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1 hat ChoP+ NTHi bacilli co-localized with the PAF receptor.
2 human epidermal cell line KB with the human PAF receptor.
3 chial cells by means of interaction with the PAF receptor.
4 tion, because such compounds can bind to the PAF receptor.
5 that this inhibition is not mediated by the PAF receptor.
6 cells yielded the predicted amplicon for the PAF receptor.
7 cci are consistently independent of CD14 and PAF receptor.
8 n from which they co-immunoprecipitated with PAF receptor.
9 atelet aggregation via interactions with the PAF receptor.
10 These cells expressed the PAF receptor.
11 antagonists indicated signaling through the PAF receptor.
12 been prepared and evaluated using the cloned PAF receptor.
13 they are not mediated through an endogenous PAF receptor.
14 ion which was dependent on the expression of PAF receptors.
15 ual affinity for histamine H1 -receptors and PAF receptors.
16 on of these derivatives as assayed by cloned PAF receptors.
17 ive protein, a class of myeloma proteins and PAF receptors.
18 include CD14 and platelet-activating factor (PAF) receptor.
19 tagonists of the platelet-activating factor (PAF) receptor.
20 tagonists of the platelet-activating factor (PAF) receptor.
21 bind to a cloned platelet-activating factor (PAF) receptor.
22 expressing human platelet-activating factor (PAF) receptors.
26 ssing KB cells with the metabolically stable PAF receptor agonist carbamoyl-PAF resulted in increased
28 examines the effects of the nonhydrolyzable PAF receptor agonist methyl carbamyl PAF (mc-PAF) on the
29 ukocytes (PMNs) were a significant source of PAF receptor agonists after stimulation by either class
31 epithelial cell line stably transfected with PAF receptor also showed little evidence that cis-UCA st
32 cular dynamic simulation of HPC docking into PAF receptor and by comparison of its leishmanicidal fun
33 roups still retained binding affinity to the PAF receptor and hence should be promising ligands for p
34 .), implying that this response involves the PAF receptor and is not due to a detergent-like effect o
37 and human BMEC in a manner dependent on the PAF receptor and the presence of pneumococcal choline-bi
38 B2 subtype), histamine (an H1 subtype), and PAF receptors and exhibit very similar immunocytochemica
40 RBL cell extracts and human whole blood, and PAF receptor antagonism in a receptor binding assay.
41 In Expt 2 (conducted at 30 degrees C), the PAF receptor antagonist BN 52021 (29 micromol kg-1, i.v.
47 n by lysoPAF is not affected by the use of a PAF receptor antagonist or genetic deletion of the PAF r
48 as it was dose dependently inhibited by the PAF receptor antagonist WEB 2086 and blocked by pertussi
49 r and affinity of binding sites for specific PAF receptor antagonist WEB2086 were identical in membra
50 n; the hetrazepine BN50730 (an intracellular PAF receptor antagonist) also inhibits both NMDA-stimula
51 r zileuton (a 5-LO inhibitor) or BN 50739 (a PAF receptor antagonist), and it demonstrated the same i
53 otein kinase A (PKA) and was attenuated by a PAF receptor antagonist, blocking downstream activity.
54 s 25-fold less potent than ginkgolide B as a PAF receptor antagonist, due to the presence of the 7bet
55 etreated with a specific mediator inhibitor (PAF receptor antagonist, n = 6; prostacyclin antibody, n
59 of rats with the platelet-activating factor (PAF) receptor antagonist UK-74,505 or the antihuman inte
60 , or WEB 2170, a platelet-activating factor (PAF) receptor antagonist, inhibited ALI caused by D.42 p
61 AU-0901, a novel platelet-activating factor (PAF) receptor antagonist, is highly neuroprotective in a
65 eceptor-deficient mice or mice injected with PAF receptor antagonists failed to induce LC migration.
67 nuated by PAF receptor antagonists, and that PAF receptor antagonists inhibit the migration and invas
69 re, anti-TGF-beta antibody, indomethacin, or PAF receptor antagonists restored cytokine production in
70 tic photoactivatable substituents are potent PAF receptor antagonists with K(i) values of 0.09-0.79 m
71 gration and invasion, which is attenuated by PAF receptor antagonists, and that PAF receptor antagoni
72 n and demonstrated the administration of the PAF receptor antagonists, BN 50739 and WEB 2170, inhibit
76 HO elongation by platelet-activating factor (PAF) receptor antagonists and secretion of PAF by human
77 B-2086 (specific platelet activating factor (PAF) receptor antagonists), suggesting that they are not
78 nd PAF-like phospholipids that also bind the PAF receptor are implicated in numerous pathological sit
79 the present study, we sought to determine if PAF receptors are present on human bronchial epithelial
80 th inhibits leukotriene synthesis and blocks PAF receptor binding may provide therapeutic advantages
84 ngs suggest that hippocampal plasma membrane PAF receptors, but not intracellular PAF binding sites,
87 zed phospholipids that are recognized by the PAF receptor can trigger inflammatory and thrombotic eve
88 5-HT(2A) and the platelet-activating factor (PAF) receptor can block cis-UCA-induced immune suppressi
89 ive TTLs and their derivatives to the cloned PAF receptor, confirming that of the TTLs, ginkgolide B
90 nts suggest that the stimulation of neuronal PAF receptors could be one crucial step for the regulati
91 for either intracellular or plasma membrane PAF receptors decreased the late-phase of the nociceptiv
92 comparison of its leishmanicidal function on PAF receptor-deficient macrophages and mice under HPC tr
93 hat compared with wild-type macrophages, the PAF receptor-deficient macrophages showed 1) reduced bin
96 C+, CD11c+, Langerin+) in the lymph nodes of PAF receptor-deficient mice was significantly depressed
97 ontrary to the diminution of LC migration in PAF receptor-deficient mice, we did not observe any diff
100 anscytose bacteria across the cell while non-PAF receptor entry shunts bacteria for exit and reentry
104 platelet-activating factor (PAF) content and PAF receptor expression in human breast cancer cells and
107 we surmised that platelet-activating factor (PAF) receptor had a significant role in the antileishman
109 These results indicate significant roles for PAF receptor in the leishmanicidal activity of HPC.
112 we examined the involvement of 5-HT(2A) and PAF receptors in the ability of cis-UCA to stimulate imm
114 rway epithelial cells through stimulation of PAF receptors includes up-regulation of the nuclear tran
117 rmal cell damage and epidermal cells express PAF receptors, it is not known whether PAF is involved i
118 tress, and many epidermal carcinomas express PAF receptors, it is not known whether PAF is involved i
119 ctivation of the platelet-activating factor (PAF) receptor leads to a decrease in outward current in
123 oxidative stress, and keratinocytes express PAF receptors linked to cytokine biosynthesis, it is not
124 oxidative stress, and keratinocytes express PAF receptors linked to cytokine biosynthesis, it is not
125 These studies suggest that the epidermal PAF receptor may be a pharmacologic target for ultraviol
127 roducts that are no longer recognized by the PAF receptor, may be a particularly important signal ter
128 t on specific cellular responses that can be PAF receptor mediated, involves signaling through 5-LO t
129 sponse which was platelet-activating factor (PAF) receptor-mediated, involved signaling through prote
130 eletion, phosphorylation-deficient mutant of PAF receptor (mPAFR) when compared with the wild-type re
131 ptor to remove phosphorylation sites (mutant PAF receptor, mPAFR) results in enhancement of PAF-stimu
132 revealed amplification products derived from PAF receptor mRNA corresponding to transcripts 1 and 2.
134 using PAF antagonists or toxin challenge of PAF receptor negative mice reversed or ameliorated many
136 d by retroviral mediated transduction of the PAF receptor-negative human epidermal carcinoma cell lin
137 d by retroviral-mediated transduction of the PAF receptor-negative human epidermal cell line KB with
138 d by retroviral-mediated transduction of the PAF receptor-negative human epidermal cell line KB with
139 d by retroviral-mediated transduction of the PAF-receptor-negative human epidermal cell line KB with
141 the interaction of endothelial cell PAF with PAF receptors on circulating cells, these data suggest t
143 The results demonstrate the localization of PAF receptors on the pancreatic vascular endothelium.
145 at although cell walls bind to both CD14 and PAF receptor, only CD14 appears to engender a cytokine r
146 vating factor (PAF) increases in LE and that PAF receptor (PAF-r) ablation mitigates its progression.
147 ted in increased reactive oxygen species and PAF receptor (PAF-R) agonistic activity in comparison wi
148 dermal carcinoma cell line KB with the human PAF receptor (PAF-R) and ablation of the endogenous PAF-
150 etter insight into the role of the epidermal PAF receptor (PAF-R) in UVB-mediated gene expression, Af
151 em created by retroviral transduction of the PAF receptor (PAF-R) into the PAF-R-negative human epide
155 tress, and many epidermal carcinomas express PAF receptors (PAF-R) linked to cytokine production, it
158 F) were implanted in corneas of wild-type or PAF-receptor (PAF-R)-knockout mice, and the progression
159 ted with an expression plasmid for the human PAF receptor, PAF stimulation increased AP-1 DNA binding
161 kemia RBL-2H3 cell line expressing wild-type PAF receptor (PAFR) and a phosphorylation-deficient muta
162 ice were injected with PCA 4248, a selective PAF receptor (PAFR) antagonist, transfer of tolerance wa
164 rmation of lipid mediators that signaled the PAF receptor (PAFR) in fully differentiated human cells
165 peptide chemoattractants, cDNA encoding the PAF receptor (PAFR) was co-expressed into RBL-2H3 cells
166 human melanoma cell lines, and we found that PAF receptor (PAFR) was expressed in all eight lines.
168 hypothesize that platelet-activating factor (PAF) receptor (PAFR) ligation requires CME and causes en
169 , suggesting that it may act through the PAF/PAF receptor pathway previously shown to have anti-Leish
171 et-B-induced interleukin-8 production in the PAF-receptor-positive cells, but not in control KB cells
172 est that interaction of pneumococci with the PAF receptor results in sorting so as to transcytose bac
173 tibody directed toward the N-terminus of the PAF receptor revealed specific localization to the vascu
174 at the third intracellular domain of the rat PAF receptor (rPAFR) is a critical determinant in its co
175 ammatory lipid mediator, we propose that the PAF receptor senses cellular damage through the recognit
178 vement of signaling intermediates in the PAF-PAF receptor system in the induction of TIMP2 and MT1-MM
179 ids, creating PAF analogs that stimulate the PAF receptor to induce further PAF synthesis and apoptos
180 diator that interacts with G protein-coupled PAF receptors to elicit diverse physiological and pathop
182 ial cells were isolated and examined for the PAF receptor using immunohistochemistry, reverse transcr
183 indicating that activation of the epidermal PAF receptor was linked to interleukin-8 production.
184 ine the mechanism by which UVB activates the PAF receptor, we used mass spectrometry to demonstrate s
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