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Oxidized low density lipoprotein induces differentiation and adhesion of human monocytes and the monocytic cell line U937.
Proc Natl Acad Sci U S A. 1990 Feb;87(3):904-8
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Coiled-coil fibrous domains mediate ligand binding by macrophage scavenger receptor type II.
Nature. 1990 Feb 8;343(6258):570-2
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Oxidized low density lipoprotein suppresses the expression of tumor necrosis factor-alpha mRNA in stimulated murine peritoneal macrophages.
J Immunol. 1990 Mar 15;144(6):2343-50
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Atherogenesis during low level hypercholesterolemia in the nonhuman primate. I. Fatty streak formation.
Arteriosclerosis. 1990 Mar-Apr;10(2):164-77
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Scavenger receptor-mediated uptake and metabolism of lipid vesicles containing acidic phospholipids by mouse peritoneal macrophages.
J Biol Chem. 1990 Mar 25;265(9):5226-31
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Distribution of oxidation specific lipid-protein adducts and apolipoprotein B in atherosclerotic lesions of varying severity from WHHL rabbits.
Arteriosclerosis. 1990 May-Jun;10(3):336-49
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Role of oxidatively modified LDL in atherosclerosis.
Free Radic Biol Med. 1990;9(2):155-68
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An ancient, highly conserved family of cysteine-rich protein domains revealed by cloning type I and type II murine macrophage scavenger receptors.
Proc Natl Acad Sci U S A. 1990 Nov;87(22):8810-4
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Human macrophage scavenger receptors: primary structure, expression, and localization in atherosclerotic lesions.
Proc Natl Acad Sci U S A. 1990 Dec;87(23):9133-7
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Protein measurement with the Folin phenol reagent.
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Binding site on macrophages that mediates uptake and degradation of acetylated low density lipoprotein, producing massive cholesterol deposition.
Proc Natl Acad Sci U S A. 1979 Jan;76(1):333-7
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Inhibition of cholesterol synthesis with compactin renders growth of cultured cells dependent on the low density lipoprotein receptor.
J Biol Chem. 1979 Jun 25;254(12):5403-9
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LDL-induced cytotoxicity and its inhibition by HDL in human vascular smooth muscle and endothelial cells in culture.
Atherosclerosis. 1979 Mar;32(3):213-29
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Characterization of lipid-laden aortic cells from cholesterol-fed rabbits. IV. Investigation of macrophage-like properties of aortic cell populations.
Lab Invest. 1979 Oct;41(4):372-8
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Reversible accumulation of cholesteryl esters in macrophages incubated with acetylated lipoproteins.
J Cell Biol. 1979 Sep;82(3):597-613
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The role of the monocyte in atherogenesis: I. Transition of blood-borne monocytes into foam cells in fatty lesions.
Am J Pathol. 1981 May;103(2):181-90
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Lipoprotein oxidation and lipoprotein-induced cytotoxicity.
Arteriosclerosis. 1983 May-Jun;3(3):215-22
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Complementation of mutations in the LDL pathway of receptor-mediated endocytosis by cocultivation of LDL receptor-defective hamster cell mutants.
Cell. 1983 Jun;33(2):413-22
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Lipoprotein metabolism in the macrophage: implications for cholesterol deposition in atherosclerosis.
Annu Rev Biochem. 1983;52:223-61
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Receptor-mediated endocytosis of low-density lipoprotein in cultured cells.
Methods Enzymol. 1983;98:241-60
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Modification of low density lipoprotein by endothelial cells involves lipid peroxidation and degradation of low density lipoprotein phospholipids.
Proc Natl Acad Sci U S A. 1984 Jun;81(12):3883-7
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Endothelial and smooth muscle cells alter low density lipoprotein in vitro by free radical oxidation.
Arteriosclerosis. 1984 Jul-Aug;4(4):357-64
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Receptor-mediated endocytosis of low density lipoprotein: somatic cell mutants define multiple genes required for expression of surface-receptor activity.
Proc Natl Acad Sci U S A. 1984 Sep;81(17):5454-8
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Monocytic origin of foam cells in human atherosclerotic plaques.
Atherosclerosis. 1984 Dec;53(3):265-71
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Modulation of endotoxin-induced endothelial cell toxicity by low density lipoprotein.
Lab Invest. 1986 Oct;55(4):419-26
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Toxicity of oxidized low-density lipoprotein to cultured fibroblasts is selective for S phase of the cell cycle.
J Cell Physiol. 1987 Mar;130(3):311-20
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Oxidatively modified low density lipoproteins: a potential role in recruitment and retention of monocyte/macrophages during atherogenesis.
Proc Natl Acad Sci U S A. 1987 May;84(9):2995-8
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Binding of acetylated low density lipoprotein and maleylated bovine serum albumin to the rat liver: one or two receptors?
EMBO J. 1987 Feb;6(2):319-26
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Autoxidation of human low density lipoprotein: loss of polyunsaturated fatty acids and vitamin E and generation of aldehydes.
J Lipid Res. 1987 May;28(5):495-509
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Probucol prevents the progression of atherosclerosis in Watanabe heritable hyperlipidemic rabbit, an animal model for familial hypercholesterolemia.
Proc Natl Acad Sci U S A. 1987 Aug;84(16):5928-31
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Antiatherogenic effect of probucol unrelated to its hypocholesterolemic effect: evidence that antioxidants in vivo can selectively inhibit low density lipoprotein degradation in macrophage-rich fatty streaks and slow the progression of atherosclerosis in the Watanabe heritable hyperlipidemic rabbit.
Proc Natl Acad Sci U S A. 1987 Nov;84(21):7725-9
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Development of intracellular lipid deposits in the lipid-laden cells of atherosclerotic lesions. A cytochemical and ultrastructural study.
Atherosclerosis. 1987 Oct;67(2-3):127-42
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Modification of human serum low density lipoprotein by oxidation--characterization and pathophysiological implications.
Chem Phys Lipids. 1987 Nov-Dec;45(2-4):315-36
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Malondialdehyde-altered protein occurs in atheroma of Watanabe heritable hyperlipidemic rabbits.
Science. 1988 Jul 8;241(4862):215-8
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Evidence in liver for a disulphide-linked scavenger receptor containing a binding site for acetylated low-density lipoprotein and maleylated bovine serum albumin.
Biochem J. 1988 Aug 1;253(3):835-8
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Purification and characterization of a bovine acetyl low density lipoprotein receptor.
Proc Natl Acad Sci U S A. 1988 Dec;85(23):9238-42
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Isolation of low density lipoprotein from atherosclerotic vascular tissue of Watanabe heritable hyperlipidemic rabbits.
Arteriosclerosis. 1988 Nov-Dec;8(6):768-77
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Monoclonal DLR1a/104G antibody recognizing peroxidized lipoproteins in atherosclerotic lesions.
Biochim Biophys Acta. 1988 Nov 25;963(2):208-14
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Abnormal intracellular sorting of O-linked carbohydrate-deficient interleukin-2 receptors.
Mol Cell Biol. 1988 Aug;8(8):3357-63
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A macrophage receptor that recognizes oxidized low density lipoprotein but not acetylated low density lipoprotein.
J Biol Chem. 1989 Feb 15;264(5):2599-604
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Low density lipoprotein undergoes oxidative modification in vivo.
Proc Natl Acad Sci U S A. 1989 Feb;86(4):1372-6
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Construction and properties of replication-competent murine retroviral vectors encoding methotrexate resistance.
Mol Cell Biol. 1989 Jan;9(1):100-8
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Beyond cholesterol. Modifications of low-density lipoprotein that increase its atherogenicity.
N Engl J Med. 1989 Apr 6;320(14):915-24
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Multiple receptors for modified low density lipoproteins in mouse peritoneal macrophages: different uptake mechanisms for acetylated and oxidized low density lipoproteins.
Biochem Biophys Res Commun. 1989 Mar 31;159(3):1375-82
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A spectrophotometric assay for lipid peroxides in serum lipoproteins using a commercially available reagent.
J Lipid Res. 1989 Apr;30(4):627-30
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Evidence for the presence of oxidatively modified low density lipoprotein in atherosclerotic lesions of rabbit and man.
J Clin Invest. 1989 Oct;84(4):1086-95
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Direct evidence for a protein recognized by a monoclonal antibody against oxidatively modified LDL in atherosclerotic lesions from a Watanabe heritable hyperlipidemic rabbit.
Am J Pathol. 1989 Nov;135(5):815-25
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Differences in the metabolism of oxidatively modified low density lipoprotein and acetylated low density lipoprotein by human endothelial cells: inhibition of cholesterol esterification by oxidatively modified low density lipoprotein.
J Lipid Res. 1989 Oct;30(10):1561-8
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Type I macrophage scavenger receptor contains alpha-helical and collagen-like coiled coils.
Nature. 1990 Feb 8;343(6258):531-5
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Binding characteristics of reduced hepatic receptors for acetylated low-density lipoprotein and maleylated bovine serum albumin.
Biochem J. 1990 Feb 1;265(3):689-98
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