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1 ecule-1 and neutrophil gelatinase-associated lipocalin).
2 the same protein, which was identified as a lipocalin.
3 , junb, and neutrophil gelatinase-associated lipocalin.
4 tact PCs in tears are native ligands of tear lipocalin.
5 to determine the solution structure of tear lipocalin.
6 o bind the fluorescence-tagged lipid is tear lipocalin.
7 ecule-1 and neutrophil gelatinase-associated lipocalin.
8 s from house dust mites and cockroaches, and lipocalins.
9 ) and Gln(135) in the binding pocket of both lipocalins.
10 lar pocket is similar among human and animal lipocalins.
12 e 3' clustering of rare codons, unlike human lipocalin-1 and 21 other widely expressed human tear gen
13 Mechanistically, LINC00305 interacted with lipocalin-1 interacting membrane receptor (LIMR), enhanc
16 nferior for neutrophil gelatinase-associated lipocalin [14.7 mug/L (interquartile range 7.60-28.9) vs
18 usly secretion of the iron chelating protein lipocalin 2 (LCN2) and protons, which acidify the urine.
20 We have recently characterized the role of lipocalin 2 (Lcn2) as a new adipose-derived cytokine in
22 ough molecular and genetic analyses in mice, lipocalin 2 (LCN2) as an osteoblast-enriched, secreted p
28 how that a mutant form (K3Cys) of endogenous lipocalin 2 (LCN2) is filtered by the kidney but can byp
34 ulating levels of the secreted glycoprotein, lipocalin 2 (Lcn2), an adipokine previously associated w
36 However, Ent is bound by the host protein lipocalin 2 (Lcn2), preventing bacterial reuptake of afe
37 oprotection markers, including COX-2 itself, lipocalin 2 (LCN2), tissue inhibitor of metalloproteinas
45 ion of IL-1beta alone could reconstitute the lipocalin 2 deficiency in TLR4 knockout animals and resc
50 in this model and mucosal reconstitution of lipocalin 2 protein in these animals resulted in rescue
52 8 signaling is required for the induction of lipocalin 2 secretion and iron sequestration in the sple
53 ory factors such as dietary iron and luminal lipocalin 2 should be taken into consideration for optim
54 that use catecholate-type siderophores, and lipocalin 2(-/-) mice are highly susceptible to infectio
55 rtened colons, and increased fecal levels of lipocalin 2), metabolic syndrome, and an inability to cl
56 ain Salmonella by promoting the induction of lipocalin 2, a host antimicrobial factor that inhibits b
57 s survival advantage is counter-regulated by lipocalin 2, a siderophore-binding host protein, which r
58 eries of the roles of ferroportin, hepcidin, lipocalin 2, and members of the six transmembrane epithe
59 F9, IL-6, IL-19, CCL20, S100A7/A8/A9, DEFB4, lipocalin 2, and peptidase inhibitor 3 (p < 0.05), indic
61 bial protein siderocalin (SCN; also known as lipocalin 2, neutrophil gelatinase-associated lipocalin/
62 vercome iron restriction by the host protein lipocalin 2, which counteracts some siderophores, is ess
64 observed to be Dectin-1 and IL-22 dependent, lipocalin 2-deficient mice did not demonstrate impaired
69 8; CCL20/FCH, 8.36; PI3 [elafin]/FCH, 15.40; lipocalin 2/FCH, 6.94, human beta-defensin 2 [DEFB4A]/FC
70 he antimicrobial siderophore-binding peptide Lipocalin-2 (Lcn2) are observed in inflammatory bowel di
71 ich immunoassay (IA) was developed for human lipocalin-2 (LCN2) by functionalizing a KOH-treated poly
75 thelicidin antimicrobial protein (Camp), and lipocalin-2 (Lcn2) mRNA expression giving rise to cells
78 over 100 different cytokines, we found that Lipocalin-2 (LCN2) was the most substantially elevated p
79 levels of a specific inflammatory cytokine, lipocalin-2 (LCN2), were elevated in the plasmas of pati
81 an overcome metal ion starvation mediated by lipocalin-2 and calprotectin via alternative pathways, I
82 ression of antimicrobial proteins, including lipocalin-2 and calprotectin, which sequester essential
83 ed by the immobilization of rabbit polygonal lipocalin-2 antibody on gold nanoparticles attached on g
84 m of MMA-associated kidney disease, identify lipocalin-2 as a biomarker of increased oxidative stress
85 sion of the IL-17 target genes IL-6 and 24p3/lipocalin-2 as a readout, functional reconstitution of s
91 bial protein siderocalin (SCN; also known as lipocalin-2, neutrophil gelatinase-associated lipocalin,
92 ys identified numerous biomarkers, including lipocalin-2, which was then used to monitor the response
93 trophils from mice genetically deficient for lipocalin 24p3 (24p3(-/-)) are defective in many neutrop
99 cretes siderophore-binding proteins, such as lipocalin 24p3, which limit siderophore-mediated iron im
100 inary MMP-9/neutrophil gelatinase-associated lipocalin activity after cediranib were associated with
105 gen Can f 6, a member of a distinct class of lipocalin allergens, has very similar properties to Fel
106 , hLCN1 and hLCN2, and most important animal lipocalin allergens, such as Can f 1, Can f 2 and Can f
107 as major facilitator family transporters and lipocalins, also reflect the evolution of xenobiotic ada
108 ntration of neutrophil gelatinase-associated lipocalin, an established AKI biomarker, and the associa
109 utility of neutrophil gelatinase-associated lipocalin and creatinine, alone and in combination, for
110 asma panel (neutrophil gelatinase-associated lipocalin and cystatin C) and a urine panel (neutrophil
114 Urinary neutrophil gelatinase-associated lipocalin and urinary kidney injury molecule 1 predicted
115 oth urinary neutrophil gelatinase-associated lipocalin and varying creatinine-based metrics of renal
116 ecule-1 and neutrophil gelatinase-associated lipocalin, and doses>/=0.005 mg/kg induced the early res
117 n C (Scyc), neutrophil gelatinase-associated lipocalin, and interleukin-18 in predicting early graft
119 , histones, neutrophil gelatinase-associated lipocalin, and proteinase-3) were elevated in the blood
120 protein B1, neutrophil gelatinase-associated lipocalin, and S100B were higher in nonsurvivors than su
121 iostin, and neutrophil gelatinase-associated lipocalin; and a two-fold decrease in glycosylated clust
131 of urinary neutrophil gelatinase-associated lipocalin best predicted the primary outcome when measur
138 hough the intact phospholipids bound to tear lipocalin corresponded precisely in mass and relative si
139 ntin [OPN], neutrophil gelatinase-associated lipocalin, cystatin C, trefoil factor 3, tissue inhibito
140 o interacts with 15(S)-HETE, being the first lipocalin described to date to bind to a derivative of 1
143 Differential expression of these I. ricinus lipocalins during feeding at distinct developmental stag
144 e-binding protein (rRaHBP2), a member of the lipocalin family isolated from the brown-ear tick Rhipic
150 amma subunit is unrelated and belongs to the lipocalin family of proteins that display a beta-barrel
151 expression of Evokin (a lipid carrier of the lipocalin family), and in their ability to convert arach
152 Apolipoprotein D (apoD), a member of the lipocalin family, is a 29-kDa secreted glycoprotein that
153 Pro-apoptotic protein 24p3, a member of lipocalin family, is induced upon interleukin-3 (IL-3) d
155 beta-Lactoglobulin (BLG) is a member of lipocalin family, proteins with ability to bind small hy
156 mmalian siderophore-binding protein from the lipocalin family, specifically binds lanthanide and acti
161 d the prevalence of sensitization to the cat lipocalin Fel d 7 among 140 cat-sensitized Swedish patie
168 ures of Japanin, an 18 kDa immune-modulatory lipocalin from the Brown Ear Tick (Rhipicephalus appendi
170 Contrary to previously identified tomato lipocalin gene DQ222981, SlVRSLip was not regulated by c
173 robust predictions showing these I. ricinus lipocalins have the potential to bind monoamines similar
174 or proteins neutrophil gelatinase-associated lipocalin, hemopexin, and transferrin were increased in
175 , including neutrophil gelatinase-associated lipocalin, high-mobility group protein B1, intracellular
176 r similarity analysis of human and mammalian lipocalins highlights their function in innate immunity
177 rposition modeling were compared among human lipocalins, hLCN1 and hLCN2, and most important animal l
178 ker levels (neutrophil gelatinase-associated lipocalin, IL-18, and kidney injury molecule-1 measured
179 biomarkers: neutrophil gelatinase-associated lipocalin, IL-18, kidney injury molecule-1 (KIM-1), live
180 eak urinary neutrophil gelatinase-associated lipocalin, IL-18, KIM-1, liver fatty acid binding protei
184 Limb development membrane protein-1 (LMBR1)/lipocalin-interacting membrane receptor (LIMR)-type prot
185 rine panel (neutrophil gelatinase-associated lipocalin, interleukin 18, and kidney injury molecule-1)
186 er panel of neutrophil gelatinase-associated lipocalin, interleukin-1ra, and Protein C was predictive
190 rleukin 18, neutrophil gelatinase-associated lipocalin, kidney injury molecule 1, and liver fatty aci
191 cystatin C, neutrophil gelatinase-associated lipocalin, kidney injury molecule-1, and IL-18 in 528 pa
192 jury (urine neutrophil gelatinase-associated lipocalin, kidney injury molecule-1, calbindin), followe
193 rs (urinary neutrophil gelatinase-associated lipocalin, kidney injury molecule-1, urinary liver-type
195 in (CLU), glycoproteins IIb/IIIa (ITGA2B/3), lipocalin (LCN2), lactoferrin (LTF), and the thrombopoet
197 and plasma neutrophil gelatinase-associated lipocalin level higher than 150 ng/mL enrolled between A
198 enrollment neutrophil gelatinase-associated lipocalin level was independently associated with surviv
199 enrollment neutrophil gelatinase-associated lipocalin level was the greatest (c-statistic, 0.78 [95%
201 re and dynamics as well as thermodynamics of lipocalin-ligand interaction not only provides insight i
203 iopsy and assayed for the urinary biomarkers lipocalin-like prostaglandin D synthase (L-PGDS), alpha(
204 e give structural evidence that Bet v 1 is a lipocalin-like protein with a striking structural resemb
206 NGAL/LCN2 (neutrophil gelatinase-associated lipocalin/lipocalin 2), a secreted glycoprotein that bin
208 initial and neutrophil gelatinase-associated lipocalin measured 3 hours after cardiopulmonary bypass
209 eas GFR and neutrophil gelatinase-associated lipocalin, monocyte chemoattractant protein-1, and tumor
210 n levels of neutrophil gelatinase-associated lipocalin, monocyte chemoattractant protein-1, and tumor
213 dney Injury Neutrophil Gelatinase-Associated Lipocalin [N-GAL] Evaluation of Symptomatic Heart Failur
214 (CysC) and neutrophil gelatinase-associated lipocalin (NGAL) can predict development of renal dysfun
217 Urinary neutrophil gelatinase-associated lipocalin (NGAL) has emerged an early marker protein, pr
218 tic role of neutrophil gelatinase-associated lipocalin (NGAL) in a large population of patients with
222 etection of neutrophil gelatinase-associated lipocalin (NGAL) is developed by the immobilization of r
223 ion between neutrophil gelatinase-associated lipocalin (NGAL) levels and cardiovascular and all-cause
225 MMP-9, and neutrophil gelatinase-associated lipocalin (NGAL) were found in diseased groups compared
226 biotin, and neutrophil gelatinase-associated lipocalin (NGAL) were the most robust markers but were n
227 ipocalin-2, neutrophil gelatinase-associated lipocalin (NGAL)), which is expressed in the distal neph
228 btained for neutrophil gelatinase-associated lipocalin (NGAL), a comparator "AKI biomarker" gene.
229 pression of neutrophil gelatinase-associated lipocalin (NGAL), a marker of tubular injury, to determi
230 e of plasma neutrophil gelatinase-associated lipocalin (NGAL), a novel marker of renal tubular damage
231 pression of neutrophil gelatinase-associated lipocalin (NGAL), an iron-binding protein up-regulated i
232 asmin (CP), neutrophil gelatinase-associated lipocalin (NGAL), and monocyte chemotactic protein 1 (MC
233 ate urinary neutrophil gelatinase-associated lipocalin (NGAL), IL-18, and kidney injury molecule-1 (K
234 values for neutrophil gelatinase-associated lipocalin (NGAL), interleukin-18 (IL-18), kidney injury
235 d levels of neutrophil gelatinase-associated lipocalin (NGAL), kidney injury molecule-1 (KIM-1) and e
237 croalbumin, neutrophil gelatinase-associated lipocalin (NGAL), kidney injury molecule-1 (KIM-1), IL-1
238 , including neutrophil gelatinase-associated lipocalin (NGAL), kidney injury molecule-1 (KIM-1), live
239 in (IL)-18, neutrophil gelatinase-associated lipocalin (NGAL), kidney injury molecule-1, serum creati
240 L-18, urine neutrophil gelatinase-associated lipocalin (NGAL), or plasma NGAL could identify which pa
241 L-18, urine neutrophil gelatinase-associated lipocalin (NGAL), or plasma NGAL could identify which pa
242 etection of neutrophil gelatinase-associated lipocalin (NGAL), which is a new diagnostic marker of ac
244 and plasma neutrophil gelatinase-associated lipocalin (NGAL); each measurement was on the day of AKI
246 Lcn2; 24p3; neutrophil gelatinase-associated lipocalin [NGAL]) is an antimicrobial host defense facto
247 biomarkers (neutrophil gelatinase-associated lipocalin [NGAL], interleukin [IL]-18, liver fatty acid-
248 , KIM-1 and neutrophil gelatinase-associated lipocalin, NGAL), kidney growth, and glomerulosclerosis,
251 o more than three animal-derived components--lipocalin (nMus m 1, rEqu c 1, Fel d 4, rCan f 1, 2), ka
257 GDS) siRNA and its inhibitor HQL-79, but not lipocalin PGDS (L-PGDS) siRNA and its inhibitor AT-56, s
258 gamma2 were found to have elevated levels of Lipocalin prostaglandin D synthase (L-PGDS) expression i
259 In this study, we define a new role for lipocalin prostaglandin D synthase (L-PGDS) in the contr
260 ta-Lactoglobulin (betaLG) is a member of the lipocalin protein family and has been shown to undergo c
263 h levels of neutrophil gelatinase-associated lipocalin representing acute tubular injury (corrected R
266 surface and to test the hypothesis that tear lipocalin retrieves lipids from the eyes of normal and d
271 Here we show that lipocalin-13 (LCN13), a lipocalin superfamily member, is a novel insulin sensiti
272 employed in this study characterized unique lipocalins that play a role in tick blood-feeding and tr
273 es the three I. ricinus lipocalins with tick lipocalins that sequester monoamines, leukotrienes and f
274 in replacements with respect to the parental lipocalin, the naturally occurring bilin-binding protein
279 IL)-18, and neutrophil gelatinase-associated lipocalin to predict PNF and DGF in 335 DCD kidneys pres
280 IL-18, and neutrophil gelatinase-associated lipocalin to predict viability of DCD kidneys varies fro
282 milies (EF-hand, Tropomyosin, CAP, Profilin, Lipocalin, Trypsin-like serine protease, Cupin, BetV1, E
283 Renal vein neutrophil gelatinase-associated lipocalin, tumor necrosis factor-alpha, monocyte chemoat
284 secrete PGD2 in proinflammatory conditions, Lipocalin-type prostaglandin D synthase (L-PGDS) express
286 t retinaldehyde dehydrogenase 2 (RALDH2) and lipocalin-type prostaglandin D2 synthase (LPGDS), which,
288 herin 5 and neutrophil gelatinase-associated lipocalin) typically circulate in plasma at low nanogram
290 el of urine neutrophil gelatinase-associated lipocalin (uNGAL) for diagnosing AKI and its prognostic
291 Urinary neutrophil gelatinase-associated lipocalin (uNGAL) has been identified as an early marker
293 rker (urine neutrophil gelatinase-associated lipocalin [uNGAL]), forming a composite biomarker for pr
295 Urinary neutrophil gelatinase-associated lipocalin was measured at baseline and again less than 1
296 but urinary neutrophil gelatinase-associated lipocalin was most useful (81% specificity, 68% sensitiv
299 ing urinary neutrophil gelatinase-associated lipocalin with a novel creatinine-based metric, both ava
300 ng 803 sequences places the three I. ricinus lipocalins with tick lipocalins that sequester monoamine
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