;
Hock, B ;
Fearnley, D ;
McLellan, A ;
Vuckovic, S ;
Hart, DNJ .
CELLULAR IMMUNOLOGY, 2000, 200 (01) :36-44
[9]  
FACCHETTI F, 1988, AM J PATHOL, V133, P15
[10]   Isolation of human blood dendritic cells using the CMRF-44 monoclonal antibody: Implications for studies on antigen-presenting cell function and immunotherapy [J].
Fearnley, DB ;
McLellan, AD ;
Mannering, SI ;
Hock, BD ;
Hart, DNJ .
BLOOD, 1997, 89 (10) :3708-3716