The sulfite molecule enhances homocysteine toxicity in SH-SY5Y cells
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[1] V. Baracos,et al. Hyperhomocysteinemia as a potential contributor of colorectal cancer development in inflammatory bowel diseases: a review. , 2015, World journal of gastroenterology.
[2] P. Ganguly,et al. Role of homocysteine in the development of cardiovascular disease , 2015, Nutrition Journal.
[3] S. Tabibzadeh,et al. Homocysteine in Chronic Kidney Disease. , 2015, Advances in clinical chemistry.
[4] Reynolds Eh. The neurology of folic acid deficiency. , 2014 .
[5] E. Reynolds. The neurology of folic acid deficiency. , 2014, Handbook of clinical neurology.
[6] J. Rybakowski,et al. Hyperhomocysteinemia in Bipolar Depression: Clinical and Biochemical Correlates , 2013, Neuropsychobiology.
[7] M. Preisig,et al. Association of serum homocysteine with major depressive disorder: Results from a large population-based study , 2013, Psychoneuroendocrinology.
[8] A. Andreazza,et al. A Fresh Look at Complex I in Microarray Data: Clues to Understanding Disease-Specific Mitochondrial Alterations in Bipolar Disorder , 2013, Biological Psychiatry.
[9] V. Kuçukatay,et al. Sulfite leads to neuron loss in the hippocampus of both normal and SOX-deficient rats , 2012, Neurochemistry International.
[10] M. Keshavan,et al. Antioxidants, redox signaling, and pathophysiology in schizophrenia: an integrative view. , 2011, Antioxidants & redox signaling.
[11] R. Devereux,et al. Relationship of asymmetric dimethylarginine and homocysteine to vascular aging in systemic lupus erythematosus patients. , 2010, Arthritis and rheumatism.
[12] Paolo Zamboni,et al. Oxidative Stress and Neurodegenerative Diseases: A Review of Upstream and Downstream Antioxidant Therapeutic Options , 2009, Current neuropharmacology.
[13] W. V. van Gool,et al. Hyperhomocysteinemia and Alzheimer's disease: A systematic review. , 2009, Archives of gerontology and geriatrics.
[14] R. Gonsette. Neurodegeneration in multiple sclerosis: The role of oxidative stress and excitotoxicity , 2008, Journal of the Neurological Sciences.
[15] A. Agar,et al. EFFECT OF INGESTED SULFITE ON HIPPOCAMPUS ANTIOXIDANT ENZYME ACTIVITIES IN SULFITE OXIDASE COMPETENT AND DEFICIENT RATS , 2007, The International journal of neuroscience.
[16] J. Bełtowski,et al. Hydrogen sulfide (H2S) - the third gas of interest for pharmacologists. , 2007, Pharmacological reports : PR.
[17] M. Brosnan,et al. The sulfur-containing amino acids: an overview. , 2006, The Journal of nutrition.
[18] R. Obeid,et al. Mechanisms of homocysteine neurotoxicity in neurodegenerative diseases with special reference to dementia , 2006, FEBS letters.
[19] R. Castro,et al. Homocysteine metabolism, hyperhomocysteinaemia and vascular disease: An overview , 2006, Journal of Inherited Metabolic Disease.
[20] O. Erel,et al. A new automated colorimetric method for measuring total oxidant status. , 2005, Clinical biochemistry.
[21] D. Reinhardt,et al. Modification of the Structure and Function of Fibrillin-1 by Homocysteine Suggests a Potential Pathogenetic Mechanism in Homocystinuria* , 2005, Journal of Biological Chemistry.
[22] L. Hoffer. Homocysteine remethylation and trans-sulfuration. , 2004, Metabolism: clinical and experimental.
[23] M. Fontecave,et al. S-adenosylmethionine: nothing goes to waste. , 2004, Trends in biochemical sciences.
[24] O. Erel,et al. A novel automated method to measure total antioxidant response against potent free radical reactions. , 2004, Clinical biochemistry.
[25] D. Ashline,et al. Folate deprivation induces neurodegeneration: roles of oxidative stress and increased homocysteine , 2003, Neurobiology of Disease.
[26] A. McCaddon,et al. Alzheimer’s disease and total plasma aminothiols , 2003, Biological Psychiatry.
[27] L. Hoffer. Methods for measuring sulfur amino acid metabolism , 2002, Current opinion in clinical nutrition and metabolic care.
[28] F. Corrales,et al. Regulation of mammalian liver methionine adenosyltransferase. , 2002, The Journal of nutrition.
[29] Yuuki Kawamura,et al. Endoplasmic Reticulum Stress-inducible Protein, Herp, Enhances Presenilin-mediated Generation of Amyloid β-Protein* 210 , 2002, The Journal of Biological Chemistry.
[30] M. Mattson,et al. Folic Acid Deficiency and Homocysteine Impair DNA Repair in Hippocampal Neurons and Sensitize Them to Amyloid Toxicity in Experimental Models of Alzheimer's Disease , 2002, The Journal of Neuroscience.
[31] Sudha Seshadri,et al. Plasma Homocysteine as a Risk Factor for Dementia and Alzheimer's Disease , 2002 .
[32] D. Ashline,et al. Homocysteine potentiates β‐amyloid neurotoxicity: role of oxidative stress , 2001 .
[33] V. Ganapathy,et al. Apoptotic cell death in the mouse retinal ganglion cell layer is induced in vivo by the excitatory amino acid homocysteine. , 2001, Experimental eye research.
[34] C. Masters,et al. Homocysteine potentiates copper‐ and amyloid beta peptide‐mediated toxicity in primary neuronal cultures: possible risk factors in the Alzheimer's‐type neurodegenerative pathways , 2001, Journal of neurochemistry.
[35] D. Ashline,et al. Homocysteine potentiates beta-amyloid neurotoxicity: role of oxidative stress. , 2001, Journal of neurochemistry.
[36] R. F. Huang,et al. Folate depletion and elevated plasma homocysteine promote oxidative stress in rat livers. , 2001, The Journal of nutrition.
[37] E. Mosharov,et al. The quantitatively important relationship between homocysteine metabolism and glutathione synthesis by the transsulfuration pathway and its regulation by redox changes. , 2000, Biochemistry.
[38] C. Culmsee,et al. Homocysteine Elicits a DNA Damage Response in Neurons That Promotes Apoptosis and Hypersensitivity to Excitotoxicity , 2000, The Journal of Neuroscience.
[39] G. Salvioli,et al. Peroxidation indices and total antioxidant capacity in plasma during hyperhomocysteinemia induced by methionine oral loading. , 2000, Metabolism: clinical and experimental.
[40] J. Finkelstein,et al. Pathways and Regulation of Homocysteine Metabolism in Mammals , 2000, Seminars in thrombosis and hemostasis.
[41] J. Finkelstein,et al. The metabolism of homocysteine: pathways and regulation , 1998, European Journal of Pediatrics.
[42] M. Reist,et al. Sulphite enhances peroxynitrite‐dependent α1‐antiproteinase inactivation. A mechanism of lung injury by sulphur dioxide? , 1998, FEBS letters.
[43] R. Surtees,et al. Cerebrospinal Fluid and Plasma Total Homocysteine and Related Metabolites in Children with Cystathionine β-Synthase Deficiency: The Effect of Treatment , 1997, Pediatric Research.
[44] R. Waring,et al. Plasma cysteine and sulphate levels in patients with motor neurone, Parkinson's and Alzheimer's disease , 1990, Neuroscience Letters.
[45] A. Grieco. Homocystinuria: pathogenetic mechanisms. , 1977, The American journal of the medical sciences.
[46] K. Mccully. Vascular pathology of homocysteinemia: implications for the pathogenesis of arteriosclerosis. , 1969, The American journal of pathology.
[47] H. B. Vickery. A Trail of Research in Sulfur Chemistry and Metabolism and Related Fields , 1952, The Yale Journal of Biology and Medicine.
[48] V. Vigneaud. A trail of research in sulfur chemistry and metabolism, and related fields , 1952 .
[49] O. H. Lowry,et al. Protein measurement with the Folin phenol reagent. , 1951, The Journal of biological chemistry.