Lipid Peroxidation: Production, Metabolism, and Signaling Mechanisms of Malondialdehyde and 4-Hydroxy-2-Nonenal
暂无分享,去创建一个
Antonio Ayala | A. Ayala | M. Muñoz | S. Argüelles | Sandro Argüelles | Mario F. Muñoz | Mario F Muñoz
[1] N. Žarković,et al. The influence of 4‐hydroxy‐2‐nonenal on proliferation, differentiation and apoptosis of human osteosarcoma cells , 2005, BioFactors.
[2] H. Esterbauer,et al. Hydroxyl-radical-induced iron-catalysed degradation of 2-deoxyribose. Quantitative determination of malondialdehyde. , 1988, The Biochemical journal.
[3] J. Cano,et al. Evidence for dopamine-derived hydroxyl radical formation in the nigrostriatal system in response to axotomy. , 2003, Free radical biology & medicine.
[4] M. Kukan,et al. Effect of copper intoxication on rat liver proteasome activity: Relationship with oxidative stress , 2008, Journal of biochemical and molecular toxicology.
[5] C. Kim,et al. 4-Hydroxynonenal enhances MMP-9 production in murine macrophages via 5-lipoxygenase-mediated activation of ERK and p38 MAPK. , 2010, Toxicology and applied pharmacology.
[6] P. Kinnunen,et al. Oxidized phosphatidylcholines in membrane‐level cellular signaling: from biophysics to physiology and molecular pathology , 2013, The FEBS journal.
[7] D. Kong,et al. Modulation of Aldehyde Dehydrogenase Activity Affects (±)-4-Hydroxy-2E-nonenal (HNE) Toxicity and HNE–Protein Adduct Levels in PC12 Cells , 2011, Journal of Molecular Neuroscience.
[8] C. Tormo,et al. Oxidative stress in Alzheimer's disease and mild cognitive impairment with high sensitivity and specificity. , 2013, Journal of Alzheimer's disease : JAD.
[9] I. Blair,et al. DNA Adducts with Lipid Peroxidation Products* , 2008, Journal of Biological Chemistry.
[10] M. Dizdaroglu,et al. Mechanisms of free radical-induced damage to DNA , 2012, Free radical research.
[11] B. Hill,et al. Oxidized lipids activate autophagy in a JNK-dependent manner by stimulating the endoplasmic reticulum stress response☆ , 2013, Redox biology.
[12] H. Bartsch,et al. Increased etheno-DNA adducts in affected tissues of patients suffering from Crohn's disease, ulcerative colitis, and chronic pancreatitis. , 2006, Antioxidants & redox signaling.
[13] Hee‐Don Choi,et al. Protective effect of 70% ethanolic extract of Lindera obtusiloba Blume on tert-butyl hydroperoxide-induced oxidative hepatotoxicity in rats. , 2013, Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association.
[14] R. Lindahl,et al. Inhibition of class-3 aldehyde dehydrogenase and cell growth by restored lipid peroxidation in hepatoma cell lines. , 1999, Free radical biology & medicine.
[15] H. Paik,et al. Whey protein inhibits iron overload-induced oxidative stress in rats. , 2013, Journal of nutritional science and vitaminology.
[16] J. Cravedi,et al. Fate of 4-hydroxynonenal in vivo: disposition and metabolic pathways. , 2003, Molecular aspects of medicine.
[17] Xiaoxia Tang,et al. Protein Adducts Generated from Products of Lipid Oxidation: Focus on HNE and ONE , 2006, Drug metabolism reviews.
[18] M. Maggiora,et al. The exocytosis induced in HL‐60 cells by 4‐hydroxynonenal, a lipid peroxidation product, is not prevented by reduced glutathione , 2006, Cell biochemistry and function.
[19] Zhenyuan Song,et al. 4-Hydroxynonenal differentially regulates adiponectin gene expression and secretion via activating PPARγ and accelerating ubiquitin–proteasome degradation , 2012, Molecular and Cellular Endocrinology.
[20] A. Rajput,et al. Oxygen free radical producing activity of polymorphonuclear leukocytes in patients with Parkinson's disease , 1992, Molecular and Cellular Biochemistry.
[21] A. Ayala,et al. A preliminary analysis of within-subject variation in human serum oxidative stress parameters as a function of time. , 2007, Rejuvenation research.
[22] C. Lawless,et al. A senescent cell bystander effect: senescence-induced senescence , 2012, Aging cell.
[23] A. Siomek. NF-κB signaling pathway and free radical impact. , 2012, Acta biochimica Polonica.
[24] Wei Wei,et al. Melatonin ameliorates carbon tetrachloride-induced hepatic fibrogenesis in rats via inhibition of oxidative stress. , 2005, Life sciences.
[25] Tanea T Reed. Lipid peroxidation and neurodegenerative disease. , 2011, Free radical biology & medicine.
[26] N. Parinandi,et al. Redox Regulation of 4-Hydroxy-2-nonenal-mediated Endothelial Barrier Dysfunction by Focal Adhesion, Adherens, and Tight Junction Proteins* , 2006, Journal of Biological Chemistry.
[27] S. Oktar,et al. Protective effects of caffeic acid phenethyl ester on iron-induced liver damage in rats , 2009, Journal of Physiology and Biochemistry.
[28] D. Tuma. Role of malondialdehyde-acetaldehyde adducts in liver injury. , 2002, Free radical biology & medicine.
[29] J. Boonstra,et al. The influence of reactive oxygen species on cell cycle progression in mammalian cells. , 2012, Gene.
[30] M. Almeida,et al. Increased Lipid Oxidation Causes Oxidative Stress, Increased Peroxisome Proliferator-activated Receptor-γ Expression, and Diminished Pro-osteogenic Wnt Signaling in the Skeleton* , 2009, The Journal of Biological Chemistry.
[31] C. Kim,et al. Participation of 5-lipoxygenase-derived LTB(4) in 4-hydroxynonenal-enhanced MMP-2 production in vascular smooth muscle cells. , 2010, Atherosclerosis.
[32] E. Niki,et al. 4-Hydroxynonenal Induces Adaptive Response and Enhances PC12 Cell Tolerance Primarily through Induction of Thioredoxin Reductase 1 via Activation of Nrf2* , 2005, Journal of Biological Chemistry.
[33] A. Alam,et al. Myrica nagi attenuates cumene hydroperoxide-induced cutaneous oxidative stress and toxicity in Swiss albino mice. , 2008, Pharmacology & toxicology.
[34] J. Vishwanatha,et al. 4-Hydroxynonenal Induces G2/M Phase Cell Cycle Arrest by Activation of the Ataxia Telangiectasia Mutated and Rad3-related Protein (ATR)/Checkpoint Kinase 1 (Chk1) Signaling Pathway* , 2013, The Journal of Biological Chemistry.
[35] M. Suematsu,et al. 4-hydroxy-2-nonenal protects against cardiac ischemia-reperfusion injury via the Nrf2-dependent pathway. , 2010, Journal of molecular and cellular cardiology.
[36] H. Forman,et al. Structure, function, and post-translational regulation of the catalytic and modifier subunits of glutamate cysteine ligase. , 2009, Molecular aspects of medicine.
[37] G. Ansari,et al. Involvement of Lipid Peroxidation-Derived Aldehyde–protein Adducts in Autoimmunity Mediated by Trichloroethene , 2007, Journal of toxicology and environmental health. Part A.
[38] P. Reddanna,et al. Effect of 15-lipoxygenase metabolites, 15-(S)-HPETE and 15-(S)-HETE on chronic myelogenous leukemia cell line K-562: reactive oxygen species (ROS) mediate caspase-dependent apoptosis. , 2007, Biochemical pharmacology.
[39] L. Marnett. Oxy radicals, lipid peroxidation and DNA damage. , 2002, Toxicology.
[40] H. Forman,et al. Shp-1 Inhibition by 4-hydroxynonenal Activates Jun N-terminal Kinase and Glutamate Cysteine Ligase , 2022 .
[41] N. Žarković. 4-hydroxynonenal as a bioactive marker of pathophysiological processes. , 2003, Molecular aspects of medicine.
[42] E. Albano. Role of Adaptive Immunity in Alcoholic Liver Disease , 2011, International journal of hepatology.
[43] L. Trombetta,et al. The effects of the wood preservative copper dimethyldithiocarbamate in the hippocampus of maternal and newborn Long-Evans rats. , 2007, Toxicology letters.
[44] P. Mecocci,et al. Biomarkers of oxidative and nitrosative damage in Alzheimer's disease and mild cognitive impairment , 2009, Ageing Research Reviews.
[45] D. Petersen,et al. Covalent modification of amino acid nucleophiles by the lipid peroxidation products 4-hydroxy-2-nonenal and 4-oxo-2-nonenal. , 2002, Chemical research in toxicology.
[46] D. Gołębiowska,et al. Magnesium Can Protect against Vanadium-Induced Lipid Peroxidation in the Hepatic Tissue , 2013, Oxidative medicine and cellular longevity.
[47] Hao Wang,et al. DNA cross‐link induced by trans‐4‐hydroxynonenal , 2010, Environmental and molecular mutagenesis.
[48] T. Becker,et al. Synergistic DNA damaging effects of malondialdehyde/Cu(II) in PM2 DNA and in human fibroblasts. , 1998, Toxicology letters.
[49] Hee-Sun Kim,et al. Simvastatin prevents oxygen and glucose deprivation/reoxygenation‐induced death of cortical neurons by reducing the production and toxicity of 4‐hydroxy‐2E‐nonenal , 2006, Journal of neurochemistry.
[50] W. Pryor. On the detection of lipid hydroperoxides in biological samples. , 1989, Free radical biology & medicine.
[51] J. Fessel,et al. The biochemistry of the isoprostane, neuroprostane, and isofuran Pathways of lipid peroxidation. , 2004, Brain pathology.
[52] M. Hecker,et al. On the mechanism of prostacyclin and thromboxane A2 biosynthesis. , 1989, The Journal of biological chemistry.
[53] R. Sinnhuber,et al. CHARACTERIZATION OF THE RED PIGMENT FORMED IN THE 2‐THIOBARBITURIC ACID DETERMINATION OF OXIDATIVE RANCIDITYa,b , 1958 .
[54] A. Hiroi,et al. 4‐hydroxy‐2‐nonenal upregulates and phosphorylates cytosolic phospholipase A2 in cultured Ra2 microglial cells via MAPK pathways , 2011, Neuropathology : official journal of the Japanese Society of Neuropathology.
[55] M. Carrier,et al. Chronic treatment with N-acetyl-cystein delays cellular senescence in endothelial cells isolated from a subgroup of atherosclerotic patients , 2008, Mechanisms of Ageing and Development.
[56] M. Nazıroğlu,et al. N-Acetylcysteine Attenuates Copper Overload-Induced Oxidative Injury in Brain of Rat , 2012, Biological Trace Element Research.
[57] Hongqiao Zhang,et al. Submicromolar concentrations of 4-hydroxynonenal induce glutamate cysteine ligase expression in HBE1 cells , 2007, Redox report : communications in free radical research.
[58] J. Parrado,et al. Induced mono-(ADP)-ribosylation of rat liver cytosolic proteins by lipid peroxidant agents. , 1999, Free radical biology & medicine.
[59] Antonio Ayala,et al. Effect of aging and oxidative stress on elongation factor-2 in hypothalamus and hypophysis , 2011, Mechanisms of Ageing and Development.
[60] T. Tseng,et al. In vivo protective effect of protocatechuic acid on tert-butyl hydroperoxide-induced rat hepatotoxicity. , 2002, Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association.
[61] G. Bellomo,et al. HNE interacts directly with JNK isoforms in human hepatic stellate cells. , 1998, The Journal of clinical investigation.
[62] J. Morrow,et al. Urinary Prostaglandin F2α Is Generated from the Isoprostane Pathway and Not the Cyclooxygenase in Humans* , 2007, Journal of Biological Chemistry.
[63] L. Marnett,et al. Cyclooxygenase-2, malondialdehyde and pyrimidopurinone adducts of deoxyguanosine in human colon cells. , 2001, Carcinogenesis.
[64] M. Portero-Otín,et al. Proteins in Human Brain Cortex Are Modified by Oxidation, Glycoxidation, and Lipoxidation , 2005, Journal of Biological Chemistry.
[65] P. Eckl. Genotoxicity of HNE. , 2003, Molecular aspects of medicine.
[66] D. Petersen,et al. Inhibition of hydrogen peroxide signaling by 4-hydroxynonenal due to differential regulation of Akt1 and Akt2 contributes to decreases in cell survival and proliferation in hepatocellular carcinoma cells. , 2012, Free radical biology & medicine.
[67] Y. Awasthi,et al. Self-regulatory role of 4-hydroxynonenal in signaling for stress-induced programmed cell death. , 2008, Free radical biology & medicine.
[68] M. Tabaton,et al. Oxidative Stress Induces Increase in Intracellular Amyloid β-Protein Production and Selective Activation of βI and βII PKCs in NT2 Cells , 2000 .
[69] M. Indira,et al. Impact of co administration of selenium and quinolinic acid in the rat's brain , 2009, Brain Research.
[70] E. Hall,et al. Administration of the Nrf2-ARE activators sulforaphane and carnosic acid attenuates 4-hydroxy-2-nonenal-induced mitochondrial dysfunction ex vivo. , 2013, Free radical biology & medicine.
[71] H. Afif,et al. Alterations of metabolic activity in human osteoarthritic osteoblasts by lipid peroxidation end product 4-hydroxynonenal , 2006, Arthritis research & therapy.
[72] T. Strandberg,et al. The roles of senescence and telomere shortening in cardiovascular disease , 2013, Nature Reviews Cardiology.
[73] Y. Kawamoto,et al. 4-Hydroxy-2-nonenal is a powerful endogenous inhibitor of endothelial response. , 2001, Biochemical and biophysical research communications.
[74] M. Maggiora,et al. Experimental researches on the role of phosphoinositide‐specific phospholipase C in 4‐hydroxynonenal induced exocytosis , 2003, Cell biochemistry and function.
[75] D. Slatter,et al. Identification of a New Cross-link and Unique Histidine Adduct from Bovine Serum Albumin Incubated with Malondialdehyde* , 2004, Journal of Biological Chemistry.
[76] C. Binder,et al. The innate immune response to products of phospholipid peroxidation☆ , 2012, Biochimica et biophysica acta.
[77] H. Forman,et al. HNE--signaling pathways leading to its elimination. , 2003, Molecular aspects of medicine.
[78] M. Mohsin,et al. Significantly increased levels of serum malonaldehyde in type 2 diabetics with myocardial infarction , 2010, International journal of diabetes in developing countries.
[79] G. Poli,et al. 4-Hydroxynonenal-protein adducts: A reliable biomarker of lipid oxidation in liver diseases. , 2008, Molecular aspects of medicine.
[80] R. Browne,et al. HPLC analysis of lipid-derived polyunsaturated fatty acid peroxidation products in oxidatively modified human plasma. , 2000, Clinical chemistry.
[81] L. Klassen,et al. Increased immunogenicity to P815 cells modified with malondialdehyde and acetaldehyde. , 2008, International immunopharmacology.
[82] J. Morrow,et al. Human Biochemistry of the Isoprostane Pathway* , 2008, Journal of Biological Chemistry.
[83] J. Pincemail,et al. [Oxidative stress]. , 2007, Revue medicale de Liege.
[84] L. Marnett. Lipid peroxidation-DNA damage by malondialdehyde. , 1999, Mutation research.
[85] Michael J Morgan,et al. Crosstalk of reactive oxygen species and NF-κB signaling , 2011, Cell Research.
[86] P. Zimniak. Relationship of electrophilic stress to aging. , 2011, Free radical biology & medicine.
[87] J. Freedman,et al. Activation of metallothionein transcription by 4‐hydroxynonenal , 2010, Journal of biochemical and molecular toxicology.
[88] N. Ridgway,et al. Biochemistry of lipids, lipoproteins and membranes , 2015 .
[89] A. Brash,et al. Two Distinct Pathways of Formation of 4-Hydroxynonenal , 2001, The Journal of Biological Chemistry.
[90] K. Uchida,et al. 4-hydroxy-2-nonenal as a COX-2 inducer. , 2003, Molecular aspects of medicine.
[91] Ying Huang,et al. Anti-oxidative stress regulator NF-E2-related factor 2 mediates the adaptive induction of antioxidant and detoxifying enzymes by lipid peroxidation metabolite 4-hydroxynonenal , 2012, Cell & Bioscience.
[92] Amrita Ghosh,et al. Serum malondialdehyde level: Surrogate stress marker in the Sikkimese diabetics , 2011, Journal of natural science, biology, and medicine.
[93] M. Mattson,et al. The Lipid Peroxidation Product 4‐Hydroxy‐2,3‐Nonenal Increases AP‐1‐Binding Activity Through Caspase Activation in Neurons , 2000, Journal of neurochemistry.
[94] R. Roy,et al. Repair kinetics of acrolein- and (E)-4-hydroxy-2-nonenal-derived DNA adducts in human colon cell extracts. , 2013, Mutation research.
[95] D. C. Kim,et al. Hepatoprotective effect of pinoresinol on carbon tetrachloride-induced hepatic damage in mice. , 2010, Journal of pharmacological sciences.
[96] D. Laskin,et al. The generation of 4-hydroxynonenal, an electrophilic lipid peroxidation end product, in rabbit cornea organ cultures treated with UVB light and nitrogen mustard. , 2013, Toxicology and applied pharmacology.
[97] E. Sahin,et al. Axis of ageing: telomeres, p53 and mitochondria , 2012, Nature Reviews Molecular Cell Biology.
[98] H. Raza,et al. Alterations in mitochondrial respiratory functions, redox metabolism and apoptosis by oxidant 4-hydroxynonenal and antioxidants curcumin and melatonin in PC12 cells. , 2008, Toxicology and applied pharmacology.
[99] A. Kong,et al. Modulation of keratinocyte expression of antioxidants by 4-hydroxynonenal, a lipid peroxidation end product. , 2014, Toxicology and applied pharmacology.
[100] Jagadeesan Nair,et al. Lipid peroxidation-induced DNA damage in cancer-prone inflammatory diseases: a review of published adduct types and levels in humans. , 2007, Free radical biology & medicine.
[101] A. Agarwal,et al. A red palm oil diet can reduce the effects of oxidative stress on rat spermatozoa , 2012, Andrologia.
[102] Dongping Liu,et al. p53, oxidative stress, and aging. , 2011, Antioxidants & redox signaling.
[103] D. Butterfield,et al. 4-Hydroxy-2-nonenal, a reactive product of lipid peroxidation, and neurodegenerative diseases: a toxic combination illuminated by redox proteomics studies. , 2012, Antioxidants & redox signaling.
[104] S. Mukherjee,et al. Plasma levels of lipid peroxides in patients with Parkinson's disease. , 2009, European review for medical and pharmacological sciences.
[105] M. Giera,et al. Recent Advancements in the LC- and GC-Based Analysis of Malondialdehyde (MDA): A Brief Overview , 2012, Chromatographia.
[106] A. Ayala,et al. Do the serum oxidative stress biomarkers provide a reasonable index of the general oxidative stress status? , 2004, Biochimica et biophysica acta.
[107] G. Shulman,et al. Diacylglycerol activation of protein kinase Cε and hepatic insulin resistance. , 2012, Cell metabolism.
[108] H. Esterbauer,et al. Detection of 4-hydroxynonenal as a product of lipid peroxidation in native Ehrlich ascites tumor cells. , 1984, Biochimica et biophysica acta.
[109] A. Lewiński,et al. Protective effects of GH and IGF-I against iron-induced lipid peroxidation in vivo. , 2008, Experimental and toxicologic pathology : official journal of the Gesellschaft fur Toxikologische Pathologie.
[110] J. Morrow,et al. Formation of Prostaglandins E2 and D2 via the Isoprostane Pathway , 2003, Journal of Biological Chemistry.
[111] J. Choi,et al. Protective effects of hyperoside against carbon tetrachloride-induced liver damage in mice. , 2011, Journal of natural products.
[112] P. Casez,et al. The Role of Oxidative Stress in Amyotrophic Lateral Sclerosis and Parkinson’s Disease , 2010, Neurochemical Research.
[113] G. Mann,et al. Effects of 4-hydroxynonenal on vascular endothelial and smooth muscle cell redox signaling and function in health and disease☆ , 2013, Redox biology.
[114] A. Banach,et al. Combined effect of vanadium(V) and chromium(III) on lipid peroxidation in liver and kidney of rats. , 2006, Chemico-biological interactions.
[115] N. Moldovan,et al. Oxygen free radicals and redox biology of organelles , 2004, Histochemistry and Cell Biology.
[116] M. Cronin,et al. Metals, toxicity and oxidative stress. , 2005, Current medicinal chemistry.
[117] K. Pandey,et al. Markers of Oxidative Stress during Diabetes Mellitus , 2013, Journal of biomarkers.
[118] R. Vatsyayan,et al. 4-Hydroxynonenal induces p53-mediated apoptosis in retinal pigment epithelial cells. , 2008, Archives of biochemistry and biophysics.
[119] K. Dhingra,et al. Lipid peroxidation-induced putative malondialdehyde-DNA adducts in human breast tissues. , 1996, Cancer epidemiology, biomarkers & prevention : a publication of the American Association for Cancer Research, cosponsored by the American Society of Preventive Oncology.
[120] M. Dianzani,et al. 4-hydroxynonenal and regulation of cell cycle: effects on the pRb/E2F pathway. , 2004, Free radical biology & medicine.
[121] J. Galligan,et al. Overview of lipid peroxidation products and hepatic protein modification in alcoholic liver disease. , 2011, Chemico-biological interactions.
[122] J. Franklin. Redox regulation of the intrinsic pathway in neuronal apoptosis. , 2011, Antioxidants & redox signaling.
[123] C. Kim,et al. HNE-induced 5-LO expression is regulated by NF-{kappa}B/ERK and Sp1/p38 MAPK pathways via EGF receptor in murine macrophages. , 2010, Cardiovascular research.
[124] Q. Shi,et al. Production of lipid peroxidation products in osteoarthritic tissues: new evidence linking 4-hydroxynonenal to cartilage degradation. , 2006, Arthritis and rheumatism.
[125] S. Elmore. Apoptosis: A Review of Programmed Cell Death , 2007, Toxicologic pathology.
[126] Richard J. Lewis,et al. Hazardous chemicals desk reference , 1987 .
[127] H. Esterbauer,et al. Detection of malonaldehyde by high-performance liquid chromatography. , 1984, Methods in enzymology.
[128] A. Nègre-Salvayre,et al. Advanced lipid peroxidation end products in oxidative damage to proteins. Potential role in diseases and therapeutic prospects for the inhibitors , 2008, British journal of pharmacology.
[129] Federica Briatore,et al. 4-Hydroxynonenal and PPARgamma ligands affect proliferation, differentiation, and apoptosis in colon cancer cells. , 2007, Free radical biology & medicine.
[130] L. Sanders,et al. Oxidative damage to macromolecules in human Parkinson disease and the rotenone model. , 2013, Free radical biology & medicine.
[131] N. Žarković,et al. Reactive aldehydes – second messengers of free radicals in diabetes mellitus , 2013, Free radical research.
[132] Shu-Min Lin,et al. Human neutrophil-derived elastase induces airway smooth muscle cell proliferation. , 2004, Life sciences.
[133] Effects of (15S)‐hydroperoxyeicosatetraenoic acid and (15S)‐hydroxyeicosatetraenoic acid on the acute‐ lymphoblastic‐leukaemia cell line Jurkat: activation of the Fas‐mediated death pathway , 2009, Biotechnology and applied biochemistry.
[134] J. M. Suh,et al. PPARγ signaling and metabolism: the good, the bad and the future , 2013, Nature Medicine.
[135] Y. Okamoto,et al. Sphingosine‐1‐phosphate signaling in physiology and diseases , 2012, BioFactors.
[136] B. Fromenty,et al. Carbon tetrachloride-mediated lipid peroxidation induces early mitochondrial alterations in mouse liver , 2012, Laboratory Investigation.
[137] B. Halliwell,et al. Deciphering the mechanism of HNE-induced apoptosis in cultured murine cortical neurons: Transcriptional responses and cellular pathways , 2007, Neuropharmacology.
[138] T. Young,et al. Prevention of Arterial Stiffening by Using Low-Dose Atorvastatin in Diabetes Is Associated with Decreased Malondialdehyde , 2014, PloS one.
[139] S. Menini,et al. Malondialdehyde, a lipoperoxidation-derived aldehyde, can bring about secondary oxidative damage to proteins. , 2004, The journals of gerontology. Series A, Biological sciences and medical sciences.
[140] L. Marnett. Inflammation and Cancer: Chemical Approaches to Mechanisms, Imaging, and Treatment , 2012, The Journal of organic chemistry.
[141] Yusuf A. Hannun,et al. Principles of bioactive lipid signalling: lessons from sphingolipids , 2008, Nature Reviews Molecular Cell Biology.
[142] C. Winterbourn. Biological reactivity and biomarkers of the neutrophil oxidant, hypochlorous acid. , 2002, Toxicology.
[143] Nicoletta Pellegrini,et al. A review of recent studies on malondialdehyde as toxic molecule and biological marker of oxidative stress. , 2005, Nutrition, metabolism, and cardiovascular diseases : NMCD.
[144] Guolin Li,et al. Association between age-related decline of kidney function and plasma malondialdehyde. , 2012, Rejuvenation research.
[145] C. Toaldo,et al. The "Two-Faced" Effects of Reactive Oxygen Species and the Lipid Peroxidation Product 4-Hydroxynonenal in the Hallmarks of Cancer , 2010, Cancers.
[146] M. Davies,et al. Singlet-oxygen-mediated amino acid and protein oxidation: formation of tryptophan peroxides and decomposition products. , 2009, Free radical biology & medicine.
[147] Jinsong Liu,et al. Intrinsic oxidative stress in cancer cells: a biochemical basis for therapeutic selectivity , 2004, Cancer Chemotherapy and Pharmacology.
[148] H. Yin,et al. Free radical lipid peroxidation: mechanisms and analysis. , 2011, Chemical reviews.
[149] P. de la Torre,et al. Sp1 and Sp3 Transcription Factors Mediate Malondialdehyde-induced Collagen α1(I) Gene Expression in Cultured Hepatic Stellate Cells* , 2002, The Journal of Biological Chemistry.
[150] A. Yalçın,et al. Increased erythrocyte susceptibility to lipid peroxidation in human Parkinson's disease , 1988, Neuroscience Letters.
[151] Masaki Tanito,et al. Upregulation of thioredoxin system via Nrf2-antioxidant responsive element pathway in adaptive-retinal neuroprotection in vivo and in vitro. , 2007, Free radical biology & medicine.
[152] A. Ayala,et al. Adduct formation of 4-hydroxynonenal and malondialdehyde with elongation factor-2 in vitro and in vivo. , 2009, Free radical biology & medicine.
[153] L. Migliore,et al. Mutation Research / Fundamental and Molecular Mechanisms of Mutagenesis , 2014 .
[154] D. Butterfield,et al. Roles of 3-nitrotyrosine- and 4-hydroxynonenal-modified brain proteins in the progression and pathogenesis of Alzheimer's disease , 2011, Free radical research.
[155] J. I. Rossato,et al. Ebselen blocks the quinolinic acid-induced production of thiobarbituric acid reactive species but does not prevent the behavioral alterations produced by intra-striatal quinolinic acid administration in the rat , 2002, Neuroscience Letters.
[156] Keiichi Sasaki,et al. Literature review of the role of hydroxyl radicals in chemically-induced mutagenicity and carcinogenicity for the risk assessment of a disinfection system utilizing photolysis of hydrogen peroxide , 2012, Journal of clinical biochemistry and nutrition.
[157] A. Ścibior,et al. Lipid peroxidation in the kidney of rats treated with V and/or Mg in drinking water , 2010, Journal of applied toxicology : JAT.
[158] L. Marnett,et al. Malondialdehyde, a Product of Lipid Peroxidation, Is Mutagenic in Human Cells* , 2003, Journal of Biological Chemistry.
[159] A. Brash,et al. Intermolecular peroxyl radical reactions during autoxidation of hydroxy and hydroperoxy arachidonic acids generate a novel series of epoxidized products. , 2008, Chemical research in toxicology.
[160] R. Locksley,et al. The TNF and TNF Receptor Superfamilies Integrating Mammalian Biology , 2001, Cell.
[161] P. Kinnunen,et al. Protein-oxidized phospholipid interactions in cellular signaling for cell death: from biophysics to clinical correlations. , 2012, Biochimica et biophysica acta.
[162] A. Benedetti,et al. Studies on the mechanism of formation of 4-hydroxynonenal during microsomal lipid peroxidation. , 1986, Biochimica et biophysica acta.
[163] L. Huc,et al. Cell death and diseases related to oxidative stress:4-hydroxynonenal (HNE) in the balance , 2013, Cell Death and Differentiation.
[164] Hongqiao Zhang,et al. 4-hydroxynonenal induces glutamate cysteine ligase through JNK in HBE1 cells. , 2002, Free radical biology & medicine.
[165] L. Marnett,et al. Induction of frameshift and base pair substitution mutations by the major DNA adduct of the endogenous carcinogen malondialdehyde , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[166] M. Hernandez,et al. 4-Hydroxynonenal, a product of oxidative stress, leads to an antioxidant response in optic nerve head astrocytes. , 2006, Experimental eye research.
[167] K. Kharbanda,et al. Effect of malondialdehyde-acetaldehyde-protein adducts on the protein kinase C-dependent secretion of urokinase-type plasminogen activator in hepatic stellate cells. , 2002, Biochemical pharmacology.
[168] M. Kazanietz,et al. Chimaerins: GAPs that bridge diacylglycerol signalling and the small G-protein Rac. , 2007, The Biochemical journal.
[169] L. Klassen,et al. Adduction of soluble proteins with malondialdehyde-acetaldehyde (MAA) induces antibody production and enhances T-cell proliferation. , 2002, Alcoholism, clinical and experimental research.
[170] S. Lightfoot,et al. 4-hydroxy-2-nonenal mediates genotoxicity and bystander effects caused by Enterococcus faecalis-infected macrophages. , 2012, Gastroenterology.
[171] T. Deramaudt,et al. Regulation of oxidative stress by Nrf2 in the pathophysiology of infectious diseases. , 2013, Medecine et maladies infectieuses.
[172] H. Esterbauer,et al. Activation of phosphoinositide‐specific phospholipase C of rat neutrophils by the chemotactic aldehydes 4‐hydroxy‐2,3‐trans‐nonenal and 4‐hydroxy‐2,3‐trans‐octenal , 1994, Cell biochemistry and function.
[173] M. Tang,et al. Formation of trans-4-hydroxy-2-nonenal- and other enal-derived cyclic DNA adducts from ω-3 and ω-6 polyunsaturated fatty acids and their roles in DNA repair and human p53 gene mutation , 2003 .
[174] J. Pedraza-Chaverri,et al. Quinolinic Acid: An Endogenous Neurotoxin with Multiple Targets , 2013, Oxidative medicine and cellular longevity.
[175] G. Cohen,et al. Signaling and cytotoxic functions of 4-hydroxyalkenals. , 2010, American journal of physiology. Endocrinology and metabolism.
[176] V. Fazio,et al. Inhibition of c-myc expression induced by 4-hydroxynonenal, a product of lipid peroxidation, in the HL-60 human leukemic cell line. , 1994, Biochemical and biophysical research communications.
[177] J. Parrado,et al. Effect of Oxidative Stress, Produced by Cumene Hydroperoxide, on the Various Steps of Protein Synthesis , 1996, The Journal of Biological Chemistry.
[178] Songtao Li,et al. Inhibition of NF-κB activation by 4-hydroxynonenal contributes to liver injury in a mouse model of alcoholic liver disease. , 2012, The American journal of pathology.
[179] G. Migliardi,et al. Inhibition of erythropoiesis in malaria anemia: role of hemozoin and hemozoin-generated 4-hydroxynonenal. , 2010, Blood.
[180] A. Camacho,et al. In vivo hydroxyl radical formation after quinolinic acid infusion into rat corpus striatum , 2001, Neuroreport.
[181] Garret A. FitzGerald,et al. Prostaglandins and Inflammation , 2011, Arteriosclerosis, thrombosis, and vascular biology.
[182] L. Marnett,et al. IκB Kinase, a Molecular Target for Inhibition by 4-Hydroxy-2-nonenal* , 2001, The Journal of Biological Chemistry.
[183] Cheorl-Ho Kim,et al. Age-related differential growth rate and response to 4-hydroxynonenal in mouse aortic smooth muscle cells. , 2006, International journal of molecular medicine.
[184] A. Castaño,et al. Effects of aging on the various steps of protein synthesis: fragmentation of elongation factor 2. , 1999, Free radical biology & medicine.
[185] Peng Huang,et al. Targeting cancer cells by ROS-mediated mechanisms: a radical therapeutic approach? , 2009, Nature Reviews Drug Discovery.
[186] Kehkashan Parveen,et al. Pycnogenol prevents potassium dichromate K2Cr2O7-induced oxidative damage and nephrotoxicity in rats. , 2009, Chemico-biological interactions.
[187] A. Boveris,et al. The acute toxicity of iron and copper: biomolecule oxidation and oxidative damage in rat liver. , 2012, Journal of inorganic biochemistry.
[188] K. Amudha,et al. Beneficial role of naringin, a flavanoid on nickel induced nephrotoxicity in rats. , 2011, Chemico-biological interactions.
[189] Takashi Suzuki,et al. Convergence of the 5-LOX and COX-2 pathways: heme-catalyzed cleavage of the 5S-HETE-derived di-endoperoxide into aldehyde fragments , 2009, Journal of Lipid Research.
[190] H. Esterbauer,et al. [38] Detection of malonaldehyde by high-performance liquid chromatography , 1984 .
[191] Gangduo Wang,et al. Differential oxidative modification of proteins in MRL+/+ and MRL/lpr mice: Increased formation of lipid peroxidation-derived aldehyde-protein adducts may contribute to accelerated onset of autoimmune response , 2012, Free radical research.
[192] H. Esterbauer,et al. Effects of the lipid peroxidation product 4-hydroxynonenal on the aggregation of human platelets. , 1987, Chemico-biological interactions.
[193] A. Bhatnagar,et al. Unsaturated lipid peroxidation-derived aldehydes activate autophagy in vascular smooth-muscle cells. , 2008, The Biochemical journal.
[194] A. Ayala,et al. "In vitro" effect of lipid peroxidation metabolites on elongation factor-2. , 2006, Biochimica et biophysica acta.
[195] P. Olive,et al. Endogenous DNA breaks: γH2AX and the role of telomeres , 2009, Aging.
[196] H. Esterbauer,et al. Determination of aldehydic lipid peroxidation products: malonaldehyde and 4-hydroxynonenal. , 1990, Methods in enzymology.
[197] H. Jelinek,et al. Erythrocyte oxidative stress in clinical management of diabetes and its cardiovascular complications , 2007, British journal of biomedical science.
[198] C. Toaldo,et al. The Role of PPAR Ligands in Controlling Growth-Related Gene Expression and their Interaction with Lipoperoxidation Products , 2008, PPAR research.
[199] S. Amin,et al. Repair kinetics of trans-4-hydroxynonenal-induced cyclic 1,N2-propanodeoxyguanine DNA adducts by human cell nuclear extracts. , 2004, Biochemistry.
[200] J. Hort,et al. Guest Editor: B. O. Popescu Blood markers of oxidative stress in Alzheimer’s disease , 2012 .
[201] Peng Huang,et al. ROS stress in cancer cells and therapeutic implications. , 2004, Drug resistance updates : reviews and commentaries in antimicrobial and anticancer chemotherapy.
[202] J. Kopitz,et al. Effects of lipid peroxidation products on lipofuscinogenesis and autophagy in human retinal pigment epithelial cells. , 2010, Experimental eye research.
[203] R. Nitrini,et al. Peripheral oxidative stress biomarkers in mild cognitive impairment and Alzheimer's disease. , 2011, Journal of Alzheimer's disease : JAD.
[204] D. Kotyzová,et al. Effect of melatonin, curcumin, quercetin, and resveratrol on acute ferric nitrilotriacetate (Fe-NTA)-induced renal oxidative damage in rats , 2008, Human & experimental toxicology.
[205] Bai-Hsiun Chen,et al. Effects of acute manganese chloride exposure on lipid peroxidation and alteration of trace metals in rat brain , 2006, Biological Trace Element Research.
[206] Eun‐Jin Kim,et al. Protective effect of aqueous extract of Perilla frutescens on tert-butyl hydroperoxide-induced oxidative hepatotoxicity in rats. , 2007, Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association.
[207] G. Chazot,et al. Peripheral Blood Markers of Oxidative Stress in Parkinson’s Disease , 2007, European Neurology.
[208] J. D. Di Battista,et al. Differential regulation of cyclooxygenase‐2 and inducible nitric oxide synthase by 4‐hydroxynonenal in human osteoarthritic chondrocytes through ATF‐2/CREB‐1 transactivation and concomitant inhibition of NF‐κB signaling cascade , 2007, Journal of cellular biochemistry.
[209] Takao Ito,et al. Adaptive HNE-Nrf2-HO-1 pathway against oxidative stress is associated with acute gastric mucosal lesions. , 2008, American journal of physiology. Gastrointestinal and liver physiology.
[210] A. Masamune,et al. 4-hydroxy-2, 3-nonenal activates activator protein-1 and mitogen-activated protein kinases in rat pancreatic stellate cells. , 2004, World journal of gastroenterology.
[211] H. Esterbauer,et al. Chemistry and biochemistry of 4-hydroxynonenal, malonaldehyde and related aldehydes. , 1991, Free radical biology & medicine.
[212] K. Vousden,et al. p53, ROS and senescence in the control of aging , 2010, Aging.
[213] J. Chiu,et al. Redox control of cell proliferation. , 2012, Trends in cell biology.
[214] Federica Briatore,et al. 4-Hydroxynonenal modulation of p53 family gene expression in the SK-N-BE neuroblastoma cell line. , 2005, Free radical biology & medicine.
[215] M. Selley. (E)-4-hydroxy-2-nonenal may be involved in the pathogenesis of Parkinson's disease. , 1998, Free radical biology & medicine.
[216] A. Mally,et al. Glutathione conjugates of 4-hydroxy-2(E)-nonenal as biomarkers of hepatic oxidative stress-induced lipid peroxidation in rats. , 2005, Free radical biology & medicine.
[217] S. Toyokuni,et al. Serum 4-hydroxy-2-nonenal-modified albumin is elevated in patients with type 2 diabetes mellitus. , 2000, Antioxidants & redox signaling.
[218] In-kyu Lee,et al. The Role of Nrf2: Adipocyte Differentiation, Obesity, and Insulin Resistance , 2013, Oxidative medicine and cellular longevity.
[219] G. Kaur,et al. Tertiary-butyl hydroperoxide induced oxidative stress and male reproductive activity in mice: role of transcription factor NF-kappaB and testicular antioxidant enzymes. , 2006, Reproductive toxicology.
[220] K. Honn,et al. The thromboxane synthase and receptor signaling pathway in cancer: an emerging paradigm in cancer progression and metastasis , 2011, Cancer and Metastasis Reviews.
[221] A. Ayala,et al. ‘In vitro’ Protective Effect of a Hydrophilic Vitamin E Analogue on the Decrease in Levels of Elongation Factor 2 in Conditions of Oxidative Stress , 2007, Gerontology.
[222] K. Ramana,et al. Aldose reductase regulates vascular smooth muscle cell proliferation by modulating G1/S phase transition of cell cycle. , 2010, Endocrinology.
[223] E. Farombi,et al. 4-Hydroxynonenal induces mitochondrial-mediated apoptosis and oxidative stress in SH-SY5Y human neuronal cells. , 2012, Basic & clinical pharmacology & toxicology.
[224] V. Castranova,et al. Antioxidant balance and free radical generation in vitamin e-deficient mice after dermal exposure to cumene hydroperoxide. , 2002, Chemical research in toxicology.
[225] E. Taioli,et al. Effect of vitamin levels on biomarkers of exposure and oxidative damage-the EXPAH study. , 2009, Mutation research.
[226] K. Channon,et al. Evaluating Oxidative Stress in Human Cardiovascular Disease: Methodological Aspects and Considerations , 2012, Current medicinal chemistry.
[227] S. Brüsselbach,et al. Inhibition of D1, D2, and A-cyclin expression in HL-60 cells by the lipid peroxydation product 4-hydroxynonenal. , 1999, Free radical biology & medicine.
[228] A. Mahadevan,et al. Evaluation of Markers of Oxidative Stress, Antioxidant Function and Astrocytic Proliferation in the Striatum and Frontal Cortex of Parkinson’s Disease Brains , 2011, Neurochemical Research.
[229] S. Kalist,et al. Beneficial effect of hesperetin on cadmium induced oxidative stress in rats: an in vivo and in vitro study. , 2011, European review for medical and pharmacological sciences.
[230] D. Petersen,et al. 4-Hydroxynonenal Decreases Interleukin-6 Expression and Protein Production in Primary Rat Kupffer Cells by Inhibiting Nuclear Factor-κB Activation , 2002, Journal of Pharmacology and Experimental Therapeutics.
[231] Emma E Vincent,et al. Akt signalling in health and disease. , 2011, Cellular signalling.
[232] Lin Li,et al. The role of Sp1 and Sp3 in normal and cancer cell biology. , 2010, Annals of anatomy = Anatomischer Anzeiger : official organ of the Anatomische Gesellschaft.
[233] B. Bielski,et al. A study of the reactivity of HO2/O2- with unsaturated fatty acids. , 1983, The Journal of biological chemistry.
[234] H. Utsumi,et al. Hepatic reduction of carbamoyl-PROXYL in ferric nitrilotriacetate induced iron overloaded mice: an in vivo ESR study. , 2012, Biological & pharmaceutical bulletin.
[235] M. Cano,et al. In vitro and in vivo protection by melatonin against the decline of elongation factor‐2 caused by lipid peroxidation: preservation of protein synthesis , 2012, Journal of pineal research.
[236] D. Leibfritz,et al. Free radicals and antioxidants in normal physiological functions and human disease. , 2007, The international journal of biochemistry & cell biology.
[237] D. Petersen,et al. Immunohistochemical characterization of hepatic malondialdehyde and 4-hydroxynonenal modified proteins during early stages of ethanol-induced liver injury. , 2003, Alcoholism, clinical and experimental research.
[238] Valerie B. O’Donnell,et al. Molecular enzymology of lipoxygenases. , 2010, Archives of biochemistry and biophysics.
[239] M. Nitti,et al. Regulation of rat hepatocyte protein kinase C β isoenzymes by the lipid peroxidation product 4‐hydroxy‐2,3‐nonenal: A signaling pathway to modulate vesicular transport of glycoproteins , 1999, Hepatology.
[240] L. Frati,et al. Effect of 4-Hydroxynonenal on c-myc Expression , 1987, Toxicologic pathology.
[241] K. Rudolph,et al. The Role of Telomeres in Stem Cells and Cancer , 2013, Cell.
[242] B. Ames,et al. Biomarkers of oxidative stress study III. Effects of the nonsteroidal anti-inflammatory agents indomethacin and meclofenamic acid on measurements of oxidative products of lipids in CCl4 poisoning. , 2005, Free radical biology & medicine.
[243] E. Schauenstein. Autoxidation of polyunsaturated esters in water: chemical structure and biological activity of the products. , 1967, Journal of lipid research.
[244] Chu Chen,et al. Cyclooxygenase-2 in synaptic signaling. , 2008, Current pharmaceutical design.
[245] Robert W Sobol,et al. Mutation research/fundamental and molecular mechanisms of mutagenesis: special issue: DNA repair and genetic instability. , 2013, Mutation research.
[246] L. Klassen,et al. Malondialdehyde-acetaldehyde haptenated protein binds macrophage scavenger receptor(s) and induces lysosomal damage. , 2004, International immunopharmacology.
[247] L. Hunter,et al. Protein carbonylation in a murine model for early alcoholic liver disease. , 2012, Chemical research in toxicology.
[248] Outi Kummu,et al. Specific recognition of malondialdehyde and malondialdehyde acetaldehyde adducts on oxidized LDL and apoptotic cells by complement anaphylatoxin C3a. , 2011, Free radical biology & medicine.
[249] James R. Roede,et al. Posttranslational modification and regulation of glutamate-cysteine ligase by the α,β-unsaturated aldehyde 4-hydroxy-2-nonenal. , 2011, Free radical biology & medicine.
[250] E. Pretorius,et al. Hydroxyl radical-modified fibrinogen as a marker of thrombosis: the role of iron , 2012, Hematology.
[251] N. Zeghal,et al. Silymarin, a natural antioxidant, protects cerebral cortex against manganese-induced neurotoxicity in adult rats , 2010, BioMetals.
[252] I. Ferrer,et al. Human brain cortex: mitochondrial oxidative damage and adaptive response in Parkinson disease and in dementia with Lewy bodies. , 2009, Free radical biology & medicine.
[253] H. Bartsch,et al. High urinary excretion of lipid peroxidation-derived DNA damage in patients with cancer-prone liver diseases. , 2010, Mutation research.
[254] J. Kinsella,et al. Initiation of lipid peroxidation in biological systems. , 1987, Critical reviews in food science and nutrition.
[255] G. Mann,et al. Modulation of antioxidant gene expression by 4-hydroxynonenal: atheroprotective role of the Nrf2/ARE transcription pathway , 2007, Redox report : communications in free radical research.
[256] C. Spickett,et al. Chemistry of phospholipid oxidation. , 2012, Biochimica et biophysica acta.
[257] G. Poli,et al. 4-Hydroxynonenal and cholesterol oxidation products in atherosclerosis. , 2005, Molecular nutrition & food research.
[258] N. Arnal,et al. Peripheral markers in neurodegenerative patients and their first-degree relatives , 2012, Journal of the Neurological Sciences.
[259] T. Grune,et al. Intracellular metabolism of 4-hydroxynonenal. , 2003, Molecular aspects of medicine.
[260] A. Ariel,et al. 15-Lipoxygenases in cancer: a double-edged sword? , 2013, Prostaglandins & other lipid mediators.
[261] D. Petersen,et al. Hepatic stellate cells lack AP-1 responsiveness to electrophiles and phorbol 12-myristate-13-acetate. , 2004, Biochemical and biophysical research communications.
[262] W. Pryor,et al. Autoxidation of polyunsaturated fatty acids. Part I. Effect of ozone on the autoxidation of neat methyl linoleate and methyl linolenate. , 1976, Archives of environmental health.
[263] C. Albright,et al. Breast cancer cell-targeted oxidative stress: enhancement of cancer cell uptake of conjugated linoleic acid, activation of p53, and inhibition of proliferation. , 2005, Experimental and molecular pathology.
[264] 4‐Hydroxynonenal: A membrane lipid oxidation product of medicinal interest , 2008, Medicinal research reviews.
[265] A. Pradeep,et al. 4-Hydroxy-2-nonenal, an oxidative stress marker in crevicular fluid and serum in type 2 diabetes with chronic periodontitis , 2013, Contemporary clinical dentistry.
[266] B. Glass,et al. Melatonin and 6‐hydroxymelatonin protect against iron‐induced neurotoxicity , 2006, Journal of neurochemistry.
[267] Csaba Szabó,et al. Peroxynitrite: biochemistry, pathophysiology and development of therapeutics , 2007, Nature Reviews Drug Discovery.
[268] R. Schaur,et al. Basic aspects of the biochemical reactivity of 4-hydroxynonenal. , 2003, Molecular aspects of medicine.
[269] A. Girotti. Lipid hydroperoxide generation, turnover, and effector action in biological systems. , 1998, Journal of lipid research.
[270] T. Miethke,et al. Chlamydia pneumoniae activates IKK/I kappa B-mediated signaling, which is inhibited by 4-HNE and following primary exposure. , 2002, Atherosclerosis.
[271] E. Menegatti,et al. 4-hydroxynonenal, a lipid peroxidation product of dietary polyunsaturated fatty acids, has anticarcinogenic properties in colon carcinoma cell lines through the inhibition of telomerase activity. , 2010, The Journal of nutritional biochemistry.
[272] H. Esterbauer,et al. Possible mutagens derived from lipids and lipid precursors. , 1990, Mutation research.
[273] K. Iles,et al. Mechanisms of glutamate cysteine ligase (GCL) induction by 4-hydroxynonenal. , 2005, Free radical biology & medicine.
[274] X. Lei,et al. Malondialdehyde regulates glucose-stimulated insulin secretion in murine islets via TCF7L2-dependent Wnt signaling pathway , 2014, Molecular and Cellular Endocrinology.
[275] R. Vatsyayan,et al. Mechanisms of 4-hydroxy-2-nonenal induced pro- and anti-apoptotic signaling. , 2010, Biochemistry.
[276] N. Kaiser,et al. Role of Lipid Peroxidation and PPAR-δ in Amplifying Glucose-Stimulated Insulin Secretion , 2011, Diabetes.
[277] Ying Chen,et al. Molecular mechanisms of ALDH3A1-mediated cellular protection against 4-hydroxy-2-nonenal. , 2012, Free radical biology & medicine.
[278] R. Brigelius-Flohé,et al. Glutathione peroxidases. , 2013, Biochimica et biophysica acta.
[279] Stephen K Fisher,et al. Inositol and higher inositol phosphates in neural tissues: homeostasis, metabolism and functional significance , 2002, Journal of neurochemistry.
[280] G. Perry,et al. Contribution of redox-active iron and copper to oxidative damage in Alzheimer disease , 2004, Ageing Research Reviews.
[281] G. Poli,et al. Separation and characterization of the aldehydic products of lipid peroxidation stimulated by ADP-Fe2+ in rat liver microsomes. , 1982, The Biochemical journal.
[282] Teayoun Kim,et al. Peroxisome-proliferator-activated receptors regulate redox signaling in the cardiovascular system. , 2013, World journal of cardiology.
[283] H. Fahmi,et al. 4-Hydroxynonenal induces apoptosis in human osteoarthritic chondrocytes: the protective role of glutathione-S-transferase , 2008, Arthritis research & therapy.
[284] M. Medeiros,et al. Biological hydroperoxides and singlet molecular oxygen generation , 2007, IUBMB life.
[285] S. Narumiya,et al. Prostaglandins and chronic inflammation. , 2012, Trends in pharmacological sciences.
[286] Christopher J. Sevinsky,et al. Lipid biology of breast cancer. , 2013, Biochimica et biophysica acta.
[287] J. Morrow,et al. Formation of Highly Reactive Cyclopentenone Isoprostane Compounds (A3/J3-Isoprostanes) in Vivo from Eicosapentaenoic Acid* , 2008, Journal of Biological Chemistry.
[288] H. Gardner,et al. Oxygenation of (3Z)-alkenal to (2E)-4-hydroxy-2-alkenal in soybean seed (Glycine max L.). , 1996, Biochimica et biophysica acta.
[289] L. Gros,et al. Enzymology of repair of etheno-adducts. , 2003, Mutation research.
[290] C. Karakukcu,et al. Investigation of protein oxidation and lipid peroxidation in patients with rheumatoid arthritis , 2006, Cell biochemistry and function.
[291] N. Žarković,et al. Pathological aspects of lipid peroxidation , 2010, Free radical research.
[292] K. Žarković. 4-hydroxynonenal and neurodegenerative diseases. , 2003, Molecular aspects of medicine.
[293] M. Kadiiska,et al. In vivo metabolism of tert-butyl hydroperoxide to methyl radicals. EPR spin-trapping and DNA methylation studies. , 2000, Chemical research in toxicology.
[294] S. Colowick,et al. Methods in Enzymology , Vol , 1966 .
[295] A. Lin,et al. Anti‐inflammatory effects of pioglitazone on iron‐induced oxidative injury in the nigrostriatal dopaminergic system , 2010, Neuropathology and applied neurobiology.
[296] M. Cano,et al. Comparative Study of the in Vitro Protective Effects of Several Antioxidants on Elongation Factor 2 under Oxidative Stress Conditions , 2010, Bioscience, biotechnology, and biochemistry.
[297] L. Marnett,et al. Induction of cell cycle arrest by the endogenous product of lipid peroxidation, malondialdehyde. , 1998, Carcinogenesis.
[298] L. Pari,et al. Hepatoprotective role of naringin on nickel-induced toxicity in male Wistar rats. , 2011, European journal of pharmacology.
[299] A. Holmgren,et al. Thioredoxin and thioredoxin reductase: current research with special reference to human disease. , 2010, Biochemical and biophysical research communications.
[300] E. Shaulian. AP-1--The Jun proteins: Oncogenes or tumor suppressors in disguise? , 2010, Cellular signalling.
[301] J. Arnold,et al. Arrest of human mitochondrial RNA polymerase transcription by the biological aldehyde adduct of DNA, M1dG , 2010, Nucleic acids research.
[302] R. Natarajan,et al. Proinflammatory Effects of Advanced Lipoxidation End Products in Monocytes , 2008, Diabetes.
[303] Federica Briatore,et al. Synergistic effect of 4-hydroxynonenal and PPAR ligands in controlling human leukemic cell growth and differentiation. , 2002, Free radical biology & medicine.
[304] J. Doorn,et al. Modification and functional inhibition of regulator of G-protein signaling 4 (RGS4) by 4-hydroxy-2-nonenal. , 2013, Chemical research in toxicology.
[305] Alin Ciobica,et al. Changes of some oxidative stress markers in the serum of patients with mild cognitive impairment and Alzheimer's disease , 2010, Neuroscience Letters.
[306] N. Hattori,et al. Immunohistochemical detection of 4-hydroxynonenal protein adducts in Parkinson disease. , 1996, Proceedings of the National Academy of Sciences of the United States of America.
[307] H. Steinbrenner,et al. Protection against reactive oxygen species by selenoproteins. , 2009, Biochimica et biophysica acta.
[308] K. Ramana,et al. Aldose Reductase Mediates the Lipopolysaccharide-induced Release of Inflammatory Mediators in RAW264.7 Murine Macrophages* , 2006, Journal of Biological Chemistry.
[309] Hyun B Choi,et al. Peripheral benzodiazepine receptor ligand PK11195 reduces microglial activation and neuronal death in quinolinic acid-injected rat striatum , 2005, Neurobiology of Disease.
[310] D. Petersen,et al. Reactions of 4-hydroxynonenal with proteins and cellular targets. , 2004, Free radical biology & medicine.
[311] Chan-Min Liu,et al. Hepatoprotective properties of sesamin against CCl4 induced oxidative stress-mediated apoptosis in mice via JNK pathway. , 2014, Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association.
[312] S. Dugin,et al. A New Role of Phosphoglucose Isomerase. Involvement of the Glycolytic Enzyme in Aldehyde Metabolism , 2005, Biochemistry (Moscow).
[313] H. Esterbauer,et al. Methods for determination of aldehydic lipid peroxidation products. , 1989, Free radical biology & medicine.
[314] D. Petersen,et al. Modification of Akt2 by 4-hydroxynonenal inhibits insulin-dependent Akt signaling in HepG2 cells. , 2011, Biochemistry.
[315] S. Oh,et al. Evaluation of hepatotoxicity and oxidative stress in rats treated with tert-butyl hydroperoxide. , 2012, Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association.
[316] F. Dente,et al. Malondialdehyde in Exhaled Breath Condensate as a Marker of Oxidative Stress in Different Pulmonary Diseases , 2011, Mediators of inflammation.
[317] R. Vatsyayan,et al. Role of 4-hydroxynonenal in epidermal growth factor receptor-mediated signaling in retinal pigment epithelial cells. , 2011, Experimental eye research.
[318] G. Muzio,et al. Antisense oligonucleotides against aldehyde dehydrogenase 3 inhibit hepatoma cell proliferation by affecting MAP kinases. , 2003, Chemico-biological interactions.
[319] J. Bergquist,et al. Malondialdehyde modification of myelin oligodendrocyte glycoprotein leads to increased immunogenicity and encephalitogenicity , 2007, European journal of immunology.
[320] Y. Awasthi,et al. Gsta4 Null Mouse Embryonic Fibroblasts Exhibit Enhanced Sensitivity to Oxidants: Role of 4-Hydroxynonenal in Oxidant Toxicity. , 2013, Open journal of apoptosis.
[321] Sayuri Miyamoto,et al. Linoleic acid hydroperoxide reacts with hypochlorous acid, generating peroxyl radical intermediates and singlet molecular oxygen. , 2006, Proceedings of the National Academy of Sciences of the United States of America.
[322] A. El-tarras,et al. Iron supplementation at high altitudes induces inflammation and oxidative injury to lung tissues in rats. , 2014, Toxicology and applied pharmacology.
[323] M. Davies. Singlet oxygen-mediated damage to proteins and its consequences. , 2003, Biochemical and biophysical research communications.
[324] M. Aschner,et al. Protective effect of Melissa officinalis aqueous extract against Mn-induced oxidative stress in chronically exposed mice , 2012, Brain Research Bulletin.
[325] G. Frühbeck,et al. The adipocyte: a model for integration of endocrine and metabolic signaling in energy metabolism regulation. , 2001, American journal of physiology. Endocrinology and metabolism.
[326] P. Mecocci,et al. Plasma susceptibility to free radical-induced antioxidant consumption and lipid peroxidation is increased in very old subjects with Alzheimer disease. , 2002, Journal of Alzheimer's disease : JAD.
[327] M. Valko,et al. Advances in metal-induced oxidative stress and human disease. , 2011, Toxicology.
[328] Y. Awasthi,et al. Role of 4-hydroxynonenal in chemopreventive activities of sulforaphane. , 2012, Free radical biology & medicine.
[329] H. Bartsch,et al. Accumulation of lipid peroxidation-derived DNA lesions: potential lead markers for chemoprevention of inflammation-driven malignancies. , 2005, Mutation research.
[330] W. Pryor,et al. Autoxidation of polyunsaturated fatty acids: II. A suggested mechanism for the formation of TBA-reactive materials from prostaglandin-like endoperoxides , 1976, Lipids.
[331] I Celardo,et al. Senescence and aging: the critical roles of p53 , 2013, Oncogene.
[332] S. Gangemi,et al. Malondialdehyde in benign prostate hypertrophy: a useful marker? , 2003, Mediators of inflammation.
[333] E. Cadenas,et al. Effects of 4-hydroxynonenal on isolated hepatocytes. Studies on chemiluminescence response, alkane production and glutathione status. , 1983, The Biochemical journal.
[334] V. Fazio,et al. Effect of 4-Hydroxynonenal on cell cycle progression and expression of differentiation-associated antigens in HL-60 cells. , 1996, Free radical biology & medicine.
[335] M. Mattson,et al. Elongation factor 2 diphthamide is critical for translation of two IRES-dependent protein targets, XIAP and FGF2, under oxidative stress conditions. , 2014, Free radical biology & medicine.
[336] N. Žarković,et al. Pathophysiological relevance of aldehydic protein modifications. , 2013, Journal of proteomics.
[337] W. Atkins,et al. Interactions of glutathione transferases with 4-hydroxynonenal , 2011, Drug metabolism reviews.
[338] P. Kalinski. Regulation of Immune Responses by Prostaglandin E2 , 2012, The Journal of Immunology.
[339] L. Marnett,et al. In vivo oxidative metabolism of a major peroxidation-derived DNA adduct, M1dG. , 2006, Proceedings of the National Academy of Sciences of the United States of America.
[340] J. Pedraza-Chaverri,et al. Effect of quinolinic acid on endogenous antioxidants in rat corpus striatum , 2000, Brain Research.
[341] A. Genazzani,et al. Steroid hormones and BDNF , 2013, Neuroscience.
[342] R. Godschalk,et al. Adult-onset, short-term dietary restriction reduces cell senescence in mice , 2010, Aging.
[343] M. Dianzani,et al. 4-Hydroxynonenal affects pRb/E2F pathway in HL-60 human leukemic cells. , 2002, Biochemical and biophysical research communications.
[344] Song Liu,et al. Induction of cell cycle arrest and DNA damage by the HDAC inhibitor panobinostat (LBH589) and the lipid peroxidation end product 4-hydroxynonenal in prostate cancer cells. , 2011, Free radical biology & medicine.
[345] Clare K. Carney,et al. Metabolic impact of 4-hydroxynonenal on macrophage-like RAW 264.7 function and activation. , 2012, Chemical research in toxicology.
[346] G. Poli,et al. Separation and characterization of the aldehydic products of lipid peroxidation stimulated by carbon tetrachloride or ADP-iron in isolated rat hepatocytes and rat liver microsomal suspensions. , 1985, The Biochemical journal.
[347] A. Józkowicz,et al. Haem oxygenase-1: non-canonical roles in physiology and pathology. , 2012, Clinical science.
[348] D. Tsikas,et al. Glutathione promotes prostaglandin H synthase (cyclooxygenase)‐dependent formation of malondialdehyde and 15(S)‐8‐iso‐prostaglandin F2α , 2012, FEBS letters.
[349] S. Das,et al. Alcohol-induced oxidative stress. , 2007, Life sciences.
[350] S. F. Arruda,et al. Dietary Iron Concentration May Influence Aging Process by Altering Oxidative Stress in Tissues of Adult Rats , 2013, PloS one.
[351] S. Conway,et al. Biology-enabling inositol phosphates, phosphatidylinositol phosphates and derivatives. , 2007, Natural product reports.
[352] J. Peters,et al. The oxidative stress mediator 4-hydroxynonenal is an intracellular agonist of the nuclear receptor peroxisome proliferator-activated receptor-β/δ (PPARβ/δ) , 2007 .
[353] C. Pichard,et al. Role of polyunsaturated fatty acids and lipid peroxidation on colorectal cancer risk and treatments , 2012, Current opinion in clinical nutrition and metabolic care.
[354] D. Petersen,et al. Exploring the biology of lipid peroxidation-derived protein carbonylation. , 2011, Chemical research in toxicology.
[355] D. Slatter,et al. The importance of lipid-derived malondialdehyde in diabetes mellitus , 2000, Diabetologia.
[356] S. Garcia,et al. Evaluation of lipid damage related to pathological and physiological conditions , 2013, Drug and chemical toxicology.
[357] S. Grinstein,et al. Phosphatidylserine-mediated cellular signaling. , 2013, Advances in experimental medicine and biology.
[358] I. Obrosova,et al. PARP inhibition alleviates diabetes-induced systemic oxidative stress and neural tissue 4-hydroxynonenal adduct accumulation: correlation with peripheral nerve function. , 2011, Free radical biology & medicine.
[359] Yu-jie Niu,et al. The protective effect of grape seed procyanidin extract against cadmium-induced renal oxidative damage in mice. , 2013, Environmental toxicology and pharmacology.
[360] C. Kim,et al. 4-Hydroxynonenal enhances MMP-2 production in vascular smooth muscle cells via mitochondrial ROS-mediated activation of the Akt/NF-kappaB signaling pathways. , 2008, Free radical biology & medicine.
[361] H. H. Draper,et al. Metabolism of malonaldehyde in vivo and in vitro , 1982, Lipids.
[362] G. Barrera. Oxidative Stress and Lipid Peroxidation Products in Cancer Progression and Therapy , 2012, ISRN oncology.
[363] P. Newburger,et al. The Human NADPH Oxidase: Primary and Secondary Defects Impairing the Respiratory Burst Function and the Microbicidal Ability of Phagocytes , 2011, Scandinavian journal of immunology.
[364] T. Suuronen,et al. Geldanamycin increases 4-hydroxynonenal (HNE)-induced cell death in human retinal pigment epithelial cells , 2005, Neuroscience Letters.
[365] K. Massey,et al. Lipidomics of polyunsaturated-fatty-acid-derived oxygenated metabolites. , 2011, Biochemical Society transactions.
[366] K. Uchida. Role of reactive aldehyde in cardiovascular diseases. , 2000, Free radical biology & medicine.
[367] H. Esterbauer,et al. Cytotoxicity, DNA fragmentation and sister-chromatid exchange in Chinese hamster ovary cells exposed to the lipid peroxidation product 4-hydroxynonenal and homologous aldehydes. , 1986, Mutation research.
[368] É. Hajduch,et al. Protein kinase C isoforms: Mediators of reactive lipid metabolites in the development of insulin resistance , 2011, FEBS letters.
[369] Ivana Trbojević,et al. Cadmium-induced lipid peroxidation and changes in antioxidant defense system in the rat testes: protective role of coenzyme Q(10) and vitamin E. , 2010, Reproductive toxicology.
[370] M. Davies,et al. Modification of low-density lipoprotein by myeloperoxidase-derived oxidants and reagent hypochlorous acid. , 2006, Biochimica et biophysica acta.
[371] Muralidhara,et al. Induction of oxidative stress by organic hydroperoxides in testis and epididymal sperm of rats in vivo. , 2006, Journal of andrology.
[372] Ming-Jiuan Wu,et al. Lipid peroxidation end product 4-hydroxy-trans-2-nonenal triggers unfolded protein response and heme oxygenase-1 expression in PC12 cells: Roles of ROS and MAPK pathways. , 2014, Toxicology.
[373] Xinbin Chen,et al. Senescence regulation by the p53 protein family. , 2013, Methods in molecular biology.
[374] L. Klassen,et al. Formation and immunological properties of aldehyde-derived protein adducts following alcohol consumption. , 2008, Methods in molecular biology.
[375] M. Nitti,et al. Activation of PKC-β isoforms mediates HNE-induced MCP-1 release by macrophages , 2002 .
[376] P. Domingues,et al. Lipoxidation adducts with peptides and proteins: deleterious modifications or signaling mechanisms? , 2013, Journal of proteomics.
[377] M. Karin,et al. AP-1 as a regulator of cell life and death , 2002, Nature Cell Biology.
[378] P. Hainaut,et al. Redox control and interplay between p53 isoforms: roles in the regulation of basal p53 levels, cell fate, and senescence. , 2011, Antioxidants & redox signaling.
[379] S. Baker,et al. PTEN and the PI3-kinase pathway in cancer. , 2009, Annual review of pathology.
[380] M. A. Tuttle,et al. Distribution and oxidation of malondialdehyde in mice. , 1985, Prostaglandins.
[381] M. Torres-Ramos,et al. Selenium-induced antioxidant protection recruits modulation of thioredoxin reductase during excitotoxic/pro-oxidant events in the rat striatum , 2012, Neurochemistry International.
[382] P. Kalinski. Regulation of Immune Responses by Prostaglandin E 2 , 2011 .
[383] Jun Li,et al. Lipid hydroperoxide formation regulates postnatal rat lung cell apoptosis and alveologenesis. , 2013, Free radical biology & medicine.
[384] A. Hermetter,et al. Oxidized phospholipids: from molecular properties to disease. , 2007, Biochimica et biophysica acta.
[385] A. Benedetti,et al. Identification of 4-hydroxynonenal as a cytotoxic product originating from the peroxidation of liver microsomal lipids. , 1980, Biochimica et biophysica acta.
[386] Emmette R. Hutchison,et al. Molecular control of the amount, subcellular location, and activity state of translation elongation factor 2 in neurons experiencing stress. , 2013, Free radical biology & medicine.
[387] K. Itoh,et al. Downloaded from http://circres.ahajournals.org / by guest on February 23, 2013Role of Nrf2 in the Regulation of CD36 and Stress Protein Expression in Murine Macrophages Activation by Oxidatively Modified LDL and 4-Hydroxynonenal , 2004 .
[388] G. Eraslan,et al. The Effects of Flaxseed Oil on Cadmium-Induced Oxidative Stress in Rats , 2013, Biological Trace Element Research.
[389] Y. Awasthi,et al. 4-Hydroxynonenal self-limits fas-mediated DISC-independent apoptosis by promoting export of Daxx from the nucleus to the cytosol and its binding to Fas. , 2008, Biochemistry.
[390] J. Parrado,et al. "In vitro" effect of cumene hydroperoxide on hepatic elongation factor-2 and its protection by melatonin. , 2003, Biochimica et biophysica acta.
[391] K. Frayn. Regulation of fatty acid delivery in vivo. , 1998, Advances in experimental medicine and biology.
[392] P. Kaldis,et al. Cdks, cyclins and CKIs: roles beyond cell cycle regulation , 2013, Development.
[393] V. Fazio,et al. Growth inhibition and differentiation induction in murine erythroleukemia cells by 4-hydroxynonenal , 2001, Free radical research.
[394] P. Libby,et al. Anti-inflammation Therapy by Activation of Prostaglandin EP4 Receptor in Cardiovascular and Other Inflammatory Diseases , 2012, Journal of cardiovascular pharmacology.
[395] B. Halliwell,et al. Oxygen toxicity, oxygen radicals, transition metals and disease. , 1984, The Biochemical journal.
[396] Hongqiao Zhang,et al. Resveratrol and 4-hydroxynonenal act in concert to increase glutamate cysteine ligase expression and glutathione in human bronchial epithelial cells. , 2009, Archives of biochemistry and biophysics.
[397] Y. Hattori,et al. Vascular smooth muscle cell activation and growth by 4-hydroxynonenal. , 2001, Life sciences.
[398] Mei-Ling Cheng,et al. Increased oxidative damage in peripheral blood correlates with severity of Parkinson's disease , 2009, Neurobiology of Disease.
[399] O. Niemelä,et al. Distribution of ethanol-induced protein adducts in vivo: relationship to tissue injury. , 2001, Free radical biology & medicine.
[400] Y. Surh,et al. Oncogenic potential of Nrf2 and its principal target protein heme oxygenase-1. , 2014, Free radical biology & medicine.
[401] O. Khalilzadeh,et al. Type 2 diabetes mellitus duration: an independent predictor of serum malondialdehyde levels. , 2010, Singapore medical journal.
[402] C. Spickett. The lipid peroxidation product 4-hydroxy-2-nonenal: Advances in chemistry and analysis☆ , 2013, Redox biology.
[403] Jian-Guo Chen,et al. The cytotoxic mechanism of malondialdehyde and protective effect of carnosine via protein cross-linking/mitochondrial dysfunction/reactive oxygen species/MAPK pathway in neurons. , 2011, European journal of pharmacology.
[404] N. Fineberg,et al. Inhibition of glycolysis attenuates 4-hydroxynonenal-dependent autophagy and exacerbates apoptosis in differentiated SH-SY5Y neuroblastoma cells , 2013, Autophagy.
[405] E. Niki. Biomarkers of lipid peroxidation in clinical material. , 2014, Biochimica et biophysica acta.
[406] A. Onyango,et al. New hypotheses on the pathways of formation of malondialdehyde and isofurans. , 2010, Free radical biology & medicine.
[407] A. Ferrante,et al. Immunopathology and Infectious Diseases Inhibition of the Lipopolysaccharide-Induced Stimulation of the Members of the MAPK Family in Human Monocytes / Macrophages by 4-Hydroxynonenal , a Product of Oxidized Omega-6 Fatty Acids , 2010 .
[408] L. Moons,et al. Matrix metalloproteinase-2 and -9 as promising benefactors in development, plasticity and repair of the nervous system , 2013, Progress in Neurobiology.
[409] V. Natarajan,et al. Hydroxyalkenals and oxidized phospholipids modulation of endothelial cytoskeleton, focal adhesion and adherens junction proteins in regulating endothelial barrier function. , 2012, Microvascular research.
[410] Michael Berger,et al. Apoptosis - the p53 network , 2003, Journal of Cell Science.
[411] N. Kaiser,et al. Signaling properties of 4-hydroxyalkenals formed by lipid peroxidation in diabetes. , 2012, Free radical biology & medicine.
[412] You-Liang Hsieh,et al. Effects of yam peel extract against carbon tetrachloride-induced hepatotoxicity in rats. , 2013, Journal of agricultural and food chemistry.
[413] E. Skrzydlewska,et al. DNA damage caused by lipid peroxidation products. , 2003, Cellular & molecular biology letters.
[414] P. Pinton,et al. Redox control of protein kinase C: cell- and disease-specific aspects. , 2010, Antioxidants & redox signaling.
[415] N. Lane. Oxygen: The molecule that made the world , 2002 .
[416] Federica Briatore,et al. 4-Hydroxynonenal inhibits telomerase activity and hTERT expression in human leukemic cell lines. , 2006, Free radical biology & medicine.
[417] M. Mattson. Roles of the lipid peroxidation product 4-hydroxynonenal in obesity, the metabolic syndrome, and associated vascular and neurodegenerative disorders , 2009, Experimental Gerontology.
[418] F. Gentile,et al. Interaction of aldehydes derived from lipid peroxidation and membrane proteins , 2013, Front. Physiol..
[419] R. Butterworth,et al. The biosynthesis of ascorbate protects isolated rat hepatocytes from cumene hydroperoxide-mediated oxidative stress. , 2005, Free radical biology & medicine.
[420] V. Cipriani,et al. Lipid peroxidation contributes to immune reactions associated with alcoholic liver disease. , 2002, Free radical biology & medicine.
[421] Jianhua Zhang,et al. Cellular metabolic and autophagic pathways: traffic control by redox signaling. , 2013, Free radical biology & medicine.
[422] E. Anderson,et al. Frontiers in Research: Obesity and Health Mitochondria as a source and target of lipid peroxidation products in healthy and diseased heart , 2012 .
[423] L. Klassen,et al. Elucidation of reaction scheme describing malondialdehyde-acetaldehyde-protein adduct formation. , 2001, Chemical research in toxicology.
[424] A. Baccarelli,et al. Aberrant methylation of hypermethylated-in-cancer-1 and exocyclic DNA adducts in tobacco smokers. , 2014, Toxicological sciences : an official journal of the Society of Toxicology.
[425] M. Nitti,et al. Role of PKC-dependent pathways in HNE-induced cell protein transport and secretion. , 2003, Molecular aspects of medicine.
[426] D. Petersen,et al. Increased carbonylation of the lipid phosphatase PTEN contributes to Akt2 activation in a murine model of early alcohol-induced steatosis. , 2013, Free radical biology & medicine.
[427] D. Kotyzová,et al. Effect of chromium (VI) exposure on antioxidant defense status and trace element homeostasis in acute experiment in rat , 2015, Toxicology and industrial health.
[428] L. Marnett,et al. Mutagenicity in Escherichia coli of the major DNA adduct derived from the endogenous mutagen malondialdehyde. , 1997, Proceedings of the National Academy of Sciences of the United States of America.
[429] K. Massey,et al. Lipidomics of oxidized polyunsaturated fatty acids , 2013, Free radical biology & medicine.
[430] Gemma A. Figtree,et al. Biological markers of oxidative stress: Applications to cardiovascular research and practice☆ , 2013, Redox biology.
[431] L. Gan,et al. Oxidative damage and the Nrf2-ARE pathway in neurodegenerative diseases. , 2014, Biochimica et biophysica acta.
[432] Shelly C. Lu. Glutathione synthesis. , 2013, Biochimica et biophysica acta.
[433] A. Brash,et al. Discovery of a second 15S-lipoxygenase in humans. , 1997, Proceedings of the National Academy of Sciences of the United States of America.
[434] G. Superti-Furga,et al. Complement factor H binds malondialdehyde epitopes and protects from oxidative stress , 2011, Nature.