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Results 1 to 25 of 223

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Alteration of volume-regulated chloride channel during macrophage-derived foam cell formation in atherosclerosisLIANG HONG; XIE, Zhi-Zhong; DU, Yan-Hua et al.Atherosclerosis. 2011, Vol 216, Num 1, pp 59-66, issn 0021-9150, 8 p.Article

Chinese herbs Danshen and Gegen modulate key early atherogenic events in vitroSIEVEKILLG, Daniel P; WOO, Kam-Sang; FUNG, Kwok P et al.International journal of cardiology. 2005, Vol 105, Num 1, pp 40-45, issn 0167-5273, 6 p.Article

Evaluation of foam cell formation in cultured macrophages: an improved method with Oil Red O staining and DiI-oxLDL uptakeSUOWEN XU; YAN HUANG; HEQING HUANG et al.Cytotechnology (Dordrecht). 2010, Vol 62, Num 5, pp 473-481, issn 0920-9069, 9 p.Article

Chronic infusion of salusin-α and -β exerts opposite effects on atherosclerotic lesion development in apolipoprotein E-deficient miceNAGASHIMA, Masaharu; WATANABE, Takuya; HIRANO, Tsutomu et al.Atherosclerosis. 2010, Vol 212, Num 1, pp 70-77, issn 0021-9150, 8 p.Article

Cellular uptake of a dexamethasone palmitate-low density lipoprotein complex by macrophages and foam cellsTAUCHI, Yoshihiko; CHONO, Sumio; MORIMOTO, Kazuhiro et al.Journal of drug targeting. 2003, Vol 11, Num 3, pp 163-168, issn 1061-186X, 6 p.Article

Chlamydophilal antigens induce foam cell formation via c-Jun NH2-terminal kinaseKITAZAWA, Takatoshi; FUKUSHIMA, Atsuhito; OTA, Yasuo et al.Microbes and infection. 2007, Vol 9, Num 12-13, pp 1410-1414, issn 1286-4579, 5 p.Article

A novel in vitro model for the study of plaque development in atherosclerosisDORWEILER, Bernhard; TORZEWSKI, Michael; DAHM, Manfred et al.Thrombosis and haemostasis. 2006, Vol 95, Num 1, pp 182-189, issn 0340-6245, 8 p.Article

Nuclear receptors Nur77, Nurr1, and NOR-1 expressed in atherosclerotic lesion macrophages reduce lipid loading and inflammatory responsesBONTA, Peter I; VAN TIEL, Claudia M; PANNEKOEK, Hans et al.Arteriosclerosis, thrombosis, and vascular biology. 2006, Vol 26, Num 10, pp 2288-2294, issn 1079-5642, 7 p.Article

Apolipoprotein E promotes the regression of atherosclerosis independently of lowering plasma cholesterol levelsRAFFAI, Robert L; LOEB, Samuel M; WEISGRABER, Karl H et al.Arteriosclerosis, thrombosis, and vascular biology. 2005, Vol 25, Num 2, pp 436-441, issn 1079-5642, 6 p.Article

Pitavastatin inhibits remnant lipoprotein-induced macrophage foam cell formation through ApoB48 receptor-dependent mechanismKAWAKAMI, Akio; TANI, Mariko; CHIBA, Tsuyoshi et al.Arteriosclerosis, thrombosis, and vascular biology. 2005, Vol 25, Num 2, pp 424-429, issn 1079-5642, 6 p.Article

High-Density Lipoprotein Function, Dysfunction, and Reverse Cholesterol TransportFISHER, Edward A; FEIG, Jonathan E; HEWING, Bernd et al.Arteriosclerosis, thrombosis, and vascular biology. 2012, Vol 32, Num 12, pp 2813-2820, issn 1079-5642, 8 p.Article

NF-E2-Related Factor 2 Promotes Atherosclerosis by Effects on Plasma Lipoproteins and Cholesterol Transport That Overshadow Antioxidant ProtectionBARAJAS, Berenice; NAM CHE; ARAUJO, Jesus A et al.Arteriosclerosis, thrombosis, and vascular biology. 2011, Vol 31, Num 1, pp 58-66, issn 1079-5642, 9 p.Article

SIRT1 decreases Lox-1-mediated foam cell formation in atherogenesisSTEIN, Sokrates; LOHMANN, Christine; MCBURNEY, Michael W et al.European heart journal. 2010, Vol 31, Num 18, pp 2301-2309, issn 0195-668X, 9 p.Article

Oxidation of chylomicron remnants and vascular dysfunctionBOTHAM, Kathleen M.Atherosclerosis. Supplement (Amsterdam). 2008, Vol 9, Num 2, pp 57-61, issn 1567-5688, 5 p.Conference Paper

Adiponectin-AdipoR1/2-APPL1 signaling axis suppresses human foam cell formation: Differential ability of AdipoR1 and AdipoR2 to regulate inflammatory cytokine responsesLING TIAN; NANLAN LUO; XIAOLIN ZHU et al.Atherosclerosis. 2012, Vol 221, Num 1, pp 66-75, issn 0021-9150, 10 p.Article

Design and Validation of a Specific Scavenger Receptor Class AI Binding Peptide for Targeting the Inflammatory Atherosclerotic PlaqueSEGERS, Filip M. E; HAIXIANG YU; MOLENAAR, Tom J. M et al.Arteriosclerosis, thrombosis, and vascular biology. 2012, Vol 32, Num 4, pp 971-978, issn 1079-5642, 8 p.Article

Regulation of Foam Cells by Adenosine : The Role of Adenosine in Response to Vascular InflammationREISS, Allison B; CRONSTEIN, Bruce N.Arteriosclerosis, thrombosis, and vascular biology. 2012, Vol 32, Num 4, pp 879-886, issn 1079-5642, 8 p.Article

Stimulation of Cholesterol Efflux by LXR Agonists in Cholesterol-Loaded Human Macrophages Is ABCA1-Dependent but AB CG1-IndependentLARREDE, Sandra; QUINN, Carmel M; GIRAL, Philippe et al.Arteriosclerosis, thrombosis, and vascular biology. 2009, Vol 29, Num 11, pp 1930-1936, issn 1079-5642, 7 p.Article

The evil in atherosclerosis : Adherent platelets induce foam cell formationDAUB, Karin; LINDEMANN, Stephan; LANGER, Harald et al.Seminars in thrombosis and hemostasis. 2007, Vol 33, Num 2, pp 173-178, issn 0094-6176, 6 p.Article

NASH and atherosclerosis are two aspects of a shared disease: Central role for macrophagesBIEGHS, Veerle; RENSEN, Patrick C. N; HOFKER, Marten H et al.Atherosclerosis. 2012, Vol 220, Num 2, pp 287-293, issn 0021-9150, 7 p.Article

Regulation of Lipid Droplet Cholesterol Efflux From Macrophage Foam CellsOUIMET, Mireille; MARCEL, Yves L.Arteriosclerosis, thrombosis, and vascular biology. 2012, Vol 32, Num 3, pp 575-581, issn 1079-5642, 7 p.Article

Hypoxia Stimulates Low-Density Lipoprotein Receptor-Related Protein-1 Expression Through Hypoxia-Inducible Factor-1α in Human Vascular Smooth Muscle CellsCASTELLANO, Jose; ALEDO, Rosa; SENDRA, Judith et al.Arteriosclerosis, thrombosis, and vascular biology. 2011, Vol 31, Num 6, pp 1411-1420, issn 1079-5642, 10 p.Article

EMMPRIN and its ligand cyclophilin A regulate MT1-MMP, MMP-9 and M-CSF during foam cell formationSEIZER, Peter; SCHÖNBERGER, Tanja; SCHMIDT, Roland et al.Atherosclerosis. 2010, Vol 209, Num 1, pp 51-57, issn 0021-9150, 7 p.Article

CD36 and Macrophage Scavenger Receptor A Modulate Foam Cell Formation via Inhibition of Lipid-Laden Platelet PhagocytosisSEIZER, Peter; SCHIEMANN, Susanne; MAY, Andreas E et al.Seminars in thrombosis and hemostasis. 2010, Vol 36, Num 2, pp 157-162, issn 0094-6176, 6 p.Article

A secreted soluble form of LR11, specifically expressed in intimal smooth muscle cells, accelerates formation of lipid-laden macrophagesOHWAKI, Kenji; BUJO, Hideaki; MEIZI JIANG et al.Arteriosclerosis, thrombosis, and vascular biology. 2007, Vol 27, Num 5, pp 1050-1056, issn 1079-5642, 7 p.Article

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