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1  encoded by herpesvirus Saimiri and to human interleukin-8 receptors.
2                                        Human interleukin-8 receptors A (IL-8RA) and B (IL-8RB) are se
3 oid cells transfected with formyl peptide or interleukin-8 receptors, agonist stimulation activated n
4 ine transfected with human formyl peptide or interleukin-8 receptors and normal human neutrophils as
5 ncise syntheses of (+/-)-frondosin B (1), an interleukin-8 receptor antagonist, have been achieved fr
6 ously that chemokine receptors including the interleukin-8 receptor B (CXCR2) and the Duffy blood gro
7                           Herein we describe interleukin-8 receptor B (IL-8RB, also termed CXCR2) imm
8  2, angiotensin receptors types 1 and 2, and interleukin-8 receptor could not activate SRF in the pre
9 ng the top of the lamellipodium, whereas the interleukin 8 receptors CXCR1 and CXCR2 and the integrin
10                            Expression of the interleukin-8 receptor CXCR1 was negative or low in beni
11                                          The interleukin-8 receptors (CXCR1 and CXCR2) are specifical
12 functional domains of the two CXC chemokine (interleukin-8) receptors, CXCR1 (formally IL-8RA) and CX
13 ocrine tumor cells expressed another type of interleukin-8 receptor, CXCR2, suggesting an autocrine m
14            Small-molecule antagonists of the interleukin-8 receptors have been identified, which may
15  Gialpha subfamily members and it attenuates interleukin-8 receptor-mediated mitogen-activated protei
16 ctase, bcl-2, interferon regulatory factors, interleukin 8 receptor, neural cell adhesion molecule-li
17 -coupled receptor with close homology to the interleukin-8 receptor (ORF 74).
18 of intracellular loops between the MCP-1 and interleukin-8 receptors to create chimeric receptors rev
19 leukin-8 (IL-8) that allow high affinity and interleukin-8 receptor type 1 (IL8R1)-specific binding o
20 ins from IL-8, which binds to both IL8R1 and interleukin-8 receptor type 2 (IL8R2) with high affinity

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