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1
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84939564080
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Selective oxidative stress and cholesterol metabolism in lipid-metabolizing cell classes: Distinct regulatory roles for prooxidants and antioxidants
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Rosenblat M, Volkova N, Aviram M. Selective oxidative stress and cholesterol metabolism in lipid-metabolizing cell classes: Distinct regulatory roles for prooxidants and antioxidants. Biofactors 2015; 41: 273-288
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Biofactors
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Rosenblat, M.1
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2
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84937201137
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HDL3 stimulates paraoxonase 1 antiatherogenic catalytic and biological activities in a macrophage model system: In vivo and in vitro studies
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Rosenblat M, Volkova N, Aviram M. HDL3 stimulates paraoxonase 1 antiatherogenic catalytic and biological activities in a macrophage model system: in vivo and in vitro studies. Biofactors 2014; 40: 536-545
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Biofactors
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Rosenblat, M.1
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3
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84891617759
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Pomegranate extract (POMx) decreases the atherogenicity of serum and of human monocyte-derived macrophages (HMDM) in simvastatin-treated hypercholesterolemic patients: A doubleblinded, placebo-controlled, randomized, prospective pilot study
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Hamoud S, Hayek T, Volkova N, et al. Pomegranate extract (POMx) decreases the atherogenicity of serum and of human monocyte-derived macrophages (HMDM) in simvastatin-treated hypercholesterolemic patients: a doubleblinded, placebo-controlled, randomized, prospective pilot study. Atherosclerosis 2014; 232: 204-210
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Hamoud, S.1
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84941299656
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Inhibition of glutathione production induces macrophage CD36 expression and enhances cellular-oxidized low density lipoprotein (oxLDL) uptake
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Yang X, Yao H, Chen Y, et al. Inhibition of glutathione production induces macrophage CD36 expression and enhances cellular-oxidized low density lipoprotein (oxLDL) uptake. J Biol Chem 2015; 290: 21788-21799
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Yang, X.1
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5
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84908679387
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Reduced glutathione increases quercetin stimulatory effects on HDL- or apoA1-mediated cholesterol efflux from J774A.1 macrophages
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Rosenblat M, Volkova N, Khatib S, et al. Reduced glutathione increases quercetin stimulatory effects on HDL- or apoA1-mediated cholesterol efflux from J774A.1 macrophages. Free Radic Res 2014; 48: 1462-1472
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Free Radic Res
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Rosenblat, M.1
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Khatib, S.3
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6
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84943427904
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TWEAK/Fn14 interaction promotes oxidative stress through NADPH oxidase activation in macrophages
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Madrigal-Matute J, Fernandez-Laso V, Sastre C, et al. TWEAK/Fn14 interaction promotes oxidative stress through NADPH oxidase activation in macrophages. Cardiovasc Res 2015; 108: 139-147
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Madrigal-Matute, J.1
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CD36-dependent 7-ketocholesterol accumulation in macrophages mediates progression of atherosclerosis in response to chronic air pollution exposure
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Rao X, Zhong J, Maiseyeu A, et al. CD36-dependent 7-ketocholesterol accumulation in macrophages mediates progression of atherosclerosis in response to chronic air pollution exposure. Circ Res 2014; 115: 770-780
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Rao, X.1
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8
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84957448547
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In vitro effects of exogenous carbon monoxide on oxidative stress and lipid metabolism in macrophages
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Epub ahead of print
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Petrick L, Rosenblat M, Aviram M. In vitro effects of exogenous carbon monoxide on oxidative stress and lipid metabolism in macrophages. Toxicol Ind Health 2014; pii: 0748233714558084. [Epub ahead of print]
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(2014)
Toxicol Ind Health
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Petrick, L.1
Rosenblat, M.2
Aviram, M.3
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9
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84939454161
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Molecular hydrogen stabilizes atherosclerotic plaque in low-density lipoprotein receptor-knockout mice
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Song G, Zong C, Zhang Z, et al. Molecular hydrogen stabilizes atherosclerotic plaque in low-density lipoprotein receptor-knockout mice. Free Radic Biol Med 2015; 87: 58-68
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Song, G.1
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Carbon black nanoparticles promote endothelial activation and lipid accumulation in macrophages independently of intracellular ROS production
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Cao Y, Roursgaard M, Danielsen PH, et al. Carbon black nanoparticles promote endothelial activation and lipid accumulation in macrophages independently of intracellular ROS production. PLoS One 2014; 9: e106711
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PLoS One
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Cao, Y.1
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84964780645
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Silicon dioxide nanoparticles increase macrophage atherogenicity: Stimulation of cellular cytotoxicity, oxidative stress, and triglycerides accumulation
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Epub ahead of print
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Petrick L, Rosenblat M, Paland N, Aviram M. Silicon dioxide nanoparticles increase macrophage atherogenicity: stimulation of cellular cytotoxicity, oxidative stress, and triglycerides accumulation. Environ Toxicol 2014. [Epub ahead of print]
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(2014)
Environ Toxicol
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Petrick, L.1
Rosenblat, M.2
Paland, N.3
Aviram, M.4
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