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2 eumovax and Gardasil, respectively, activate monocyte-derived DCs, monocytes and CD1c+ blood DCs, hig
4 primed with allogeneic CD40 ligand-activated monocyte-derived DCs (DC1) differentiated into CD8 T cel
5 of TNF production by human newborn and adult monocyte-derived DCs cultured in 10% autologous plasma o
10 onocytes, myeloid dendritic cells (mDC), and monocyte-derived DC (MO-DC) expressed IL-36R and respond
11 e observed that the DEP-induced monocyte and monocyte-derived DC recruitment was completely abolished
15 is upregulated upon activation of BMDCs and monocyte-derived DCs, restrains migration of skin and BM
16 -derived DCs, and lung-resident CD11b(+) and monocyte-derived DCs, whereas intestinal and pulmonary C
18 tion (CD) 11b(+) conventional DCs (cDCs) and monocyte-derived DCs, LP CD103(+), and CD11b(+) cDCs but
20 ted 293 cell, IDO+ ovarian cancer cells, and monocyte-derived DCs on CD4+ Th1 cells, CD8+ T cells, an
21 whereas early induction of Th1 cytokines and monocyte-derived DCs are features of successful activati
23 ected human DC-SIGN(+/-) Raji cell lines and monocyte-derived DCs (MoDCs) were pulsed with whole, liv
25 contrast to the effects on bone marrow- and monocyte-derived DCs, the current study shows that Ad in
26 nse to acute exposure to DEPs, monocytes and monocyte-derived DCs accumulated in the lungs of WT mice
27 etion of Ly6C(hi) inflammatory monocytes and monocyte-derived DCs enhanced NP-specific IgM and IgG3 r
28 )-mediated activation of human monocytes and monocyte-derived DCs is associated with a distinct gene
29 ltrated the epidermis, whereas monocytes and monocyte-derived DCs were predominant in the dermis.
30 gly up-regulated in stimulated monocytes and monocyte-derived DCs, persisting in the latter for much
32 dendritic cells (DCs), often referred to as monocyte-derived DCs or inflammatory DCs (iDCs), conside
35 ession levels of cytosolic proteases between monocyte-derived DCs and MPs and upon maturation with LP
37 ly downregulated in Mtb-infected human blood monocyte-derived DCs, indicating that reduction of annex
38 vation by TLR agonists in inflammatory blood monocyte-derived DCs that express inducible NO synthase.
39 re the closest known equivalent of the blood monocyte-derived DCs that have been used for human thera
42 We also studied LP cross-presentation by monocyte-derived DC, plasmacytoid DC, monocytes, and B c
48 +)Ly6C(+) and CD11c(+)CD11b(+)Ly6C(-)CD64(+) monocyte-derived DCs was reduced in Clec4n(-/-) recipien
54 fect is specific to cDCs, as Rab43-deficient monocyte-derived DCs showed no defect in cross-presentat
55 deficient in CD103(+) DCs and CCR2-dependent monocyte-derived DCs exhibited similar allergic inflamma
56 studied endogenous mechanisms in developing monocyte-derived DCs (MoDCs) that can induce inflammator
58 nitiate the immune response in this disease, monocyte-derived DCs were generated from coccidioidal Ag
60 To identify naturally processed epitopes, monocyte-derived DC were pulsed with preproinsulin (PPI)
63 arrow culture protocols efficiently generate monocyte-derived DCs or produce a mixture of FLT3L-depen
69 teristics shared between our cells and human monocyte-derived DC, whose analogues in mice have not be
71 ukocyte antigen (HLA)-DR expression by human monocyte-derived DC, 3 relevant molecules for Th-cell ge
74 nalyzed the induction of maturation in human monocyte-derived DC following exposure to GAS clinical i
75 cellular and extracellular response in human monocyte-derived DC, especially during the monocyte to D
76 ncapsulated C. gattii failed to induce human monocyte-derived DC maturation and T cell proliferation,
80 sufficient to strongly impair primary human monocyte-derived DC (MDDC) responses upon stimulation in
83 epatoma cells is capable of activating human monocyte-derived DCs by up-regulating the expression of
86 sistent with this, VLDLR expression by human monocyte-derived DCs was increased by HDM stimulation.
87 efficiently bound and internalized by human monocyte-derived DCs, trafficked to late phagolysosomes,
88 dy, we report that serum-free cultured human monocyte-derived DCs after TLR stimulation with polyinos
89 e used to compare whole proteomes from human monocyte-derived DCs differentiated toward either regula
91 We have found that mature, immunogenic human monocyte-derived DCs (moDCs) up-regulate the immune-inhi
92 henotypic and functional maturation in human monocyte-derived DCs (MDDCs) similar to but distinct fro
93 that ET induces a maturation state in human monocyte-derived DCs (MDDCs) similar to that induced by
94 to selectively activate PKA or Epac in human monocyte-derived DCs and examined the effect of these si
95 ne markers differentially expressed in human monocyte-derived DCs differentiated toward a proallergic
96 ession of DC-SCRIPT and GR is shown in human monocyte-derived DCs, and DC-SCRIPT knockdown enhances G
97 valent mechanisms were demonstrated in human monocyte-derived DCs, setting the scene for a possible r
104 sults demonstrated that tumour-induced human monocyte-derived DCs exhibited systematic functional def
105 In the current study, we infected human monocyte-derived DCs with C. jejuni to examine the produ
106 96-well in vitro assays using neonatal human monocyte-derived DCs and humanized TLR8 mouse bone marro
107 immune reaction during the response of human monocyte-derived DCs (mDCs) to different TLR stimuli: LP
113 that IFN-beta1a in vitro treatment of human monocyte-derived DCs induced the expression of TLR7 and
115 e, we demonstrate that on infection of human monocyte-derived DCs with herpes simplex virus type 1 (H
116 of IL-10 during in vitro maturation of human monocyte-derived DCs with ischemia/reperfusion-associate
117 onal antibodies leads to maturation of human monocyte-derived DCs, which depends on the presence of I
121 ine bone marrow-derived DCs (BMDCs) or human monocyte-derived DCs (HDCs) were incubated with live, en
123 I inhibition were delivered to primary human monocyte-derived DCs (MDDCs) using a lentivirus-based ex
124 in the stimulatory capacity of primary human monocyte-derived DCs infected with wild-type DENV isolat
126 d the binding of targeted liposomes to human monocyte-derived DCs (Mo-DCs), demonstrating their targe
133 ocytosis of recombinant ADAMTS13 by immature monocyte-derived DCs using flow cytometry and confocal m
134 HIV infection, we conditioned human immature monocyte-derived DCs (moDCs) with RA (RA-DCs), before pu
135 e the first to identify a subset of immature monocyte-derived DCs constitutively expressing IL-32 and
136 that DC-SIGN is highly expressed on immature monocyte-derived DCs, with at least 100,000 copies and o
138 irrespective of heat stress and infection in monocyte-derived DC and may function to positively regul
139 We quantified the expression of IL-23 in monocyte-derived DCs in MS patients and healthy donors a
140 chemokines and proinflammatory cytokines in monocyte-derived DCs (moDCs), with the notable exception
143 G2 signaling induces key LCH-cell markers in monocyte-derived DCs, suggesting a functional role of No
145 show that inhibition of HIV-1 replication in monocyte-derived DCs (MDDCs) is associated with an incre
148 imulated primary blood MDCs and inflammatory monocyte-derived DCs (MDDCs) with TLR ligands, resulting
150 erentiation of CCR2-dependent monocytes into monocyte-derived DCs (Mo-DCs) in the lungs after F. tula
153 s reminiscent of that which occurs in mature monocyte-derived DCs and that it varies with the activat
154 we compared chemotactic responses of mature monocyte-derived DCs and maturation agent lipopolysaccha
155 strate that immature and CD40 ligand-matured monocyte-derived DC have characteristic phenotypic and f
156 ine alters the cytokine profiles of maturing monocyte-derived DC resulting in a change from Th1 to Th
157 These data reveal a way in which migratory monocyte-derived DCs and other DCs, like lymph node resi
159 tain increased numbers of CCR2(+) monocytes, monocyte-derived DC (moDC), and exudate macrophages (exM
160 ns cells (LCs), conventional DCs, monocytes, monocyte-derived DCs, macrophages, and plasmacytoid DCs
161 aracterize the responses of human monocytes, monocyte-derived DCs and blood DC subsets to 13 vaccines
162 either alter the capacity of myeloid DCs nor monocyte-derived DCs to induce CD4 T cell proliferation.
165 he altered maturation and early apoptosis of monocyte-derived DC may represent another mechanism by w
168 tained scattered cells in cytospin slides of monocyte-derived DC with long, thin, beaded membrane pro
170 s a major role in hMPV-induced activation of monocyte-derived DCs (moDCs), as downregulation of its e
171 zed by enhanced type 1 IFN and activation of monocyte-derived DCs but diminished cDC type 1 IFN respo
172 lating immunity, we compared the capacity of monocyte-derived DCs (moDCs) with that of CD34+ hematopo
176 uced the rapid appearance of a population of monocyte-derived DCs in the draining lymph node, early r
179 flammation, CCR2 mediated the recruitment of monocyte-derived DCs to the perivascular region, and Fpr
181 V and exhibit a phenotype similar to that of monocyte-derived DCs routinely used for in vitro studies
182 gated the role of Fpr2 in the trafficking of monocyte-derived DCs in allergic airway inflammation in
183 tributes to the regulation of trafficking of monocyte-derived DCs, and utilization of TGF-beta can po
184 DC maturation, we developed a model based on monocyte-derived DC (moDC) and calibrated NETs isolated
186 nregulate cell-surface expression of CCR1 on monocyte-derived DCs and diminish their calcium flux in
189 tolerogenic and anti-inflammatory profile on monocyte-derived DCs (MoDCs) challenged by a proinflamma
192 rd monocyte-derived macrophages (mo-Macs) or monocyte-derived DCs (mo-DCs) and which transcription fa
194 ver, the phenotype and function of patients' monocyte-derived DCs (MoDCs), which are commonly used fo
195 DCs are TNF-producing and IL-1beta-producing monocyte-derived DCs, including a population of inflamma
196 d DC and may function to positively regulate monocyte-derived DC, especially during critical periods
197 these results reveal that Dectin-2 regulates monocyte-derived DC function in the pulmonary microenvir
201 lls (DCs) in the immune response, we studied monocyte-derived DCs (moDCs) and plasmacytoid DCs (pDCs)
202 gene expression in heterogenous DC subsets, (monocyte-derived DCs [MDDCs], CD34(+) hematopoietic stem
206 ed lung DCs from C57BL/6 mice and found that monocyte-derived DCs (moDCs), including CD11b(hi)Ly-6C(l
211 have dramatically enhanced gene transfer to monocyte derived DC (MDDC) by retargeting adenoviral (Ad
213 fusion assay, we now show that HIV fusion to monocyte-derived DCs (MDDCs) both decreases and kinetica
214 5 vectors expressing SIV Gag Ag to transduce monocyte-derived DC from rhesus macaques, and then immun
216 capacity of stroma-conditioned media-treated monocyte-derived DCs and primary human gastric and intes
218 ly published that CD37 is downregulated upon monocyte-derived DC activation, promotes migration of bo
220 transmission, and productive infection using monocyte-derived DCs (MDDCs), blood myeloid DCs, and B-c
223 presentation of the antigen days later when monocyte-derived DCs migrated to lymph nodes or in vitro
225 d IL-12 and IL-10 at similar levels, whereas monocyte-derived DC produced comparable levels of IL-12,
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