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Glutathione Complex References

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  2. Forman HJ. Glutathione: overview of its protective roles, measurement, and biosynthesis. Mol Aspects Med. 2009; 30(1-2): 1-12. 
  3. Homma T et al. Application of glutathione as anti-oxidative and anti-aging drugs. Curr Drug Metab. 2015; 16(7): 560-71.
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  5. Mari M et al. Mitochondrial glutathione, a key survival antioxidant. Antioxid Redox Signal. 2009; 11(11): 2685-70
  6. Perricone C et al. Glutathione: a key player in autoimmunity. Autoimmun Rev. 2009; 8(8): 697-701
  7. Dröge W et al. Glutathione and immune function. Proc Nutr Soc. 2000; 59(4): 595-600.  
  8. Bajic VP et al. Glutathione “redox homeostasis” and its relation to cardiovascular disease. Oxid Med Cell Longev. 2019; 2019: 5028181.
  9. Hodges RE et al. Modulation of metabolic detoxification pathways using foods and food-derived components: a scientific review with clinical application. J Nutr Metab. 2015; 2015: 760689.
  10. Keum YS. Regulation of Nrf2-mediated phase II detoxification and anti-oxidant genes. Biomol Ther. 2012; 20(2): 144-151. 
  11. Fraternale A et al. Glutathione and glutathione derivatives in immunotherapy. Biol Chem. 2017; 398(2): 261-275.
  12. Kamide Y. Allergy. Intracellular glutathione redox status in human dendritic cells regulates IL-27 production and T-cell polarization. Allergy. 2011; 66(9): 1183-92. 
  13. Dröge W et al. Functions of glutathione and glutathione disulfide in immunology and immunopathology. FASEB J; 8:1131–8
  14. Gambhir JK et al. Correlation between blood antioxidant levels and lipid peroxidation in rheumatoid arthritis. Clin Biochem; 30: 351–5. 
  15. Ortona E, Redox state, cell death and autoimmune diseases: a gender perspective. Autoimmun Rev; 7: 579–84. 
  16. Griffiths HR. Is the generation of neo-antigenic determinants by free radicals central to the development of autoimmune rheumatoid disease? Autoimmun Rev; 7: 544–9. 
  17. Burek CL, Rose NR. Autoimmune thyroiditis and ROS. Autoimmun Rev; 7: 530–7. 
  18. Gheita TA et al.  Measurement of malondialdehyde, glutathione, and glutathione peroxidase in SLE patients. Methods Mol Biol. 2014; 1134: 193-9.
  19. Kumar D et al. A link between maternal malnutrition and depletion of glutathione in the developing lens: a possible explanation for idiopathic childhood cataract? Clin Exp Optom. 2013; 96(6): 523-8. 
  20. Teskey G. Glutathione as a marker for human disease. Adv Clin Chem. 2018; 87: 141-159. 
  21. Jiang S et al. Glutathione protects against hepatic injury in a murine model of primary Sjögren’s syndrome. Bosn J Basic Med Sci. 2016; 16(3): 227-31.
  22. Sinha R et al. Oral supplementation with liposomal glutathione elevates body stores of glutathione and markers of immune function. Eur J Clin Nutr. 2018; 72(1): 105-111.
  23. Drisko JA. Chelation Therapy. In: Integrative Medicine (Fourth Edition) 2018: (107): 1004-1014.
  24. Lawley SD et al. Mathematical modeling of the effects of glutathione on arsenic methylation. Theor Biol Med Model. 2014; 11: 20. 
  25. Guildford FT et al. Deficient glutathione in the pathophysiology of mycotoxin-related illness. Toxins (Basel). 2014; 6(2): 608-23. 
  26. Hope JH et al. A review of the diagnosis and treatment of ochratoxin an inhalational exposure associated with human illness and kidney disease including focal segmental glomerulosclerosis. J Environ Public Health. 2012; 2012: 835059. 
  27. Damy T et al. Glutathione deficiency in cardiac patients is related to functional status and structural cardiac abnormalities. PLoS One. 2009. (4):3: e4781. 
  28. Biswas SK et al. Depressed glutathione synthesis precedes oxidative stress and atherogenesis in Apo-E−/− mice. Biochem Biophys Res Commun. 2005; 338(3): 1368–1373.
  29. Shimizu H et al. Relationship between plasma glutathione levels and cardiovascular disease in a defined population: the Hisayama study. Stroke. 2004; 35(9): 2072-2077 
  30. de la Asuncion JG et al. Mitochondrial glutathione oxidation correlates with age-associated oxidative damage to mitochondrial DNA. The FASEB Journal. 1996; 10(2): 333–338. 
  31. Rae CD et al. Glutathione in the human brain: Review of its roles and measurement by magnetic resonance spectroscopy. Anal Biochem. 2017 Jul 15; 529: 127-143. 
  32. Saharan S et al. The emerging role of glutathione in Alzheimer’s disease. J Alzheimers Dis. 2014; 40(3): 519-29. 
  33. Chen Y et al. Glutathione defense mechanism in liver injury: insights from animal models. Food Chem Toxicol. 2013; 60: 38-44 
  34. Abenavoli L. et al. Milk thistle in liver diseases: Past, present, future. Phytother Res. 2010; 24(10): 1423-32.  
  35. Crocenzi FA et al. Silymarin as a new hepatoprotective agent in experimental cholestasis: new possibilities for an ancient medication. Curr Med Chem. 2006; 13(9): 1055-74.
  36. Soto C. Effect of silymarin on kidneys of rats suffering from alloxan-induced diabetes mellitus. Phytomedicine. 2010; 17(14): 1090-4. 
  37. Kiruthiga PV Silymarin protects PBMC against B(a)P induced toxicity by replenishing redox status and modulating glutathione metabolizing enzymes–an in vitro study. Toxicol Appl Pharmacol. 2010; 247(2): 116-28.
  38. Day CR et al. Betaine chemistry, roles, and potential use in liver disease. Biochim Biophys Acta. 2016; 1860(6): 1098-106. 
  39. Kempson SA et al. Betaine transport in kidney and liver: use of betaine in liver injury. Cell Physiol Biochem. 2013; 32(7): 32-40
  40. Zhao G et al. Betaine in inflammation: mechanistic aspects and applications. Front Immunol. 2018; 9: 1070. 
  41. Craig SA. Betaine in human nutrition. Am J Clin Nutr. 2004 Sep; 80(3): 539-49. 
  42. Mikkelsen K et al. B Vitamins and Ageing. In: Biochemistry and Cell Biology of Ageing: Part I Biomedical Science, Subcellular Biochemistry 90: Chapter 15.
  43. Hodges RE et al. Modulation of metabolic detoxification pathways using foods and food-derived components: a scientific review with clinical application. J Nutr Metab. 2015; 2015: 760689.
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