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1 longated collagen-like binding domain of the macrophage scavenger receptor.
2 binding domain of OxLDL with respect to some macrophage scavenger receptors.
3 umin structure and thereby tune clearance by macrophage scavenger receptors.
5 utations and common sequence variants of the macrophage scavenger receptor 1 (MSR1) gene have recentl
8 oprotein J (APOJ), lipoprotein lipase (LPL), macrophage scavenger receptor 1 (MSR1), and tumor necros
15 hree [steroid 5-alpha-reductase 2 (Srd5A-2), macrophage scavenger receptor-1 (MSR-1), and tumor necro
16 r-1alpha, vascular cell adhesion molecule-1, macrophage scavenger receptor-1, and cyclophilin A compa
18 ould regulate the expression and function of macrophage scavenger receptor A (SR-A) in macrophages.
21 M-CSFR overexpression increased the mRNA for macrophage scavenger receptor A, and fucoidan blocking o
23 binding adaptor Iba-1, lysosome marker CD68, macrophage scavenger receptor A, Fcgamma receptors I (CD
24 amyloid-beta42 load correlated directly with macrophage scavenger receptor A-positive clusters and in
25 ger receptor A, CD64, CD32 and the number of macrophage scavenger receptor A-positive plaque-related
26 CD36 (a class B scavenger receptor) and the macrophage scavenger receptor (a class A scavenger recep
27 of low-density lipoprotein into a ligand for macrophage scavenger receptor A1 recognition, cholestero
28 l proliferation, increased expression of the macrophage scavenger receptor and apolipoprotein E, and
29 found for the group-A SRCR domain of type-1 macrophage scavenger receptor and MARCO, the macrophage
33 have examined human brain for expression of macrophage scavenger receptor as part of ongoing studies
36 as endogenous high-affinity ligands for the macrophage scavenger receptor CD36 (oxPC(CD36)) was rece
37 on oxLDL, has a high binding affinity to the macrophage scavenger receptor CD36 and participates in C
40 endogenous oxidized phospholipid ligand for macrophage scavenger receptor CD36, where the truncated
42 Together, these results demonstrate that macrophage scavenger receptor class A contributes signif
43 homogeneity and find that it belongs to the macrophage scavenger receptor cysteine rich (SRCR) famil
45 se results indicate that TNF-alpha regulates macrophage scavenger receptor expression in PMA-differen
46 tment divergently regulated CD36 and class A macrophage-scavenger receptor expression and failed to i
48 ma (IFN-gamma) inhibits transcription of the macrophage scavenger receptor gene by antagonizing the R
49 The effect of CsA on the mRNA expression of macrophage scavenger receptor genes including CD36, CD68
52 to lipoproteins increases expression of the macrophage scavenger receptor implies that lipoproteins
53 uch oxidized phospholipids are recognized by macrophage scavenger receptors, implying that these inna
55 goal of this study is to examine the role of macrophage scavenger receptors in immune cell recruitmen
56 avenger receptor A, and fucoidan blocking of macrophage scavenger receptors inhibited uptake of A bet
57 om recent studies suggested that some of the macrophage scavenger receptors involved in the uptake of
59 ptake of oxidized low-density lipoprotein by macrophage scavenger receptors is largely responsible fo
60 oxidized low-density lipoprotein (OxLDL) by macrophage scavenger receptors is thought to be a key pr
61 nsity lipoprotein receptor (LDLR) repeats, a macrophage scavenger receptor-like domain, and a trypsin
62 low density lipoprotein receptor repeats, a macrophage scavenger receptor-like domain, and a trypsin
63 or betaine promoted upregulation of multiple macrophage scavenger receptors linked to atherosclerosis
64 his study defines tumor-derived IL37 and the macrophage scavenger receptor MARCO as potential therape
75 eens and chemical inhibitor studies nominate macrophage scavenger receptor MSR1, Toll-like receptors,
76 oncentrations demonstrated the modulation of macrophage scavenger receptors (MSRs) involved in athero
77 reased the luciferase activity driven by the macrophage scavenger receptor promoter in the transfecte
78 egulatory pathway in fibrogenesis in which a macrophage scavenger receptor protects against organ fib
79 LDL binding was paralleled by a reduction of macrophage scavenger receptor protein as detected by the
83 fected cultured cells overexpressing RAGE or macrophage scavenger receptor (SR), type A, displayed bi
86 ry defense against inhaled oxidants in mice: macrophage scavenger receptors (SRs) bind proinflammator
87 f this study was to test the expression of 3 macrophage scavenger receptors (SRs) that are responsibl
89 d the mechanism by which TNF-alpha inhibited macrophage scavenger receptor surface expression and bin
90 ing places cosmid CI8-2644 telomeric to MSR (macrophage scavenger receptor), the reverse of a previou
91 a charged surface in a manor similar to the macrophage scavenger receptor to "capture" LPS ligands a
93 ing showed that NKX3.1 is proximal to MSR32 (macrophage scavenger receptor type II) and LPL (human li
95 ted forms of the human type I and II class A macrophage scavenger receptors were studied using bioche
96 d expression cloning approach, we identified macrophage scavenger receptor with collagenous structure
97 rmine the presence of autoantibodies against macrophage scavenger receptors within the airways and th