Human Bone Marrow-Derived Myeloid Dendritic Cells Show an Immature Transcriptional and Functional Profile Compared to Their Peripheral Blood Counterparts and Separate from Slan plus Non-Classical Monocytes

被引:18
作者
van Leeuwen-Kerkhoff, Nathalie [1 ]
Lundberg, Kristina [2 ]
Westers, Theresia M. [1 ]
Kordasti, Shahram [3 ,6 ,7 ]
Bontkes, Hetty J. [4 ]
Lindstedt, Malin [2 ]
de Gruijl, Tanja D. [5 ]
van de Loosdrecht, Arjan A. [1 ]
机构
[1] Vrije Univ Amsterdam, Canc Ctr Amsterdam, Dept Hematol, Med Ctr, Amsterdam, Netherlands
[2] Lund Univ, Dept Immunotechnol, Lund, Sweden
[3] Kings Coll London, Dept Haematol Med, London, England
[4] Vrije Univ Amsterdam, Dept Pathol, Med Ctr, Amsterdam, Netherlands
[5] Vrije Univ Amsterdam, Dept Med Oncol, Med Ctr, Canc Ctr Amsterdam, Amsterdam, Netherlands
[6] Kings Coll London, Comprehens Canc Ctr, London, England
[7] Guys Hosp, London, England
关键词
dendrite cells; non-classical monocytes; bone marrow; peripheral blood; microarray analysis; cytokines; MYELODYSPLASTIC SYNDROMES; IN-VIVO; 6-SULFO LACNAC; HUMAN CD1C(+); STEADY-STATE; FLT3; LIGAND; SUBSETS; MOUSE; PROGENITORS; MACROPHAGES;
D O I
10.3389/fimmu.2018.01619
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
The human bone marrow (BM) gives rise to all distinct blood cell lineages, including CD1c+ (cDC2) and CD141+ (cDC1) myeloid dendritic cells (DC) and monocytes. These cell subsets are also present in peripheral blood (PB) and lymphoid tissues. However, the difference between the BM and PB compartment in terms of differentiation state and immunological role of DC is not yet known. The BM may represent both a site for development as well as a possible effector site and so far, little is known in this light with respect to different DC subsets. Using genome-wide transcriptional profiling we found clear differences between the BM and PB compartment and a location-dependent clustering for cDC2 and cDC1 was demonstrated. DC subsets from BM clustered together and separate from the corresponding subsets from PB, which similarly formed a cluster. In BM, a common proliferating and immature differentiating state was observed for the two DC subsets, whereas DC from the PB showed a more immune-activated mature profile. In contrast, BM-derived slan+ non-classical monocytes were closely related to their PB counterparts and not to DC subsets, implying a homogenous prolife irrespective of anatomical localization. Additional functional tests confirmed these transcriptional findings. DC-like functions were prominently exhibited by PB DC. They surpassed BM DC in maturation capacity, cytokine production, and induction of CD4+ and CD8+ T cell proliferation. This first study on myeloid DC in healthy human BM offers new information on steady state DC biology and could potentially serve as a starting point for further research on these immune cells in healthy conditions as well as in diseases.
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页数:18
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共 58 条
[1]   Superior antigen cross-presentation and XCR1 expression define human CD11c+CD141+ cells as homologues of mouse CD8+ dendritic cells [J].
Bachem, Annabell ;
Guettler, Steffen ;
Hartung, Evelyn ;
Ebstein, Frederic ;
Schaefer, Michael ;
Tannert, Astrid ;
Salama, Abdulgabar ;
Movassaghi, Kamran ;
Opitz, Corinna ;
Mages, Hans W. ;
Henn, Volker ;
Kloetzel, Peter-Michael ;
Gurka, Stephanie ;
Kroczek, Richard A. .
JOURNAL OF EXPERIMENTAL MEDICINE, 2010, 207 (06) :1273-1281
[2]   The human syndrome of dendritic cell, monocyte, B and NK lymphoid deficiency [J].
Bigley, Venetia ;
Haniffa, Muzlifah ;
Doulatov, Sergei ;
Wang, Xiao-Nong ;
Dickinson, Rachel ;
McGovern, Naomi ;
Jardine, Laura ;
Pagan, Sarah ;
Dimmick, Ian ;
Chua, Ignatius ;
Wallis, Jonathan ;
Lordan, Jim ;
Morgan, Cliff ;
Kumararatne, Dinakantha S. ;
Doffinger, Rainer ;
van der Burg, Mirjam ;
van Dongen, Jacques ;
Cant, Andrew ;
Dick, John E. ;
Hambleton, Sophie ;
Collin, Matthew .
JOURNAL OF EXPERIMENTAL MEDICINE, 2011, 208 (02) :227-234
[3]   Human dendritic cells (DCs) are derived from distinct circulating precursors that are precommitted to become CD1c+ or CD141+ DCs [J].
Breton, Gaelle ;
Zheng, Shiwei ;
Valieris, Renan ;
da Silva, Israel Tojal ;
Satija, Rahul ;
Nussenzweig, Michel C. .
JOURNAL OF EXPERIMENTAL MEDICINE, 2016, 213 (13) :2861-2870
[4]   Defining human dendritic cell progenitors by multiparametric flow cytometry [J].
Breton, Gaelle ;
Lee, Jaeyop ;
Liu, Kang ;
Nussenzweig, Michel C. .
NATURE PROTOCOLS, 2015, 10 (09) :1407-1422
[5]   Circulating precursors of human CD1c+ and CD141+ dendritic cells [J].
Breton, Gaelle ;
Lee, Jaeyop ;
Zhou, Yu Jerry ;
Schreiber, Joseph J. ;
Keler, Tibor ;
Puhr, Sarah ;
Anandasabapathy, Niroshana ;
Schlesinger, Sarah ;
Caskey, Marina ;
Liu, Kang ;
Nussenzweig, Michel C. .
JOURNAL OF EXPERIMENTAL MEDICINE, 2015, 212 (03) :401-413
[6]   Human dendritic cell deficiency: the missing ID? [J].
Collin, Matthew ;
Bigley, Venetia ;
Haniffa, Muzlifah ;
Hambleton, Sophie .
NATURE REVIEWS IMMUNOLOGY, 2011, 11 (09) :575-583
[7]   The XC chemokine receptor 1 is a conserved selective marker of mammalian cells homologous to mouse CD8α+ dendritic cells [J].
Crozat, Karine ;
Guiton, Rachel ;
Contreras, Vanessa ;
Feuillet, Vincent ;
Dutertre, Charles-Antoine ;
Ventre, Erwan ;
Manh, Thien-Phong Vu ;
Baranek, Thomas ;
Storset, Anne K. ;
Marvel, Jacqueline ;
Boudinot, Pierre ;
Hosmalin, Anne ;
Schwartz-Cornil, Isabelle ;
Dalod, Marc .
JOURNAL OF EXPERIMENTAL MEDICINE, 2010, 207 (06) :1283-1292
[8]   Dendritic cells mediate the induction of polyfunctional human IL17-producing cells (Th17-1 cells) enriched in the bone marrow of patients with myeloma [J].
Dhodapkar, Kavita M. ;
Barbuto, Scott ;
Matthews, Phillip ;
Kukreja, Anjli ;
Mazumder, Amitabha ;
Vesole, David ;
Jagannath, Sundar ;
Dhodapkar, Madhav V. .
BLOOD, 2008, 112 (07) :2878-2885
[9]   Characterization of distinct conventional and plasmacytoid dendritic cell-committed precursors in murine bone marrow [J].
Diao, J ;
Winter, E ;
Chen, WH ;
Cantin, C ;
Cattral, MS .
JOURNAL OF IMMUNOLOGY, 2004, 173 (03) :1826-1833
[10]   Dendritic cells from CML patients have altered actin organization, reduced antigen processing, and impaired migration [J].
Dong, R ;
Cwynarski, K ;
Entwistle, A ;
Marelli-Berg, F ;
Dazzi, F ;
Simpson, E ;
Goldman, JM ;
Melo, JV ;
Lechler, RI ;
Bellantuono, I ;
Ridley, A ;
Lombardi, G .
BLOOD, 2003, 101 (09) :3560-3567