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Lipoxin A4 inhibits IL-1β-induced IL-8 and ICAM-1 expression in 1321N1 human astrocytoma cellsDECKER, Yann; MCBEAN, Gethin; GODSON, Catherine et al.American journal of physiology. Cell physiology. 2009, Vol 65, Num 6, issn 0363-6143, C1420-C1427Article

Simultaneous mobilization of Mac-1 (CD11b/CD18) and formyl peptide chemoattractant receptors in human neutrophilsENGLISH, D; GRAVES, V.Blood. 1992, Vol 80, Num 3, pp 776-787, issn 0006-4971Article

2-Phenyl-2,3-dihydro-1H-imidazo[1 ,2-b]pyrazole derivatives : New potent inhibitors of fMLP-induced neutrophil chemotaxisBRUNO, Olga; BRULLO, Chiara; BONDAVALLI, Francesco et al.Bioorganic & medicinal chemistry letters (Print). 2007, Vol 17, Num 13, pp 3696-3701, issn 0960-894X, 6 p.Article

Receptor cleavage reduces the fluid shear response in neutrophils of the spontaneously hypertensive ratCHEN, Angela Y; DELANO, Frank A; VALDEZ, Shakti R et al.American journal of physiology. Cell physiology. 2010, Vol 68, Num 6, issn 0363-6143, C1441-C1449Article

Regulation of the leucocyte chemoattractant receptor FPR in glioblastoma cells by cell differentiationJIAN HUANG; KEQIANG CHEN; JIAQIANG HUANG et al.Carcinogenesis (New York. Print). 2009, Vol 30, Num 2, pp 348-355, issn 0143-3334, 8 p.Article

Regulation of C5a and formyl peptide receptor expression on human polymorphonuclear leukocytesVAN EPPS, D. E; SIMPSON, S; BENDER, J. G et al.The Journal of immunology (1950). 1990, Vol 144, Num 3, pp 1062-1068, issn 0022-1767Article

The biosynthesis of endothelin-1 by human polymorphonuclear leukocytesSESSA, W. C; KAW, S; HECKER, M et al.Biochemical and biophysical research communications (Print). 1991, Vol 174, Num 2, pp 613-618, issn 0006-291X, 6 p.Article

Stimulus-dependent specificity for annexin 1 inhibition of the inflammatory nociceptive response: the involvement of the receptor for formylated peptidesPIERETTI, Stefano; DI GIANNUARIOA, Amalia; DE FELICE, Milena et al.Pain (Amsterdam). 2004, Vol 109, Num 1-2, pp 52-63, issn 0304-3959, 12 p.Article

Discovery of Trp-Nle-Tyr-Met as a novel agonist for human formyl peptide receptor-like 1WAN, Hui-Xin; CAIHONG ZHOU; YUEYUN ZHANG et al.Biochemical pharmacology. 2007, Vol 74, Num 2, pp 317-326, issn 0006-2952, 10 p.Article

Computational structure-activity relationship analysis of small-molecule agonists for human formyl peptide receptorsKHLEBNIKOV, Andrei I; SCHEPETKIN, Igor A; QUINN, Mark T et al.European journal of medicinal chemistry. 2010, Vol 45, Num 11, pp 5406-5419, issn 0223-5234, 14 p.Article

Calcium efflux and influx in f-met-leu-phe (fMLP)-activated human neutrophils are chronologically distinct eventsANDERSON, R; GOOLAM MAHOMED, A.Clinical and experimental immunology (Print). 1997, Vol 110, Num 1, pp 132-138, issn 0009-9104Article

Activation of neutrophils NADPH oxidase by PMA : cytosol activity is translocated in phorbol-primed neutrophilsUMEI, T; OHHARA, N; OKAMURA, S et al.International journal of biochemistry. 1993, Vol 25, Num 5, pp 631-633, issn 0020-711XArticle

Biosynthesis of platelet-activating factor (PAF) induced by chemotactic peptide is modulated at the Lyso-PAF:acetyl-CoA acetyltransferase level by calcium transient and phosphatidic acidGARCIA, C; MONTERO, M; ALVAREZ, J et al.The Journal of biological chemistry (Print). 1993, Vol 268, Num 6, pp 4001-4008, issn 0021-9258Article

Structure, 5'-flanking sequence, and chromosome location of the human N-formyl peptide receptor gene. A single-copy gene comprised of two exons on chromosome 19q.13.3 that yields two distinct transcripts by alternative polyadenylationHAVILAND, D. L; BOREL, A. C; FLEISCHER, D. T et al.Biochemistry (Easton). 1993, Vol 32, Num 16, pp 4168-4174, issn 0006-2960Article

Differences in phosphorylation of formylpeptide and C5a chemoattractant receptors correlate with differences in desensitizationHYDAR ALI; RICHARDSON, R. M; TOMHAVE, E. D et al.The Journal of biological chemistry (Print). 1993, Vol 268, Num 32, pp 24247-24254, issn 0021-9258Article

Flow cytometry analysis of the expression of neutrophil FMLP receptorsALLEN, C. A; BROOM, M. F; CHADWICK, V. S et al.Journal of immunological methods. 1992, Vol 149, Num 2, pp 159-164, issn 0022-1759Article

Differential up-regulation of specific and azurophilic granule membrane markers in electropermeabilized neutrophilsNIESSEN, H. W. M; VERHOEVEN, A. J.Cellular signalling. 1992, Vol 4, Num 5, pp 501-509, issn 0898-6568Article

Chemoattractant-induced firm adhesion of leukocytes to vascular endothelium in vivo is critically dependent on initial leukocyte rollingLINDBOM, L; XIE, X; RAUD, J et al.Acta physiologica scandinavica. 1992, Vol 146, Num 4, pp 415-421, issn 0001-6772Article

Tauroursodeoxycholic azcid inhibits the cytosolic Ca++ increase in human neutrophils stimulated by formyl-methionyl-leucyl-phenylalanineBEUERS, U; THIEL, M; BARDENHEUER, H et al.Biochemical and biophysical research communications (Print). 1990, Vol 171, Num 3, pp 1115-1121, issn 0006-291X, 7 p.Article

Annexin A1 modulates macula densa function by inhibiting cyclooxygenase 2SEIDEL, S; NEYMEYER, H; KAHL, T et al.American journal of physiology. Renal physiology. 2012, Vol 72, Num 3, issn 1931-857X, F845-F854Article

Stable formyl peptide receptor agonists that activate the neutrophil NADPH-oxidase identified through screening of a compound libraryFORSMAN, Huamei; KALDEREN, Christina; NORDIN, Anna et al.Biochemical pharmacology. 2011, Vol 81, Num 3, pp 402-411, issn 0006-2952, 10 p.Article

The peptide Trp-Lys-Tyr-Met-Val-D-Met activates neutrophils through the formyl peptide receptor only when signaling through the formylpeptde receptor like 1 is blocked a receptor switch with implications for signal transduction studies with inhibitors and receptor antagonistsKARLSSON, Jennie; HUAMEI FU; BOULAY, Francois et al.Biochemical pharmacology. 2006, Vol 71, Num 10, pp 1488-1496, issn 0006-2952, 9 p.Article

Subcellular localization and translocation of the receptor for N-formylmethionyl-leucyl-phenylalanine in human neutrophilsSENGELØV, H; BOULAY, F; KJELDSEN, L et al.Biochemical journal (London. 1984). 1994, Vol 299, pp 473-479, issn 0264-6021, 2Article

The G-protein coupled receptors in the inflammatory responseCOTO, E; ALVAREZ, V; LOPEZ-LARREA, C et al.Inmunología (1987). 1993, Vol 12, Num 3, pp 69-72, issn 0213-9626Article

Acting via A2 receptors, adenosine inhibits the upregulation of Mac-1 (CD11b/CD18) expression on FMLP-stimulated neutrophilsWOLLNER, A; WOLLONER, S; SMITH, J. B et al.American journal of respiratory cell and molecular biology. 1993, Vol 9, Num 2, pp 179-185, issn 1044-1549Article

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