Page last updated: 2024-08-26

7-ketocholesterol and 4-hydroxy-2-nonenal

7-ketocholesterol has been researched along with 4-hydroxy-2-nonenal in 5 studies

Research

Studies (5)

TimeframeStudies, this research(%)All Research%
pre-19900 (0.00)18.7374
1990's0 (0.00)18.2507
2000's3 (60.00)29.6817
2010's2 (40.00)24.3611
2020's0 (0.00)2.80

Authors

AuthorsStudies
Niki, E; Piga, R; Saito, Y; Yoshida, Y1
Augé, N; Bando, Y; Marachet, MA; Muller, C; Nègre-Salvayre, A; Salvayre, R; Sanson, M; Sawa, Y; Thiers, JC; Vindis, C; Zarkovic, K1
Farooqui, AA; He, X; Jenner, AM; Jittiwat, J; Kim, JH; Ong, WY; Patel, SC1
Gao, G; Kowluru, R; Lee, K; Lyons, TJ; Ma, JX; Zhou, KK; Zhou, T1
Barone, E; Butterfield, DA; Cenini, G; Di Domenico, F; Head, E; Mancuso, C; Murphy, MP; Sultana, R1

Other Studies

5 other study(ies) available for 7-ketocholesterol and 4-hydroxy-2-nonenal

ArticleYear
Cytotoxic effects of various stressors on PC12 cells: involvement of oxidative stress and effect of antioxidants.
    Neurotoxicology, 2007, Volume: 28, Issue:1

    Topics: Aldehydes; Animals; Annexin A5; Antioxidants; Apoptosis; Arsenic Trioxide; Arsenicals; Caspases; Cell Survival; Free Radicals; Ketocholesterols; Kinetics; Oxidants; Oxidative Stress; Oxides; PC12 Cells; Propidium; Rats; Reactive Oxygen Species

2007
Oxidized low-density lipoproteins trigger endoplasmic reticulum stress in vascular cells: prevention by oxygen-regulated protein 150 expression.
    Circulation research, 2009, Feb-13, Volume: 104, Issue:3

    Topics: Acetylcysteine; Aldehydes; Apoptosis; Atherosclerosis; Biomarkers; Cysteine Proteinase Inhibitors; Endoplasmic Reticulum; Endoplasmic Reticulum Chaperone BiP; Endothelial Cells; Enzyme Inhibitors; Free Radical Scavengers; HSP70 Heat-Shock Proteins; Humans; In Vitro Techniques; JNK Mitogen-Activated Protein Kinases; Ketocholesterols; Lipoproteins, LDL; Oxygen; Proteins; Stress, Physiological

2009
Apolipoprotein D modulates F2-isoprostane and 7-ketocholesterol formation and has a neuroprotective effect on organotypic hippocampal cultures after kainate-induced excitotoxic injury.
    Neuroscience letters, 2009, May-22, Volume: 455, Issue:3

    Topics: Aldehydes; Animals; Apolipoproteins D; Arachidonic Acid; Binding Sites; Cholesterol; F2-Isoprostanes; Hippocampus; Kainic Acid; Ketocholesterols; L-Lactate Dehydrogenase; Microtubule-Associated Proteins; Nerve Degeneration; Neurons; Neurotoxins; Organ Culture Techniques; Oxidative Stress; Rats; Rats, Wistar

2009
The role of lipid peroxidation products and oxidative stress in activation of the canonical wingless-type MMTV integration site (WNT) pathway in a rat model of diabetic retinopathy.
    Diabetologia, 2011, Volume: 54, Issue:2

    Topics: Acetylcysteine; Aldehydes; Animals; beta Catenin; Blotting, Western; Cell Line; Connective Tissue Growth Factor; Diabetic Retinopathy; Female; Humans; Hydrogen Peroxide; Immunohistochemistry; Ketocholesterols; LDL-Receptor Related Proteins; Lipid Peroxidation; Low Density Lipoprotein Receptor-Related Protein-6; Oxidative Stress; Rats; TCF Transcription Factors

2011
Atorvastatin treatment in a dog preclinical model of Alzheimer's disease leads to up-regulation of haem oxygenase-1 and is associated with reduced oxidative stress in brain.
    The international journal of neuropsychopharmacology, 2012, Volume: 15, Issue:7

    Topics: Aldehydes; Alzheimer Disease; Animals; Anticholesteremic Agents; Atorvastatin; Brain; Cognition Disorders; Disease Models, Animal; Dogs; Glutathione; Heme Oxygenase-1; Heptanoic Acids; Ketocholesterols; Linear Models; Liver; Oxidative Stress; Pyrroles; Up-Regulation

2012