The effect of dietary tryptophan levels on oxidative stress of liver induced by diquat in weaned piglets
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X. Mao | Daiwen Chen | Jun He | P. Zheng | Jie Yu | M. Lv | B. Yu | Quyuan Wang
[1] X. Mao,et al. The effect of dietary tryptophan levels on oxidative stress of liver induced by diquat in weaned piglets , 2014, Journal of Animal Science and Biotechnology.
[2] X. Mao,et al. Protective effects of dietary arginine supplementation against oxidative stress in weaned piglets , 2012, British Journal of Nutrition.
[3] X. Mao,et al. Dietary l-arginine supplementation enhances porcine β-defensins gene expression in some tissues of weaned pigs , 2012 .
[4] S. Kim,et al. Dietary L-tryptophan supplementation with reduced large neutral amino acids enhances feed efficiency and decreases stress hormone secretion in nursery pigs under social-mixing stress. , 2012, The Journal of nutrition.
[5] J. Odle,et al. Effects of increasing tryptophan intake on growth and physiological changes in nursery pigs. , 2012, Journal of animal science.
[6] X. Mao,et al. Responses of growth performance and tryptophan metabolism to oxidative stress induced by diquat in weaned pigs. , 2012, Animal : an international journal of animal bioscience.
[7] Z. Fang,et al. Tryptophan supplements promote pregnancy success in mice challenged with pseudorabies virus (PRV) by regulating the expression of systemic cytokines, immunoglobulins, PRV-specific protein profiles, and toll-like receptors. , 2011, Journal of medicinal food.
[8] Daiwen Chen,et al. Effects of Oxidative Stress Induced by Diquat on Arginine Metabolism of Postweaning Pigs , 2009 .
[9] J. Pedraza-Chaverri,et al. Role of oxidative and nitrosative stress in cisplatin-induced nephrotoxicity. , 2009, Experimental and toxicologic pathology : official journal of the Gesellschaft fur Toxikologische Pathologie.
[10] P. Lestaevel,et al. Different pattern of brain pro-/anti-oxidant activity between depleted and enriched uranium in chronically exposed rats. , 2009, Toxicology.
[11] M. Mazzoni,et al. A tryptophan-enriched diet improves feed intake and growth performance of susceptible weanling pigs orally challenged with Escherichia coli K88. , 2009, Journal of animal science.
[12] Benicio N Frey,et al. Oxidative stress markers in bipolar disorder: a meta-analysis. , 2008, Journal of affective disorders.
[13] Daiwen Chen,et al. Effects of Oxidative Stress on Growth Performance, Nutrient Digestibilities and Activities of Antioxidative Enzymes of Weanling Pigs , 2007 .
[14] N. J. Gibbons,et al. Hydrogen peroxide-mediated oxidative stress disrupts calcium binding on calmodulin: more evidence for oxidative stress in vitiligo. , 2007, Biochemical and biophysical research communications.
[15] D. Blagojević,et al. The anti-oxidative defence system in the isolated rat uterus during spontaneous rhythmic activity. , 2006, Acta physiologica Hungarica.
[16] E. Antunes,et al. Non-steroidal anti-inflammatory agents, tolmetin and sulindac, inhibit liver tryptophan 2,3-dioxygenase activity and alter brain neurotransmitter levels. , 2006, Life sciences.
[17] S. Biswal,et al. Nrf2 regulates an adaptive response protecting against oxidative damage following diquat-mediated formation of superoxide anion. , 2006, Archives of biochemistry and biophysics.
[18] D. Spitz,et al. Mechanisms of H2O2-induced oxidative stress in endothelial cells. , 2006, Free radical biology & medicine.
[19] B. Kerr,et al. Effects of supplemental L-tryptophan on serotonin, cortisol, intestinal integrity, and behavior in weanling piglets. , 2006, Journal of animal science.
[20] M. Forrest,et al. Polymorphisms in the oxidative stress genes, superoxide dismutase, glutathione peroxidase and catalase and risk of non-Hodgkin's lymphoma. , 2006, Haematologica.
[21] J. Drevet,et al. Quantitative and spatial differences in the expression of tryptophan-metabolizing enzymes in mouse epididymis , 2006, Cell and Tissue Research.
[22] W. McGinnis. Oxidative stress in autism. , 2004, Alternative therapies in health and medicine.
[23] A. Woźniak,et al. Activity of antioxidant enzymes and concentration of lipid peroxidation products in selected tissues of mice of different ages, both healthy and melanoma-bearing , 2004, Zeitschrift für Gerontologie und Geriatrie.
[24] K. Eder,et al. Thermally oxidized dietary fats increase the susceptibility of rat LDL to lipid peroxidation but not their uptake by macrophages. , 2003, The Journal of nutrition.
[25] B. Séve,et al. Physiological roles of tryptophan in pig nutrition. , 1999, Advances in experimental medicine and biology.
[26] J. Mench,et al. Decreases in aggression in tryptophan-supplemented broiler breeder males are not due to increases in blood niacin levels. , 1996, Poultry science.
[27] J. Gutteridge,et al. Lipid peroxidation and antioxidants as biomarkers of tissue damage. , 1995, Clinical chemistry.
[28] J. Morrow,et al. Pathogenesis of diquat‐induced liver necrosis in selenium‐deficient rats: Assessment of the roles of lipid peroxidation and selenoprotein P , 1995, Hepatology.
[29] D. Carrión,et al. Use of plasma urea nitrogen as a rapid response criterion to determine the lysine requirement of pigs. , 1995, Journal of animal science.
[30] B. Séve,et al. Effect of dietary tryptophan on muscle, liver and whole-body protein synthesis in weaned piglets: relationship to plasma insulin , 1991, British Journal of Nutrition.
[31] B. Séve,et al. Impact of dietary tryptophan and behavioral type on growth performance and plasma amino acids of young pigs. , 1991, Journal of animal science.
[32] R. Stocker,et al. Antioxidant activities of some tryptophan metabolites: possible implication for inflammatory diseases. , 1990, Proceedings of the National Academy of Sciences of the United States of America.
[33] D. Baker,et al. Amino acid excesses for young pigs: effects of excess methionine, tryptophan, threonine or leucine. , 1987, Journal of animal science.
[34] P. Leathwood. Tryptophan Availability and Serotonin Synthesis , 1987, Proceedings of the Nutrition Society.
[35] S. Jain. The accumulation of malonyldialdehyde, a product of fatty acid peroxidation, can disturb aminophospholipid organization in the membrane bilayer of human erythrocytes. , 1984, The Journal of biological chemistry.
[36] H. Sidransky,et al. Effect of elevated dietary tryptophan on protein synthesis in rat liver. , 1981, The Journal of nutrition.
[37] W. Horwitz. Official Methods of Analysis , 1980 .
[38] L. G. Ensminger. The Association of Official Analytical Chemists , 1976 .
[39] Board on Agriculture,et al. Nutrient requirements of swine , 1964 .
[40] O. H. Lowry,et al. Protein measurement with the Folin phenol reagent. , 1951, The Journal of biological chemistry.