Intervention against the Maillard reaction in vivo.
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[1] G. Buettner. The pecking order of free radicals and antioxidants: lipid peroxidation, alpha-tocopherol, and ascorbate. , 1993, Archives of biochemistry and biophysics.
[2] J. Baynes,et al. Identification of N epsilon-carboxymethyllysine as a degradation product of fructoselysine in glycated protein. , 1986, The Journal of biological chemistry.
[3] J. Baynes,et al. Non-enzymatic glycosylation and the chronic complications of diabetes: an overview , 1984, Diabetologia.
[4] E. Schaftingen,et al. Identification, cloning, and heterologous expression of a mammalian fructosamine-3-kinase. , 2000, Diabetes.
[5] P. Oturai,et al. Effects of advanced glycation end-product inhibition and cross-link breakage in diabetic rats. , 2000, Metabolism: clinical and experimental.
[6] R. Natarajan,et al. Evidence that pioglitazone, metformin and pentoxifylline are inhibitors of glycation. , 2000, Clinica chimica acta; international journal of clinical chemistry.
[7] J. Baynes,et al. Mechanism of autoxidative glycosylation: identification of glyoxal and arabinose as intermediates in the autoxidative modification of proteins by glucose. , 1995, Biochemistry.
[8] K. Shimokata,et al. Increased erythrocyte 3-DG and AGEs in diabetic hemodialysis patients: role of the polyol pathway. , 1999, Kidney international.
[9] R. Nagaraj,et al. Semicarbazide-sensitive amine oxidase in aortic smooth muscle cells mediates synthesis of a methylglyoxal-AGE: implications for vascular complications in diabetes. , 2002, Biochemical and biophysical research communications.
[10] J. Lai,et al. Aging Is Associated with a Decrease in Synaptosomal Glutamate Uptake and an Increase in the Susceptibility of Synaptosomal Vitamin E to Oxidative Stress , 1998, Neurochemical Research.
[11] M. Brownlee,et al. Free radical generation by early glycation products: a mechanism for accelerated atherogenesis in diabetes. , 1990, Biochemical and biophysical research communications.
[12] Z. Abbas,et al. Evaluation of the efficacy of thiamine and pyridoxine in the treatment of symptomatic diabetic peripheral neuropathy. , 1997, East African medical journal.
[13] H. Sano,et al. Hydroxyl Radical Mediates Nϵ-(Carboxymethyl)lysine Formation from Amadori Product , 1997 .
[14] K. Meek,et al. The inhibition of sugar-induced structural alterations in collagen by aspirin and other compounds. , 1994, Biochemical and biophysical research communications.
[15] M. Mcdaniel,et al. Aminoguanidine, a Novel Inhibitor of Nitric Oxide Formation, Prevents Diabetic Vascular Dysfunction , 1992, Diabetes.
[16] N. Abraham,et al. Diminished Heme Oxygenase Potentiates Cell Death: Pyrrolidinedithiocarbamate Mediates Oxidative Stress , 2003, Experimental biology and medicine.
[17] Z. Makita,et al. Progression of Nephropathy in Spontaneous Diabetic Rats Is Prevented by OPB-9195, a Novel Inhibitor of Advanced Glycation , 1997, Diabetes.
[18] M. Cohen,et al. Receptors specific for Amadori-modified glycated albumin on murine endothelial cells. , 1994, Biochemical and biophysical research communications.
[19] V. Monnier,et al. Age-related association of tail tendon break time with tissue pentosidine in DBA/2 vs C57BL/6 mice: the effect of dietary restriction. , 1997, The journals of gerontology. Series A, Biological sciences and medical sciences.
[20] V. Monnier,et al. Immunohistochemical detection of advanced glycosylation end products in diabetic tissues using monoclonal antibody to pyrraline. , 1992, The Journal of clinical investigation.
[21] A. Ceriello. New insights on oxidative stress and diabetic complications may lead to a "causal" antioxidant therapy. , 2003, Diabetes care.
[22] Merlin C. Thomas,et al. A Breaker of Advanced Glycation End Products Attenuates Diabetes‐Induced Myocardial Structural Changes , 2003, Circulation research.
[23] S. Takasawa,et al. Development and prevention of advanced diabetic nephropathy in RAGE-overexpressing mice. , 2001, The Journal of clinical investigation.
[24] M. Obrenovich,et al. Structure and Mechanism of Formation of Human Lens Fluorophore LM-1 , 1999, The Journal of Biological Chemistry.
[25] S. Krantz,et al. Evidence for binding of in vitro glycated low-density lipoproteins by fructosyllysine-specific sites on macrophages and U937 monocyte-like cells. , 2009, Experimental and clinical endocrinology & diabetes : official journal, German Society of Endocrinology [and] German Diabetes Association.
[26] B. Szwergold,et al. Human fructosamine-3-kinase: purification, sequencing, substrate specificity, and evidence of activity in vivo. , 2001, Diabetes.
[27] Tai Hasegawa,et al. Crosslines A and B as candidates for the fluorophores in age- and diabetes-related cross-linked proteins, and their diacetates produced by Maillard reaction of α-N-acetyl-L-lysine with D-glucose , 1992 .
[28] M. Cotter,et al. Neurovascular dysfunction in diabetic rats. Potential contribution of autoxidation and free radicals examined using transition metal chelating agents. , 1995, The Journal of clinical investigation.
[29] M. Kasuga,et al. Inhibitory effects of tenilsetam on the Maillard reaction. , 1997, Endocrinology.
[30] V. Monnier,et al. Involvement of Hydrogen Peroxide in Collagen Cross-linking by High Glucose in Vitro and in Vivo* , 1996, The Journal of Biological Chemistry.
[31] G. G. Stokes. "J." , 1890, The New Yale Book of Quotations.
[32] A. Yoshimura,et al. Incadronate disodium inhibits advanced glycation end products-induced angiogenesis in vitro. , 2002, Biochemical and biophysical research communications.
[33] V. Monnier,et al. Vitamin C metabolomic mapping in experimental diabetes with 6-deoxy-6-fluoro-ascorbic acid and high resolution 19F-nuclear magnetic resonance spectroscopy. , 2003, Metabolism: clinical and experimental.
[34] K. Meek,et al. Vitamins and analgesics in the prevention of collagen ageing. , 1996, Age and ageing.
[35] V. Monnier,et al. Maillard reactions in chemistry, food, and health , 1994 .
[36] Ericka Stricklin-Parker,et al. Ann , 2005 .
[37] M. V. van Boekel,et al. Glycation of human serum albumin: inhibition by Diclofenac. , 1992, Biochimica et biophysica acta.
[38] A. Cerami,et al. Aminoguanidine prevents diabetes-induced arterial wall protein cross-linking. , 1986, Science.
[39] M. Babizhayev,et al. L-carnosine (beta-alanyl-L-histidine) and carcinine (beta-alanylhistamine) act as natural antioxidants with hydroxyl-radical-scavenging and lipid-peroxidase activities. , 1994, The Biochemical journal.
[40] A. Enomoto,et al. An inhibitor of advanced glycation end product formation reducesNϵ-(carboxymethyl)lysine accumulation in glomeruli of diabetic rats , 2003 .
[41] J. Baynes,et al. Formation of pentosidine during nonenzymatic browning of proteins by glucose. Identification of glucose and other carbohydrates as possible precursors of pentosidine in vivo. , 1991, The Journal of biological chemistry.
[42] M. Nangaku,et al. Angiotensin II receptor antagonists and angiotensin-converting enzyme inhibitors lower in vitro the formation of advanced glycation end products: biochemical mechanisms. , 2002, Journal of the American Society of Nephrology : JASN.
[43] H. Hammes,et al. Benfotiamine blocks three major pathways of hyperglycemic damage and prevents experimental diabetic retinopathy , 2003, Nature Medicine.
[44] G. Jerums,et al. A novel inhibitor of advanced glycation end-product formation inhibits mesenteric vascular hypertrophy in experimental diabetes , 1999, Diabetologia.
[45] H. Klandorf,et al. Relationship between mechanical properties and pentosidine in tendon: effects of age, diet restriction, and aminoguanidine in broiler breeder hens. , 2000, Poultry science.
[46] M. Cohen,et al. Effect of alpha-glucosidase inhibition on the nonenzymatic glycation of glomerular basement membrane. , 1991, General pharmacology.
[47] Y. Kaneda,et al. Normalizing mitochondrial superoxide production blocks three pathways of hyperglycaemic damage , 2000, Nature.
[48] J. Harding,et al. The non-enzymic glycosylation of bovine lens proteins by glucosamine and its inhibition by aspirin, ibuprofen and glutathione. , 1989, Experimental eye research.
[49] M. Cooper,et al. ALT-946 and aminoguanidine, inhibitors of advanced glycation, improve severe nephropathy in the diabetic transgenic (mREN-2)27 rat. , 2002, Diabetes.
[50] R. Khalifah,et al. Amadorins: novel post-Amadori inhibitors of advanced glycation reactions. , 1999, Biochemical and biophysical research communications.
[51] S. Horiuchi,et al. Scavenger receptors that recognize advanced glycation end products. , 2002, Trends in cardiovascular medicine.
[52] A. Gugliucci,et al. The botanical extracts of Achyrocline satureoides and Ilex paraguariensis prevent methylglyoxal-induced inhibition of plasminogen and antithrombin III. , 2002, Life sciences.
[53] D. Sell. Ageing promotes the increase of early glycation Amadori product as assessed by ϵ-N-(2-furoylmethyl)-l-lysine (furosine) levels in rodent skin collagen The relationship to dietary restriction and glycoxidation , 1997, Mechanisms of Ageing and Development.
[54] M. Nangaku,et al. Anti-hypertensive agents inhibit in vivo the formation of advanced glycation end products and improve renal damage in a type 2 diabetic nephropathy rat model. , 2003, Journal of the American Society of Nephrology : JASN.
[55] M. Jadoul,et al. Accumulation of carbonyls accelerates the formation of pentosidine, an advanced glycation end product: carbonyl stress in uremia. , 1998, Journal of the American Society of Nephrology : JASN.
[56] R. S. Wall,et al. Ageing of the human corneal stroma: structural and biochemical changes. , 1992, Biochimica et biophysica acta.
[57] K. Biemel,et al. Formation Pathways for Lysine-Arginine Cross-links Derived from Hexoses and Pentoses by Maillard Processes , 2001, The Journal of Biological Chemistry.
[58] W. A. Johnson,et al. Longevity and the genetic determination of collagen glycoxidation kinetics in mammalian senescence. , 1996, Proceedings of the National Academy of Sciences of the United States of America.
[59] S. Margolis,et al. Purification of histaminase (diamine oxidase) from human pregnancy plasma by affinity chromatography. , 1975, Biochimica et biophysica acta.
[60] V. Monnier,et al. Suppression of Pentosidine Formation in Galactosemic Rat Lens by an Inhibitor of Aldose Reductase , 1994, Diabetes.
[61] M. Peppa,et al. Inflammatory mediators are induced by dietary glycotoxins, a major risk factor for diabetic angiopathy , 2002, Proceedings of the National Academy of Sciences of the United States of America.
[62] M. Brownlee. Glycation and Diabetic Complications , 1994, Diabetes.
[63] M. Cohen,et al. Evaluation of the effect of aldose reductase inhibition on increased basement membrane collagen fluorescence in diabetic rats. , 1991, General pharmacology.
[64] N. G. Davydova,et al. Efficacy of N-Acetylcarnosine in the Treatment of Cataracts , 2002, Drugs in R&D.
[65] G. Buettner. Use of ascorbate as test for catalytic metals in simple buffers. , 1990, Methods in enzymology.
[66] S. Horiuchi,et al. Peroxynitrite induces formation of N( epsilon )-(carboxymethyl) lysine by the cleavage of Amadori product and generation of glucosone and glyoxal from glucose: novel pathways for protein modification by peroxynitrite. , 2002, Diabetes.
[67] F. Collard,et al. Fructosamine 3-kinase is involved in an intracellular deglycation pathway in human erythrocytes. , 2002, The Biochemical journal.
[68] S. Takasawa,et al. Novel splice variants of the receptor for advanced glycation end-products expressed in human vascular endothelial cells and pericytes, and their putative roles in diabetes-induced vascular injury. , 2003, The Biochemical journal.
[69] R. G. Paul,et al. Mechanisms of maturation and ageing of collagen , 1998, Mechanisms of Ageing and Development.
[70] T. Masuda,et al. Chemical studies on antioxidant mechanism of curcumin: analysis of oxidative coupling products from curcumin and linoleate. , 2001, Journal of agricultural and food chemistry.
[71] G. Aldini,et al. Detoxification of cytotoxic α,β-unsaturated aldehydes by carnosine: characterization of conjugated adducts by electrospray ionization tandem mass spectrometry and detection by liquid chromatography/mass spectrometry in rat skeletal muscle† , 2002 .
[72] T. Niwa. 3-Deoxyglucosone: metabolism, analysis, biological activity, and clinical implication. , 1999, Journal of Chromatography B: Biomedical Sciences and Applications.
[73] G. Banchelli,et al. Effect of Pyridoxamine on Semicarbazide‐sensitive Amine Oxidase Activity of Rabbit Lung and Heart , 1989, The Journal of pharmacy and pharmacology.
[74] A. Jenkins,et al. Pyridoxamine, an Inhibitor of Advanced Glycation Reactions, Also Inhibits Advanced Lipoxidation Reactions , 2000, The Journal of Biological Chemistry.
[75] W. Cefalu,et al. Caloric restriction decreases age-dependent accumulation of the glycoxidation products, N epsilon-(carboxymethyl)lysine and pentosidine, in rat skin collagen. , 1995, The journals of gerontology. Series A, Biological sciences and medical sciences.
[76] A. Nègre-Salvayre,et al. Advanced glycation end product precursors impair epidermal growth factor receptor signaling. , 2002, Diabetes.
[77] M. Brownlee. Biochemistry and molecular cell biology of diabetic complications , 2001, Nature.
[78] J. Hodge. Dehydrated Foods, Chemistry of Browning Reactions in Model Systems , 1953 .
[79] Paul J Thornalley,et al. Accumulation of α-oxoaldehydes during oxidative stress: a role in cytotoxicity , 1999 .
[80] K. Biemel,et al. Identification and Quantification of Major Maillard Cross-links in Human Serum Albumin and Lens Protein , 2002, The Journal of Biological Chemistry.
[81] K. Yoshida,et al. Protein glycation inhibitors from thyme (Thymus vulgaris). , 1995, Bioscience, biotechnology, and biochemistry.
[82] M. Lagarde,et al. Reaction of metformin with dicarbonyl compounds. Possible implication in the inhibition of advanced glycation end product formation. , 1999, Biochemical pharmacology.
[83] M. Brownlee,et al. Glycation Products and the Pathogenesis of Diabetic Complications , 1992, Diabetes Care.
[84] S. Maskevich,et al. Thiamine oxidative transformations catalyzed by copper ions and ascorbic acid. , 1997, Biochemistry. Biokhimiia.
[85] T. Horiuchi,et al. Purification and Properties of Fructosylamine Oxidase from Aspergillus sp. 1005 , 1991 .
[86] M. Glomb,et al. Amides Are Novel Protein Modifications Formed by Physiological Sugars* , 2001, The Journal of Biological Chemistry.
[87] A. Reddi,et al. L-Lysine Reduces Nonenzymatic Glycation of Glomerular Basement Membrane Collagen and Albuminuria in Diabetic Rats , 2001, Nephron.
[88] M. Obrenovich,et al. Protein aging by carboxymethylation of lysines generates sites for divalent metal and redox active copper binding: relevance to diseases of glycoxidative stress. , 1999, Biochemical and biophysical research communications.
[89] M. Porta,et al. Thiamine corrects delayed replication and decreases production of lactate and advanced glycation end-products in bovine retinal and human umbilical vein endothelial cells cultured under high glucose conditions , 1996, Diabetologia.
[90] N. Saito,et al. Purification and Properties of Fructosyl-amino Acid Oxidase from Corynebacterium sp. 2-4-1 , 1989 .
[91] N. Seidler,et al. Carnosine promotes the heat denaturation of glycated protein. , 2003, Biochemical and biophysical research communications.
[92] F. Pomero,et al. Benfotiamine is similar to thiamine in correcting endothelial cell defects induced by high glucose , 2001, Acta Diabetologica.
[93] M. Cohen,et al. Alpha-glucosidase inhibition prevents increased collagen fluorescence in experimental diabetes. , 1991, General pharmacology.
[94] G. Aldini,et al. Carnosine is a quencher of 4-hydroxy-nonenal: through what mechanism of reaction? , 2002, Biochemical and biophysical research communications.
[95] T. Miyata,et al. Mechanism of the inhibitory effect of OPB-9195 [(+/-)-2-isopropylidenehydrazono-4-oxo-thiazolidin-5-yla cetanilide] on advanced glycation end product and advanced lipoxidation end product formation. , 2000, Journal of the American Society of Nephrology : JASN.
[96] K. Federlin,et al. A benfotiamine-vitamin B combination in treatment of diabetic polyneuropathy. , 2009, Experimental and clinical endocrinology & diabetes : official journal, German Society of Endocrinology [and] German Diabetes Association.
[97] F. Ziyadeh,et al. Inhibiting Albumin Glycation Ameliorates Diabetic Nephropathy in the db/db Mouse , 2000, Nephron Experimental Nephrology.
[98] O. Aruoma,et al. Stimulation of lipid peroxidation and hydroxyl-radical generation by the contents of human atherosclerotic lesions. , 1992, The Biochemical journal.
[99] T. Brown,et al. Production of fructose and fructose-3-phosphate in maturing rat lenses. , 1995, Investigative ophthalmology & visual science.
[100] F. Pomero,et al. Pericyte adhesion is impaired on extracellular matrix produced by endothelial cells in high hexose concentrations , 2002, Diabetologia.
[101] Z. Lun,et al. Physiological and pathological implications of semicarbazide-sensitive amine oxidase. , 2003, Biochimica et biophysica acta.
[102] Wei Liu,et al. Carbonyl compounds cross‐link cellular proteins and activate protein‐tyrosine kinase p60c‐Src , 1999, Journal of cellular biochemistry.
[103] R. Kawamori,et al. Effect of metformin on advanced glycation endproduct formation and peripheral nerve function in streptozotocin-induced diabetic rats. , 1999, European journal of pharmacology.
[104] V. Monnier,et al. Mechanism of formation of the Maillard protein cross-link pentosidine. Glucose, fructose, and ascorbate as pentosidine precursors. , 1991, The Journal of biological chemistry.
[105] G. Jerums,et al. The relative roles of advanced glycation, oxidation and aldose reductase inhibition in the development of experimental diabetic nephropathy in the Sprague-Dawley rat , 1995, Diabetologia.
[106] N. Hotta,et al. Epalrestat , an Aldose Reductase Inhibitor , Reduces the Levels of N ε-( Carboxymethyl ) lysine Protein Adducts and Their Precursors in Erythrocytes From Diabetic Patients , 2000 .
[107] Miss A.O. Penney. (b) , 1974, The New Yale Book of Quotations.
[108] R. Huby,et al. Non-enzymic glycosylation (glycation) of lens proteins by galactose and protection by aspirin and reduced glutathione. , 1988, Experimental eye research.
[109] V. Monnier,et al. Longitudinal determination of skin collagen glycation and glycoxidation rates predicts early death in C57BL/6NNIA mice , 2000, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[110] T. Regan,et al. Effects of Metformin on Collagen Glycation and Diastolic Dysfunction in Diabetic Myocardium , 1998, Journal of cardiovascular pharmacology and therapeutics.
[111] Alan W. Stitt,et al. The AGE inhibitor pyridoxamine inhibits development of retinopathy in experimental diabetes. , 2002, Diabetes.
[112] E. Di Cera,et al. Prevention of vascular and neural dysfunction in diabetic rats by C-peptide. , 1997, Science.
[113] K. Thomas,et al. Effect of aspirin and sodium salicylate on cataract development in diabetic rats. , 1998, Indian journal of experimental biology.
[114] J. Baynes,et al. The AGE inhibitor pyridoxamine inhibits lipemia and development of renal and vascular disease in Zucker obese rats. , 2003, Kidney international.
[115] J. Baynes,et al. AGE-breakers cleave model compounds, but do not break Maillard crosslinks in skin and tail collagen from diabetic rats. , 2003, Archives of biochemistry and biophysics.
[116] Paul J Thornalley. The glyoxalase system in health and disease. , 1993, Molecular aspects of medicine.
[117] Masayoshi Takeuchi,et al. Angiogenesis induced by advanced glycation end products and its prevention by cerivastatin , 2002, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[118] P. Riederer,et al. Influence of advanced glycation end-products and AGE-inhibitors on nucleation-dependent polymerization of beta-amyloid peptide. , 1997, Biochimica et biophysica acta.
[119] K. Reiser,et al. Effects of Aspirin or Basic Amino Acids on Collagen Cross-Links and Complications in NIDDM , 1997, Diabetes Care.
[120] J. Harding,et al. Glycation-induced inactivation of malate dehydrogenase protection by aspirin and a lens molecular chaperone, alpha-crystallin. , 1996, Biochimica et biophysica acta.
[121] M. Obrenovich,et al. Transition metal-catalyzed oxidation of ascorbate in human cataract extracts: possible role of advanced glycation end products. , 2000, Investigative ophthalmology & visual science.
[122] T. Masuda,et al. Chemical studies on antioxidant mechanism of curcuminoid: analysis of radical reaction products from curcumin. , 1999, Journal of agricultural and food chemistry.
[123] Paul J Thornalley,et al. Chromatographic assay of glycation adducts in human serum albumin glycated in vitro by derivatization with 6-aminoquinolyl-N-hydroxysuccinimidyl-carbamate and intrinsic fluorescence. , 2002, The Biochemical journal.
[124] G. Sajithlal,et al. Effect of curcumin on the advanced glycation and cross-linking of collagen in diabetic rats. , 1998, Biochemical pharmacology.
[125] J. Baynes,et al. Role of oxidative stress in diabetic complications: a new perspective on an old paradigm. , 1999, Diabetes.
[126] G. Banchelli,et al. Pyridoxamine as inhibitor of the blood plasma benzylamine oxidase and other copper‐containing amine oxidases , 1985, The Journal of pharmacy and pharmacology.
[127] B. Szwergold,et al. Metformin reduces systemic methylglyoxal levels in type 2 diabetes. , 1999, Diabetes.
[128] H Terato,et al. Oxidative DNA damage induced by high glucose and its suppression in human umbilical vein endothelial cells. , 2001, Mutation research.
[129] A. Hipkiss,et al. Carnosine protects proteins against methylglyoxal-mediated modifications. , 1998, Biochemical and biophysical research communications.
[130] M. Saraste,et al. FEBS Lett , 2000 .
[131] M. Glomb,et al. Detection of α-Dicarbonyl Compounds in Maillard Reaction Systems and in Vivo , 2001 .
[132] K. Yamazaki,et al. Effects of eparlestat on plasma levels of advanced glycation end products in patients with type 2 diabetes. , 2003, In vivo.
[133] H. Vlassara,et al. Depletion of reactive advanced glycation endproducts from diabetic uremic sera using a lysozyme-linked matrix. , 1997, The Journal of clinical investigation.
[134] H. Vlassara. The AGE‐receptor in the pathogenesis of diabetic complications , 2001, Diabetes/metabolism research and reviews.
[135] K. Tsuda,et al. Inhibitor for advanced glycation end products formation attenuates hypertension and oxidative damage in genetic hypertensive rats , 2002, Journal of hypertension.
[136] H. Hammes,et al. Efficacy of benfotiamine versus thiamine on function and glycation products of peripheral nerves in diabetic rats , 2001, Experimental and clinical endocrinology & diabetes : official journal, German Society of Endocrinology [and] German Diabetes Association.
[137] D. L. Price,et al. Chelating Activity of Advanced Glycation End-product Inhibitors* , 2001, The Journal of Biological Chemistry.
[138] S. Genuth,et al. Skin collagen glycation, glycoxidation, and crosslinking are lower in subjects with long-term intensive versus conventional therapy of type 1 diabetes: relevance of glycated collagen products versus HbA1c as markers of diabetic complications. DCCT Skin Collagen Ancillary Study Group. Diabetes Contro , 1999, Diabetes.
[139] A. Heidland,et al. Effects of ramipril in nondiabetic nephropathy: improved parameters of oxidatives stress and potential modulation of advanced glycation end products , 2003, Journal of Human Hypertension.
[140] G. Spiteller,et al. Iron (II) ions induced oxidation of ascorbic acid and glucose. , 1996, Free radical research.
[141] A. Gugliucci,et al. The polyamines spermine and spermidine protect proteins from structural and functional damage by AGE precursors: a new role for old molecules? , 2003, Life sciences.
[142] G. Kuttan,et al. Anti-tumour studies of metal chelates of synthetic curcuminoids. , 2002, Journal of experimental & clinical cancer research : CR.
[143] K. Tatsumi,et al. 2‐Isopropylidenehydrazono‐4‐oxo‐thiazolidin‐5‐ylacetanilide (OPB‐9195) treatment inhibits the development of intimal thickening after balloon injury of rat carotid artery: role of glycoxidation and lipoxidation reactions in vascular tissue damage , 1999, FEBS letters.
[144] A. Cebulska-Wasilewska,et al. Correlations between DNA and cytogenetic damage induced after chemical treatment and radiation. , 1998, Mutation research.
[145] M. Namiki,et al. A New Mechanism of the Maillard Reaction Involving Sugar Fragmentation and Free Radical Formation , 1983 .
[146] Yong Ming Li,et al. Antibacterial activity of lysozyme and lactoferrin is inhibited by binding of advanced glycation–modified proteins to a conserved motif , 1995, Nature Medicine.
[147] J. Baynes,et al. Chemistry of the fructosamine assay: D-glucosone is the product of oxidation of Amadori compounds. , 1994, Clinical chemistry.
[148] Merlin C. Thomas,et al. Reduction of the accumulation of advanced glycation end products by ACE inhibition in experimental diabetic nephropathy. , 2002, Diabetes.
[149] D. Ingram,et al. The effect of caloric restriction on glycation and glycoxidation in skin collagen of nonhuman primates. , 2003, The journals of gerontology. Series A, Biological sciences and medical sciences.
[150] M. Friedman. Prevention of adverse effects of food browning. , 1991, Advances in experimental medicine and biology.
[151] Z. Makita,et al. Suppression of transforming growth factor beta and vascular endothelial growth factor in diabetic nephropathy in rats by a novel advanced glycation end product inhibitor, OPB-9195 , 1999, Diabetologia.
[152] Elizabeth Johnson,et al. Mortality and morbidity in laboratory-maintained Rhesus monkeys and effects of long-term dietary restriction. , 2003, The journals of gerontology. Series A, Biological sciences and medical sciences.
[153] R. Bucala,et al. Lysozyme Enhances Renal Excretion of Advanced Glycation Endproducts In Vivo and Suppresses Adverse AGE-mediated Cellular Effects In Vitro: A Potential AGE Sequestration Therapy for Diabetic Nephropathy? , 2001, Molecular medicine.
[154] T. Kislinger,et al. N ε-(Carboxymethyl)Lysine Adducts of Proteins Are Ligands for Receptor for Advanced Glycation End Products That Activate Cell Signaling Pathways and Modulate Gene Expression* , 1999, The Journal of Biological Chemistry.
[155] G. Lutty,et al. Increased NADH oxidase activity in the retina of the BBZ/Wor diabetic rat. , 1998, Free radical biology & medicine.
[156] V. D’Agati,et al. Glucose , Glycation , and RAGE : Implications for Amplification of Cellular Dysfunction in Diabetic , 2003 .
[157] M. Glomb,et al. Synthesis of 1-deoxy-D-erythro-hexo-2,3-diulose, a major hexose Maillard intermediate. , 2000, Carbohydrate research.
[158] M. Steffes,et al. Pyridoxamine inhibits early renal disease and dyslipidemia in the streptozotocin-diabetic rat. , 2002, Kidney international.
[159] Edwin D. Mares,et al. On S , 1994, Stud Logica.
[160] M. F. Weiss,et al. Mechanisms for the formation of glycoxidation products in end-stage renal disease. , 2000, Kidney international.