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1 bility to bone metastasis was conferred by a bone marrow-derived cell.
2 epend on T or B lymphocytes, but did require bone marrow derived cells.
3 unts and increased proliferative capacity of bone marrow derived cells.
4 t was due in large part to loss of S100A9 in bone marrow-derived cells.
5 chemokines in the recruitment of circulating bone marrow-derived cells.
6 y radioresistant stromal cells as well as by bone marrow-derived cells.
7 ymal stem cell (MSC) dysfunction in isolated bone marrow-derived cells.
8 ure or in wt mice with circulating Cd39 null bone marrow-derived cells.
9 induced angiogenesis, and recruit protumoral bone marrow-derived cells.
10 ctive effect of receptors on radiosensitive, bone marrow-derived cells.
11 n was inhibited in mice that lacked PAF-R in bone marrow-derived cells.
12 ting factor (G-CSF) induces proliferation of bone marrow-derived cells.
13 within radioresistant stromal cells and not bone marrow-derived cells.
14 +)F4/80(-) macrophages, and CD11b(-)F4/80(-) bone marrow-derived cells.
15 constructed with TLR4 only on renal cells or bone marrow-derived cells.
16 is not driven by AhR-dependent signals from bone marrow-derived cells.
17 infection, a phenotype that is localized to bone marrow-derived cells.
18 spleen were dependent on MyD88 expression by bone marrow-derived cells.
19 st in part, on p75 TNF receptor expressed in bone marrow-derived cells.
20 surface of the retina and CXCR4 localized in bone marrow-derived cells.
21 en LC were ablated in adults and replaced by bone marrow-derived cells.
22 nted into irradiated recipient mice to track bone marrow-derived cells.
23 was greater in chimeras with TLR2 present on bone marrow-derived cells.
24 ry response; however, it was required in non-bone marrow-derived cells.
25 t reperfusion is primarily due to effects on bone marrow-derived cells.
26 ver, CD-160130 had no myelotoxicity on human bone marrow-derived cells.
27 ous renal cells rather than incorporation of bone marrow-derived cells.
28 ly lack or selectively express the A(2A)R on bone marrow-derived cells.
29 rboring the male Y chromosome exclusively in bone marrow-derived cells.
30 tracked with lung parenchymal cells but not bone marrow-derived cells.
31 cept in bone marrow-derived cells or only in bone marrow-derived cells.
32 aracterized by chronic hypoxia and influx of bone marrow-derived cells.
33 ne system and in irradiated mice lacking all bone marrow-derived cells.
34 esponse observed with aging was dependent on bone marrow-derived cells.
35 in resident cells in the skin rather than by bone marrow-derived cells.
36 disease was due to lack of Fas expression on bone marrow-derived cells.
37 ype controls, an effect that was mediated by bone marrow-derived cells.
38 umulation, exosomes were taken up by CD45(+) bone marrow-derived cells.
39 ere mediated by structural cells rather than bone marrow-derived cells.
40 ion-resistant cells via IL-1beta secreted by bone marrow-derived cells.
41 est the restorative function of transplanted bone marrow-derived cells.
42 ists such as imiquimod enhance DNA repair in bone marrow-derived cells.
43 ive IRF3 deficiency in liver parenchymal and bone marrow-derived cells.
44 eotide excision repair genes were studied in bone marrow-derived cells.
45 lpha, and IL-1R function was required on non-bone-marrow-derived cells.
46 grastim alone did not lead to engraftment of bone-marrow-derived cells.
47 atory response involved A2BAR signaling from bone marrow-derived cells, A2BARs located on the lung ti
49 t enhance the survival of MyD88(-/-)-derived bone marrow-derived cells after UV B exposure as was obs
50 nic stem cells, neural stem cells, and adult bone-marrow-derived cells all responded by expressing od
55 1 and CXCR4 contribute to the involvement of bone marrow-derived cells and collaborate with VEGF in t
56 udies reveal an important cross-talk between bone marrow-derived cells and epithelial secretory Panet
60 tive bacteria requires caspase-1 activity in bone marrow-derived cells and interleukin-1 receptor sig
61 stigate the relative contribution of TLR2 on bone marrow-derived cells and intrinsic renal cells, we
62 as dependent on the expression of MMP-9 from bone marrow-derived cells and is most likely contributed
63 FcgammaRIIB is expressed on human and murine bone marrow-derived cells and limits inflammation by sup
64 lts suggest previously unsuspected roles for bone marrow-derived cells and ocular immune privilege in
65 ents indicated that CD59a expression on both bone marrow-derived cells and peripheral tissues played
66 ans, we found FcRn to be highly expressed in bone marrow-derived cells and professional APCs in diffe
67 ity to PIFS is determined by the genotype of bone marrow-derived cells and requires the expression of
68 ication and quantification of populations of bone marrow-derived cells and support the view that macr
69 on have been used to analyze the turnover of bone marrow-derived cells and to demonstrate the critica
70 tissues and osteoclastogenic propensities of bone marrow-derived cells, and augmented bone destructio
73 otidases of the CD39 family are expressed by bone marrow-derived cells, and purinergic mechanisms mig
74 n the tumor microenvironment, CD11b(+)Gr1(+) bone marrow-derived cells are a predominant source of pr
75 at therapeutic mechanisms underlying various bone marrow-derived cells are due to paracrine effects.
80 is in irradiated WT mice, demonstrating that bone marrow-derived cells are the ultimate source of all
81 ome from clinical use in horses treated with bone-marrow-derived cells are presented together with th
82 example, portal fibroblasts, fibrocytes, and bone-marrow-derived cells, as well as cells derived from
85 the present study was to investigate whether bone marrow-derived cells (BMCs) can be induced to expre
87 lative contributions of parenchymal cell and bone marrow-derived cell (BMDC) B7-H1 expression, we gen
89 Studies in animal models have shown that bone marrow-derived cells (BMDC) could be involved in th
92 nsplantation or organ allograft suggest that bone marrow-derived cells (BMDC) may differentiate into
94 owth might be promoted by the recruitment of bone marrow-derived cells (BMDC), which include endothel
96 he accumulation of transplanted adult GFP(+) bone-marrow-derived cells (BMDC) in the substantia nigra
99 However, selective inactivation of A2ARs in bone marrow-derived cells (BMDCs) by transplanting bone
100 radiated and bone marrow transplanted mice, bone marrow-derived cells (BMDCs) fuse with Purkinje neu
102 odel that irradiation induces recruitment of bone marrow-derived cells (BMDCs) into the tumors, resto
104 regarding the effects of transplantation of bone marrow-derived cells (BMDCs) on the severity of dia
106 Increasing evidence suggests that myeloid bone marrow-derived cells (BMDCs) play a critical role i
107 -derived angiogenic cells (BMDACs) and other bone marrow-derived cells (BMDCs) play important roles i
108 ogenesis is performed by beta(3) integrin on bone marrow-derived cells (BMDCs) recruited to sites of
111 diabetes induces the appearance of abnormal bone marrow-derived cells (BMDCs) that fuse with neurons
112 ry tumors facilitate metastasis by directing bone marrow-derived cells (BMDCs) to colonize the lungs
113 as been shown to enhance the contribution of bone marrow-derived cells (BMDCs) to regenerating skelet
114 oxide synthase (iNOS) on the recruitment of bone marrow-derived cells (BMDCs) to the CBLB after acou
116 d a chimeric mouse model in which A(2A)Rs on bone marrow-derived cells (BMDCs) were selectively inact
117 by complex interactions between vascular and bone marrow-derived cells (BMDCs), and neurofibromin reg
120 o thought to mobilize into blood circulation bone marrow-derived cells (BMDCs), which may subsequentl
122 tect cell fusion events, we demonstrate that bone-marrow-derived cells (BMDCs) fuse spontaneously wit
123 ontrol progenitor recruitment is mediated by bone marrow-derived cells, but is not cell autonomous.
125 aken together, these data suggest that young bone marrow-derived cells can alleviate renal aging in o
127 While numerous reports indicate that adult bone marrow-derived cells can contribute to nonhematopoi
130 l of DMD, have demonstrated that circulating bone marrow-derived cells can participate in skeletal mu
131 ng MOs/MPs or selective targeting of CCR2 in bone marrow-derived cells caused delayed clinical deteri
132 chimeras in which CD80/86- or CD40-deficient bone marrow-derived cells coexist with wild-type (WT) ce
133 isease, which demonstrates that PD-L1 on non-bone marrow-derived cells confers the protective effect.
134 an studies has advanced our knowledge of how bone marrow derived cells contribute to neoangiogenesis.
135 Stimulatory IgG receptors (FcgammaRs) on bone marrow-derived cells contribute to the pathogenesis
137 l FIZZ1 expression, whereas STAT6 present in bone marrow-derived cells contributed to airway eosinoph
140 found that LMP7 in both bone marrow- and non-bone marrow-derived cells contributes to the development
141 Stellate cells, portal myofibroblasts, and bone marrow derived cells converge in a complex interact
142 the JCI, Koh and colleagues assessed whether bone marrow-derived cells could alter their fate under c
143 erefore, our data indicate that whereas some bone marrow-derived cells could induce iNKT cell hypores
145 mice with fluorescent green protein-labeled, bone marrow-derived cells demonstrated conclusively the
146 arrow chimeras showed that Mif expression in bone marrow-derived cells did not affect fibrosis and in
149 There was no evidence in this model that bone marrow-derived cells differentiated into insulin-ex
151 heterogeneous population of tissue-resident bone marrow-derived cells; distinct MC subpopulations ar
152 contrast, Lin and coworkers found that some bone marrow-derived cells do appear to incorporate into
154 mice express Axl but that Axl deficiency in bone marrow-derived cells does not affect lesion size, c
157 These cell types include skeletal myoblasts, bone-marrow derived cells, endothelial progenitors, and
158 ession of protective MHC class II alleles in bone marrow-derived cells establishes robust self-tolera
161 this context, dermal/stromal fibroblasts and bone marrow-derived cells expressed increased levels of
163 ANKL, and with a reduction in the numbers of bone-marrow-derived cells expressing the markers CD11b a
165 n-1 in both retina-resident immune cells and bone marrow-derived cells for beta(1, 3)-glucan-elicited
168 as been a call to establish proof that these bone marrow-derived cells function appropriately in thei
171 n of hybrids between cancer cells and normal bone marrow-derived cells have been advocated as tumor p
173 Lyn knockout mice repopulated with wild-type bone marrow-derived cells have higher vascular permeabil
175 on the potential of genetic manipulation of bone marrow-derived cells in an attempt to further enhan
176 of pathological roles of various subsets of bone marrow-derived cells in atherosclerosis may lead to
177 the contribution of PPARalpha expression by bone marrow-derived cells in atherosclerosis, male and f
178 ngs provide novel insights about the role of bone marrow-derived cells in ischemic preconditioning an
179 explore the role of endogenous cells versus bone marrow-derived cells in mediating tubule repair.
181 after 6 mo, there were more FSP-1-expressing bone marrow-derived cells in old-to-old mice compared wi
182 tiation of adipocytes from preadipocytes and bone marrow-derived cells in several species, the relati
183 use bone marrow studies showed that resident bone marrow-derived cells in the cornea can initiate thi
184 te that Wolbachia activates TLR2 on resident bone marrow-derived cells in the corneal stroma to produ
185 predominantly tracked with DAF's absence on bone marrow-derived cells in the graft and required allo
186 Here, we investigated a putative role for bone marrow-derived cells in the induction of epithelial
188 ein transgenic mice to permit observation of bone marrow-derived cells in the myocardium after acute
191 ere, we establish that Nf1 heterozygosity of bone marrow-derived cells in the tumor microenvironment
197 tissue repair and by systemically mobilizing bone marrow-derived cells, including a population that c
198 d in a significant increase in the number of bone marrow-derived cells incorporating into the neovasc
199 Our data indicate that exogenous nondiabetic bone marrow-derived cells increase vascularization and i
202 ic mammary tumor cells resulted in increased bone marrow-derived cell infiltration into the lung in t
203 se findings suggest that MMP-9 released from bone marrow-derived cells influences the progression of
204 latency in the bone marrow, the migration of bone marrow derived cells into the circulation, and intr
205 xplanation for the "transdifferentiation" of bone marrow-derived cells into differentiated cell pheno
206 transplantation models, that engraftment of bone marrow-derived cells into functioning LSECs is rout
207 cardiac function improves after injection of bone marrow-derived cells into infarcted regions in anim
208 Remarkably, the transplantation of wild-type bone marrow-derived cells into irradiated PCD mutant mic
212 cation, CCR2-dependent infiltration of mouse bone marrow-derived cells is abundant in demyelinating a
213 rafts demonstrate that neovascularization by bone marrow-derived cells is accompanied by the activati
214 studies revealed that PD-L1 expressed on non-bone marrow-derived cells is critical for this resistanc
215 that its expression in both endothelial and bone marrow-derived cells is essential for arteriogenesi
216 ata suggest that activation of the A(2A)R on bone marrow-derived cells is primarily responsible for p
218 lity of autocrine stimulation, but influx of bone marrow-derived cells is the major source of increas
219 -) mice were irradiated and repopulated with bone marrow-derived cells isolated from either AT(1a) re
220 DTR-expressing DCs is dominant over control bone marrow-derived cells, leading to small LNs and an o
221 identified that loss of BLT2 expression on a bone marrow-derived cell lineage offers protection again
224 under conditions of stress is influenced by bone marrow-derived cells may provide important insight
227 ce, the investigators show that transplanted bone marrow-derived cells migrate to the skin of bone ma
229 We determined that TGF-beta signaling in bone marrow-derived cells, not keratinocytes, regulates
232 e examined the impact of COX-1 deficiency in bone marrow-derived cells on early atherogenesis in the
233 generation de novo of Purkinje neurons from bone marrow-derived cells or by fusion of marrow-derived
234 are ameliorated by replacement of PLXNC1 on bone marrow-derived cells or by genetic deletion of Syt7
235 functional TLR4 in the entire body except in bone marrow-derived cells or only in bone marrow-derived
236 in which up to 5% of myofibers incorporated bone marrow-derived cells over a 16- month period in the
237 he proinflammatory function of JNK1 requires bone marrow-derived cells, particularly mast cells.
239 w transplantation studies showed that Bmx in bone marrow-derived cells plays a critical role in the e
242 othelial progenitor cells are a circulating, bone marrow-derived cell population that appears to part
244 , we hypothesized that rat mandible vs. long-bone marrow-derived cells possess different osteogenic p
245 imera studies showed that IRF5 deficiency in bone marrow-derived cells prevents lupus development and
246 tumor-bearing mice to show that host CD13(+) bone marrow-derived cells promote cancer progression via
247 d that absence of p21, either globally or in bone marrow-derived cells, protects against atherosclero
249 eriments indicated that IRAK-M expression by bone marrow-derived cells, rather than structural cells,
251 gnaling by caspase-1(KO) specifically within bone marrow-derived cells revealed that monocytes promot
252 ponses seen in C57BL/6 mice was dependent on bone marrow-derived cell-specific expression of tlr4, an
254 he results indicate that A2AAR activation on bone marrow-derived cells, specifically T or B lymphocyt
255 termined that sarcomas do not originate from bone marrow-derived cells, such as macrophages, but aris
256 dent upon IL-1R/MyD88 signaling by recruited bone marrow-derived cells, suggesting that resident skin
257 cognate interactions with CD 1 d-expressing bone marrow-derived cells that are both necessary and su
260 mber of endothelial progenitor cells (EPCs), bone marrow-derived cells that participate in endothelia
261 1(+)CD11b(+) myeloid cells are heterogeneous bone marrow-derived cells that promote inflammation-asso
262 (+) myeloid cells constitute a population of bone marrow-derived cells that promote tumor progression
266 pression was necessary and sufficient in the bone marrow-derived cells themselves to promote tumor fo
267 Pioneering clinical trials suggest that bone marrow-derived cell therapy enhances neovasculariza
271 ent, there was no detectable contribution of bone marrow-derived cells to either skeletal muscle or m
272 parabiosis to introduce fluorescent-labeled bone marrow-derived cells to mice with intestinal tumors
273 tagonists effectively prevented targeting of bone marrow-derived cells to the developing retinal vasc
276 plays a critical role in the recruitment of bone marrow-derived cells to the tumor microenvironment
278 F agonists, which then act on PAF-R-positive bone marrow-derived cells to upregulate IL-10 through CO
280 fibrosis outside the CNS have identified two bone marrow-derived cell types, fibrocytes and alternati
281 mice with green fluorescent protein-labeled bone marrow-derived cells underwent corneal scrape injur
282 l, we determined that expression of NLRP3 in bone marrow-derived cells was necessary for optimal tumo
283 in vessel size, whereas MyD88 expression by bone marrow-derived cells was obligatory for changes in
284 titis revealed that expression of P2Y(2)R in bone marrow-derived cells was required for liver infiltr
285 ce ANAs, and that lack of H2-O expression in bone marrow-derived cells was sufficient to induce the a
286 aracterizing the composition of infiltrating bone marrow-derived cells, we identified CD11b+/Ly6Cmed/
287 e appearance of these cell types and whether bone marrow-derived cells were capable of acquiring fibr
288 d, approximately 99% of all tumor-associated bone marrow-derived cells were CD45(+) hematopoietic cel
289 and the differentiation of osteoclasts from bone marrow-derived cells were completely suppressed by
291 in the vascular endothelium, indicating that bone marrow-derived cells were not recruited to endothel
293 TLR4 mutant mice transplanted with their own bone marrow-derived cells were protected from hepatic I/
295 ), VEGFR2(+)/CD34(+), and VEGFR2(+)/CD117(+) bone-marrow derived cells were increased in the peripher
296 ancing airway epithelial remodeling by adult bone marrow-derived cells will be necessary for correcti
298 isite localization of various populations of bone marrow-derived cells with respect to the vasculatur
299 or-antigen presentation to immune T cells by bone-marrow-derived cells within the tumor microenvironm
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