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1 SDF-1alpha (CXCL12) signaling via its receptor, CXCR4, s
2 SDF-1alpha acts as a chemoattractant for immune and hemo
3 SDF-1alpha also decreases monocyte adherence to brain mi
4 SDF-1alpha expression in cells was measured by enzyme-li
5 SDF-1alpha expression in nonstimulated Nur77(-/-) BMM is
6 SDF-1alpha expression is higher in lesions of Nur77(-/-)
7 SDF-1alpha in diabetic wounds were therapeutically incre
8 SDF-1alpha increased EC-EPC adhesion and specifically up
9 SDF-1alpha levels were determined by enzyme-linked immun
10 SDF-1alpha may be involved in the immune defense pathway
11 SDF-1alpha production by other cell types is regulated b
12 SDF-1alpha production increased significantly after 1 or
13 SDF-1alpha was increased in group 3 animal hearts (20-fo
14 SDF-1alpha-engineered cell-based therapy promotes diabet
15 SDF-1alpha-primed BMDSC significantly promote wound heal
16 SDF-1alpha/CXCR4 signaling plays a key role in leukemia/
17 genic factors stromal cell-derived factor 1 (SDF-1alpha), vascular endothelial growth factor (VEGF),
18 CXCR4 ligand stromal cell-derived factor 1 (SDF-1alpha, CXCL12) produced by stromal cells, and BTK-i
19 d its ligand, stromal cell-derived factor-1 (SDF-1alpha or CXC chemokine ligand 12) are involved in t
20 ligand, stromal cell-derived factor 1alpha (SDF-1alpha) / chemokine (C-X-C motif) ligand 12 (CXCL12)
21 hemokine stromal cell-derived factor 1alpha (SDF-1alpha) and elicits a number of biological effects,
22 MLP) and stromal cell-derived factor 1alpha (SDF-1alpha) as well as decreased alpha5beta1-integrin-me
23 expression of stromal-derived factor 1alpha (SDF-1alpha), a chemokine that promotes tissue retention
24 5 antagonized stromal-derived factor 1alpha (SDF-1alpha)-induced and stroma-induced chemotaxis and in
25 factors stromal cell-derived factor 1alpha (SDF-1alpha)/CXCL12, monocyte chemoattractant protein 1 (
28 f radioligand stromal-derived factor-1alpha (SDF-1alpha) binding to CXCR4, was also found to be highl
32 hemokine stromal cell-derived factor-1alpha (SDF-1alpha) has multiple effects on neuronal activity, s
33 Stromal cell-derived growth factor-1alpha (SDF-1alpha) is a member of the CXC chemokines and intera
36 own that stromal cell-derived factor-1alpha (SDF-1alpha) is downregulated within diabetic cutaneous w
37 describe that stromal-derived factor-1alpha (SDF-1alpha) ligation of CXCR4 on activated T cells promo
38 hemokine stromal cell-derived factor-1alpha (SDF-1alpha) on VLA-4-mediated lymphocyte adhesion, human
39 CXCL12/stromal cell-derived factor-1alpha (SDF-1alpha), a chemokine ligand for the G protein-couple
40 nd level stromal cell-derived factor-1alpha (SDF-1alpha), a chemokine that mediates EPC recruitment i
41 ligand, stromal cell-derived factor-1alpha (SDF-1alpha), correlate with increased fibrosis in these
42 protein stromal cell-derived factor-1alpha (SDF-1alpha), which activates the cell-survival factor pr
43 ncluding stromal cell-derived factor-1alpha (SDF-1alpha), which triggers mobilization and homing of b
44 able for stromal cell-derived factor-1alpha (SDF-1alpha)- or B-lymphocyte chemoattractant (BLC)-induc
45 to increased stromal-derived factor-1alpha (SDF-1alpha)-induced chemotaxis and chemokinesis (random
46 blocked stromal cell-derived factor-1alpha (SDF-1alpha)-stimulated LFA-1-ICAM-1 (intercellular adhes
50 ted that stromal cell-derived factor-1alpha (SDF-1alpha, a homing signal for recruiting endothelial p
51 The chemokine stromal-derived factor-1alpha (SDF-1alpha, CXCL12) and its receptor CXCR4 are implicate
52 anti-CXCL12 [stromal derived factor-1alpha, (SDF-1alpha)] blocking serum resulted in a marked impairm
53 resulted in a significant increase in CXCR-4/SDF-1alpha expression and promoted CD133(+)/c-kit(+), CD
54 CXCR4-positive tumor cells migrated toward a SDF-1alpha gradient in vitro, whereas inhibition of CXCR
58 stromal cell-derived growth factor 1 alpha (SDF-1alpha) and interleukin 1 beta (IL-1beta) collaborat
59 ch increases stromal-derived factor 1 alpha (SDF-1alpha) expression in cancer and stromal cells and,
60 tment factor stromal-derived factor 1 alpha (SDF-1alpha) than control lung endothelial cells, and thu
63 ogen and fibronectin and migration toward an SDF-1alpha gradient were reduced in Cib1(-/-) megakaryoc
67 pha in an in vitro cell migration assay, and SDF-1alpha treatment triggered a robust induction of tyr
68 hepatic protein expression of both CXCR4 and SDF-1alpha is increased in hepatitis C cirrhotic livers
69 CD4 T cells are treated with both gp120 and SDF-1alpha, the SDF-1alpha-driven effects of Bim(EL) deg
70 t the effect of wounding on tumor growth and SDF-1alpha levels is host dependent and varies between m
71 expression of interleukin-12, IFNgamma, and SDF-1alpha and increased NO synthesis in (non)-stimulate
72 the diabetic defect in EPC mobilization, and SDF-1alpha reversed the diabetic defect in EPC homing.
75 role in inducing the secretion of angiogenic SDF-1alpha/CXCL12, MCP-1/CCL2, and VEGF in RA ST fibrobl
76 ICAM-1 in the presence of uniformly applied SDF-1alpha were also found to migrate against the direct
80 tein-coupled receptor (GPCR) ligands such as SDF-1alpha, whereas p110delta is expressed at low level
81 s is consistent with the association between SDF-1alpha expression with fibrotic septa in cirrhotic l
82 results provide a novel causal link between SDF-1alpha-induced chemotaxis, degradation of Bim(EL), a
83 on factor Yin Yang 1 (YY1) as a link between SDF-1alpha/CXCR4 signaling and let-7a, as YY1 was upregu
94 In isolated myocytes, CXCR4 activation by SDF-1alpha resulted in increased phosphorylation of both
95 d that the miRNA let-7a was downregulated by SDF-1alpha-mediated CXCR4 activation and increased by CX
97 naling and let-7a, as YY1 was upregulated by SDF-1alpha and downregulated by treatment with a CXCR4 a
98 +)/c-kit(+), CD133(+)/CXCR-4(+) and CD133(+)/SDF-1alpha(+) cell recruitment into ischemic hearts.
101 intained high-affinity binding of chemokines SDF-1alpha and RANTES to CXCR4 and CCR5, respectively.
103 , CCL5 (RANTES), CXCL11 (I-TAC), and CXCL12 (SDF-1alpha) bind the chemokines with high affinity (at n
105 MIF internalized CXCR4, but unlike CXCL12 (SDF-1alpha), it did not phosphorylate Erk1/2 after CXCR4
106 nce the discovery that CXCR7 binds to CXCL12/SDF-1alpha, the role of CXCR7 in CXCL12-mediated biologi
107 ing the stromal-derived factor 1alpha/CXCR4 (SDF-1alpha/CXCR4) axis to overcome chemoresistance of AM
110 ell migration is stimulated by the cytokine, SDF-1alpha, and that SDF-1alpha is expressed by the woun
111 ocytes using small interfering RNA decreases SDF-1alpha-mediated migration and prevents the inhibitio
113 ed that the CXCR4 peptide stabilizes dimeric SDF-1alpha, and that sulfotyrosine 21 binds a specific s
116 romoted tumor growth is mediated by elevated SDF-1alpha levels and indicate that the effect of acute
118 kines, which bind CCR5 and CXCR4, especially SDF-1alpha/CXCL12, result in a transient opening (peak a
119 DF-1 knock-down BCCs and increased exogenous SDF-1alpha prevented contact inhibition between BCCs and
120 However, increased wound levels of exogenous SDF-1alpha results in elevated systemic levels of this p
121 dentified that PLCepsilon1 was necessary for SDF-1alpha-induced adhesion using shear stress, cell mor
123 , several studies have implicated a role for SDF-1alpha in head and neck squamous cell carcinoma (HNS
126 , 30, and 55% of cell migration into Gtn-HPA/SDF-1alpha-PCN hydrogels involved MMP-2, 3, and 9, respe
127 (aNPCs) and their neuronal progeny, Gtn-HPA/SDF-1alpha-PCN hydrogels promoted chemotactic recruitmen
129 n cross-linked with 0.85-0.95 mM HO, Gtn-HPA/SDF-1alpha-PCN hydrogels provided optimally permissive s
134 kocyte-specific F-actin-bundling protein, in SDF-1alpha-stimulated human T lymphocyte polarization an
135 the N-terminus of SDF-1alpha play a role in SDF-1alpha signaling via CXCR4 and/or receptor internali
139 and stroma-induced chemotaxis and inhibited SDF-1alpha-induced activation of prosurvival signaling p
140 uanine exchange factor CalDAG-GEFI inhibited SDF-1alpha- and phorbol 12-myristate 13-acetate (PMA)-in
141 selectin antagonists significantly inhibited SDF-1alpha-induced EC-EPC adhesion, EPC homing, wound ne
142 vascular E-selectin significantly inhibited SDF-1alpha-induced EPC homing, tumor angiogenesis, and d
144 lts suggest that an increase in intratumoral SDF-1alpha triggered by LI recruits myelomonocytes/macro
145 describe the identification of an intricate SDF-1alpha-induced signaling cascade that involves endot
147 After intravenous injection, 99mTc-labeled SDF-1alpha displays a blood half-life of 25.8 +/- 4.6 mi
149 to 45-fold relative to hydrogels that lacked SDF-1alpha or vehicles to sustain SDF-1alpha release.
150 orced overexpression of SDF-1alpha (by Lenti-SDF-1alpha) increased melanoma cell growth both in vitro
151 led switch mechanism in diabetic bone marrow SDF-1alpha expression (2.8% reduction) resulted in impai
154 ciated with diabetes by reducing bone marrow SDF-1alpha, restoring normal PC mobilization and tissue
155 han 5-fold, as quantified using [99mTc-MAS3]-SDF-1alpha and confirmed using confocal immunofluorescen
158 rance of intravenously injected [99mTc-MAS3]-SDF-1alpha were quantified in Sprague-Dawley rats before
159 d phosphoinositide 3-kinase pathways mediate SDF-1alpha-induced effects on HSC expression of collagen
161 minent role of the phosphatase is to mediate SDF-1alpha/CXCR4 signal in guiding cerebellar granule ce
162 ll recruitment through a HIF-1alpha-mediated SDF-1alpha/CXCR4 axis, thus identifying PTEN as a target
163 e ZAP-70 tyrosine kinase critically mediates SDF-1alpha-dependent migration and prolonged ERK mitogen
164 nsic signaling pathway of iNOS that mediates SDF-1alpha to promote GFP(+)-BMDC infiltration/targeting
165 he role of adhesion molecule(s) in mediating SDF-1alpha-induced EPC homing, and wound healing was fur
167 -1alpha on luciferase activity with 20 ng/ml SDF-1alpha acting as stimulator, whereas 50 and 100 ng/m
171 cted to ischemic preconditioning, myocardial SDF-1alpha mRNA was found to be increased 3 hours later
173 These results suggest that the ability of SDF-1alpha to activate CXCR4 signaling and internalizati
174 an digit regeneration involves activation of SDF-1alpha/CXCR4 signaling by endothelial cells to recru
178 ocalized with F-actin at the leading edge of SDF-1alpha-stimulated T lymphocytes and was also phospho
179 signals underlying the biological effect of SDF-1alpha on EPC homing and point to E-selectin as a ne
180 ell assays that showed an indirect effect of SDF-1alpha on hemopoiesis through substance P production
181 egion of Tac1 showed a bell-shaped effect of SDF-1alpha on luciferase activity with 20 ng/ml SDF-1alp
185 mediate prohealing/proangiogenic effects of SDF-1alpha-primed BMDSC was evaluated by polymerase chai
190 Conversely, treatment with an inhibitor of SDF-1alpha receptor CXCR4 (AMD3100) with LI significantl
191 re therapeutically increased by injection of SDF-1alpha-engineered bone marrow-derived fibroblasts ve
193 ith periodontal disease had higher levels of SDF-1alpha in their GCF compared to healthy subjects.
195 rly, inhibition of CXCR4 decreased levels of SDF-1alpha-induced phosphorylation of FAK, AKT, and ERK1
200 centrations of EGF; however, the presence of SDF-1alpha and EGF together modulated tumor cell motilit
201 il migration was enhanced in the presence of SDF-1alpha, mimicking immune cell migration in periodont
206 -18 significantly enhanced the production of SDF-1alpha/CXCL12, MCP-1/CCL2, and VEGF in RA ST fibrobl
207 gen synthase kinase 3beta besides release of SDF-1alpha in parallel with IGF-1 expression in (IGF-1)M
208 main chain amide bonds in the N-terminus of SDF-1alpha play a role in SDF-1alpha signaling via CXCR4
210 ons suggest that adenoviral gene transfer of SDF-1alpha may be a useful strategy to accumulate dendri
212 ing a highly predicted ligand-receptor pair, SDF-1alpha - CXCR4, and both PPCs and RPCs exhibited sig
213 d in situ to induce chemokinesis, potentiate SDF-1alpha chemotactic recruitment, and increase prolife
217 , and that direct application of recombinant SDF-1alpha increases wound closure rates, neovasculariza
218 Treatment of stellate cells with recombinant SDF-1alpha increases expression of alpha-smooth muscle a
222 has an anti-inflammatory function, represses SDF-1alpha expression and inhibits atherosclerosis.
223 diated downregulation of HIF-1alpha reversed SDF-1alpha induction by PTEN depletion and inhibition of
225 ce, whereas AMPK-mediated elevation of serum SDF-1alpha levels and improvements of EPC function and r
226 e, we used this approach to design novel SMM-SDF-1alpha analogues containing unnatural N-methylated r
227 nstrate that after treatment with sorafenib, SDF-1alpha increased the survival of HSCs and their alph
229 pancreatic, and breast tumors; surprisingly, SDF-1alpha was expressed only by tumor cells, whereas IL
232 el Kv2.1 in response to short- and long-term SDF-1alpha/CXCR4-mediated signaling as an underlying mec
233 ulated by the cytokine, SDF-1alpha, and that SDF-1alpha is expressed by the wound epidermis as well a
246 from isolated primary hepatocytes show that SDF-1alpha and SDF-1beta inhibited glucose production vi
254 -kappaB in HNSCC cell lines, suggesting that SDF-1alpha activates the classical NF-kappaB signaling p
256 treated with both gp120 and SDF-1alpha, the SDF-1alpha-driven effects of Bim(EL) degradation and acq
258 s coexpressing SM-alpha-actin and CXCR4, the SDF-1alpha receptor, was detected in SMC PTEN-depleted m
259 cruitment of BM-derived cells expressing the SDF-1alpha receptor CXCR4; homing of FSP-1-positive cell
262 Previous studies have demonstrated that the SDF-1alpha analog CTCE-0214 (CTCE) is beneficial in poly
265 Upon the development of diseased tissues, SDF-1alpha levels increase and may recruit host defensiv
266 etastatic mouse breast cancer cells (4T1) to SDF-1alpha, which is increased in wound fluid, results i
267 we found that the chemoinvasive behavior to SDF-1alpha gradients was abrogated or even reversed in t
268 Both, wounding and exposure of 4T1 cells to SDF-1alpha not only increased tumor growth, but also tum
269 h improved cardiac function, mice exposed to SDF-1alpha demonstrated significantly decreased scar for
272 ignaling pathway is activated in response to SDF-1alpha in HNSCC while primary and immortalized kerat
282 cient granule cells failed to migrate toward SDF-1alpha in an in vitro cell migration assay, and SDF-
283 oAN19 resulted in decreased migration toward SDF-1alpha and alpha(4)beta(1)- and alpha(5)beta(2)-inte
284 ore S1P3 than inflammatory monocytes, toward SDF-1alpha was also enhanced with FTY720 treatment, but
287 of multiple trophic factors including VEGF, SDF-1alpha, IGF-1, and Shh itself, for at least 48 hours
288 n induced massive stem cell mobilization via SDF-1alpha signaling and culminated in extensive angiomy
289 Our results reveal a signaling pathway where SDF-1alpha induces T-cell adhesion through activation of
290 rpose of this study was to determine whether SDF-1alpha secreted by host cells plays a role in recrui
291 is assays were also used to evaluate whether SDF-1alpha plays a role in the recruitment of host cells
292 R4 in vivo and in vitro and explored whether SDF-1alpha/CXCR4 receptor engagement promotes HSC activa
294 abrogated by receptor desensitization (with SDF-1alpha) or pretreatment with the specific antagonist
295 c Lepr mice were incubated for 20 hours with SDF-1alpha (100 ng/mL) or bovine serum albumin (control)
299 Activated primary CD4 T cells treated with SDF-1alpha therefore become resistant to the proapoptoti
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