scholarly article | Q13442814 |
P356 | DOI | 10.1016/S0014-5793(96)01255-0 |
P698 | PubMed publication ID | 8977111 |
P2093 | author name string | Capel L | |
Chalas J | |||
Lindenbaum A | |||
Claise C | |||
Abella A | |||
Edeas M | |||
Cockx A | |||
P2860 | cites work | THE DISTRIBUTION AND CHEMICAL COMPOSITION OF ULTRACENTRIFUGALLY SEPARATED LIPOPROTEINS IN HUMAN SERUM | Q29391553 |
The pathogenesis of atherosclerosis: a perspective for the 1990s | Q29547827 | ||
Beyond cholesterol. Modifications of low-density lipoprotein that increase its atherogenicity | Q29617216 | ||
Dithiocarbamates as potent inhibitors of nuclear factor kappa B activation in intact cells | Q36231310 | ||
Cytokines in context | Q36529819 | ||
Glutathione deficiency produced by inhibition of its synthesis, and its reversal; Applications in research and therapy | Q36936660 | ||
Properties of the novel proinflammatory supergene "intercrine" cytokine family. | Q37357898 | ||
The role of selenium peroxidases in the protection against oxidative damage of membranes | Q39673091 | ||
Hypoxic induction of interleukin-8 gene expression in human endothelial cells | Q40335593 | ||
Role of oxidized low density lipoprotein in atherogenesis | Q40343074 | ||
Superoxide and hydrogen peroxide in relation to mammalian cell proliferation | Q40525865 | ||
Depletion of the mitochondrial electron transport abrogates the cytotoxic and gene-inductive effects of TNF. | Q40873605 | ||
Inhibition by N-acetyl-L-cysteine of interleukin-6 mRNA induction and activation of NF kappa B by tumor necrosis factor alpha in a mouse fibroblastic cell line, Balb/3T3. | Q41436270 | ||
Leucocyte endothelial cell adhesion: a study comparing human umbilical vein endothelial cells and the endothelial cell line EA-hy-926. | Q41530192 | ||
Application of an immortalized human endothelial cell line to the leucocyte:endothelial adherence assay | Q41542387 | ||
Intracellular calcium signalling after binding of low-density lipoprotein to confluent and nonconfluent cultures of an endothelial cell line, EA.hy 926. | Q41549473 | ||
Low-density lipoprotein is the major carrier of lipid hydroperoxides in plasma. Relevance to determination of total plasma lipid hydroperoxide concentrations | Q41819495 | ||
Interleukin 8 is induced by cholesterol loading of macrophages and expressed by macrophage foam cells in human atheroma | Q42517095 | ||
T lymphocytes in human atherosclerotic plaques are memory cells expressing CD45RO and the integrin VLA-1 | Q43879904 | ||
Interleukin-8 as a macrophage-derived mediator of angiogenesis | Q44053300 | ||
A simple fluorometric assay for lipoperoxide in blood plasma | Q44842027 | ||
Hypoxia/reoxygenation stimulates endothelium to promote neutrophil adhesion | Q61853616 | ||
Pathogenesis of atherosclerosis | Q62046795 | ||
Hypoxia/reoxygenation stimulates endothelial cells to promote interleukin-1 and interleukin-6 production. Effects of free radical scavengers | Q67596944 | ||
Regulation of Rransendothelial Neutrophil Migration by Endogenous Interleukin-8 | Q67701914 | ||
Comparative study of the enzymatic defense systems against oxygen-derived free radicals: the key role of glutathione peroxidase | Q69215906 | ||
The neutrophil-activating protein (NAP-1) is also chemotactic for T lymphocytes | Q69491340 | ||
Endothelial cell gene expression of a neutrophil chemotactic factor by TNF-alpha, LPS, and IL-1 beta | Q69491342 | ||
Endothelial interleukin-8: a novel inhibitor of leukocyte-endothelial interactions | Q69558837 | ||
Regional accumulations of T cells, macrophages, and smooth muscle cells in the human atherosclerotic plaque | Q69990504 | ||
Immunohistochemical characterization of inflammatory cells associated with advanced atherosclerosis | Q70245284 | ||
TGF-beta 1, IL-10 and IL-4 differentially modulate the cytokine-induced expression of IL-6 and IL-8 in human endothelial cells | Q71350326 | ||
Interleukin-8. A mitogen and chemoattractant for vascular smooth muscle cells | Q72018966 | ||
Recruitment and dynamics of leukocytes in the formation of arterial intimal thickening--a comparative study with normo- and hypercholesterolemic rabbits | Q72547644 | ||
Lipoprotein oxidation and measurement of hydroperoxide formation in a single microtitre plate | Q72751164 | ||
P433 | issue | 2-3 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | lipoprotein | Q28350 |
endothelium | Q111140 | ||
P1104 | number of pages | 5 | |
P304 | page(s) | 223-227 | |
P577 | publication date | 1996-12-01 | |
P1433 | published in | FEBS Letters | Q1388051 |
P1476 | title | Oxidized low-density lipoprotein induces the production of interleukin-8 by endothelial cells | |
P478 | volume | 398 |
Q28574130 | Effects of silencing leukocyte-type 12/15-lipoxygenase using short interfering RNAs |
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Q36514445 | KR-31543 reduces the production of proinflammatory molecules in human endothelial cells and monocytes and attenuates atherosclerosis in mouse model |
Q37091275 | Low-density lipoprotein modified by myeloperoxidase in inflammatory pathways and clinical studies. |
Q34072528 | Modified low density lipoprotein and lipoprotein-containing circulating immune complexes as diagnostic and prognostic biomarkers of atherosclerosis and type 1 diabetes macrovascular disease. |
Q77601534 | Oxidized phospholipids as a new landmark in atherosclerosis |
Q40922519 | Oxidized-LDL induce apoptosis in HUVEC but not in the endothelial cell line EA.hy 926. |
Q35027759 | Regulation of chemokine expression in atherosclerosis |
Q28507065 | SREC-II, a new member of the scavenger receptor type F family, trans-interacts with SREC-I through its extracellular domain |
Q34004893 | Selenium and interleukins in persons infected with human immunodeficiency virus type 1. |
Q51676098 | Serum and Low-Density Lipoprotein Enhance Interleukin-8 Secretion by Airway Epithelial Cells |
Q35791924 | Statins in atherosclerosis: lipid-lowering agents with antioxidant capabilities |
Q54246785 | The lncRNA MALAT1 protects the endothelium against ox-LDL-induced dysfunction via upregulating the expression of the miR-22-3p target genes CXCR2 and AKT. |
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