Bibliografia

PM6388V0 Renal Combi quartino 2024

Bibliografia
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  2. Anraku M et al. Effects of chitosan on oxidative stress and related factors hemodialysis patients. Carbohydrate polymers 2014; 112:152-157
  3. Biasibetti E, et al. A long term feed supplementation based on phosphate binders in feline chronic kidney disease. Veterinary Research Communications https://doi. org/10.1007/s11259-018-9719-z
  4. Brown SA. Oxidative stress and chronic kidney disease. Vet Clin Small Anim 2008;38:157-166
  5. Chew DJ. Chronic kidney disease in dogs and cats. Staging and management strategies. Canine and Feline Nephrology and Urology. 2nd edition – Chew DJ, DiBartola SP, Schenck PA. Elsevier Saunders, St. Luois Missouri, 2011
  6. Cigarran Guldris S, et al. Gut microbiota and chronic kidney disease. Nefrologia 2017;37(1):9-19
  7. Hand MS, et al. Small Animal Clinical Nutrition. 5th edition 2010. Mark Morris Institute ed.
  8. Hong YA, et al. Delayed treatment with oleanolic acid attenuates tubulointerstitial fibrosis in chronic cyclosporine nephropathy throughNrf2/HO-1 signaling. Journal of Translational Medicine 2014;12:50
  9. IRIS. International Renal Interest Society Treatment recommendations for CKD 2019
  10. Keegan RF, et al. Oxidative stress and neutrophil function in cats with chronic renal failure. J Vet Intern Med 2010;24:514-519
  11. Kieffer DA, et al. Impact of dietary fibers on nutrient management and detoxification organs: gut, liver and kidneys. Adv Nutr 2016;7:1111-1121
  12. Koppe L, et al. The role of gut microbiota and diet on uremic retention solutes production in the context of chronic kidney disease. Toxins 2018;10:155
  13. Lau WL, et al. Altered microbiome in chronic kidney disease: systemic effects of gut-derived uremic toxins. Clinical Science 2018;132:509-522
  14. Lopes RCSO, et al. Modulation of intestinal microbiota, control of nitrogen products and inflammation by pre/probiotics in chronic kidney disease: a systematic review. Nutr Hosp 2018;35:722-730
  15. Madlala HP, et al. Changes in renal function and oxidative status associated with the hypotensive effects of oleanolic acid and related synthetic derivatives in experimental animals. PLoS ONE 10(6): e0128192. Doi10.1371/journal. pone.0128192
  16. Mapanga RF, et al. Renal effects of plant-derived oleanolic acid in streptozocin-inducet diabetic rats. Renal Failure 2009;31:481-491
  17. Martello E, et al. Chronic kidney disease and dietary supplementation: effects on inflammation and oxidative stress. Vet. Sci. 2021, 8, 277. https://doi.org/10.3390/vetsci8110277
  18. Martello E, et al. Efficacy of a new dietary supplement in dogs with advanced chronic kidney disease. PlosOne DOI 10.7717/peerj.9663
  19. Meijers B, et al. Intestinal barrier function in chronic kidney disease. Toxins 2018;10:298; doi:10.3390/toxins10070298
  20. Meineri G, et al. The synergistic effects of prebiotics, probiotics, and antioxidants on dogs with chronic kidney disease. Italian Journal of Animal Science ISSN: (Print) (Online) Journal Homepage: https://www.tandfonline.com/loi/tjas20
  21. Pollier J. Oleanolic acid. Phytochemistry 2012;77:10-15
  22. Polzin DJ. Chronic kidney disease in small animals. Vet Clin Small Anim 2011;41:15-30
  23. Prokopienko AJ, et al. Microbiota-derived uremic retention solutes: perpetrators of altered nonrenal drug clearance in kidney disease. Expert Rev Clin Pharmacol 2018;11(1):71-82
  24. Ramezani A, et al. The gut microbiome, kidney disease and targeted interventions. J Am Soc Nephrol 2014;25:657-670
  25. Ramezani A, et al. Role of the gut microbiome in uremia: a potential therapeutic target. Am J Kidney DIs 2016;67(3):483-498
  26. Rodriguez-Rodriguez R. Oleanolic acid and related triterpenoids from olives on vascular function: molecular mechanisms and therapeutic perspectives. Current Medicinal Chemistry 2015;22:1414-1425
  27. Rossi M, et al. Pre-, pro-, and synbiotics: do they have a role in reducing uremic toxins? A systematic review and meta-analysis. Int J Nephrol 2012; doi:10.1155/2012/673631
  28. Rossi M, et al. Synbiotics easing renal failure by improving gut microbiology (SYNERGY): a randomized trial. Clin J Am Soc Nephrol 2016;11:223-231
  29. Roudebush P, et al. An evidence-based review of therapies for canine chronic kidney disease. Journal of Small Animal Practice 2010;51:244-252
  30. Sanchez-Quesada C, et al. Bioactive properties of the main triterpenes found in olives, virgin olive oil and leaves of Olea europaea. J Agric Food Chem 2013;61:12173-12182
  31. Schepers E, et al. The gut: the forgotten organ in uremia? Blood Purif 2010;29:130-136
  32. Swanson KS, et al. Fructoligosaccharides and Lactobacillus acidophilus modify gut microbial populations, total tract nutrient digestibility and fecal protein catabolite concentrations in healthy adult dogs. J Nutr 2002;132:3721-3731
  33. Tylicky L, et al. Antioxidants: a possible role in kidney protection. Kidney Blood Press Res 2003;26:303-314
  34. Valero-Munoz M, et al. Protective effect of a pomace olive oil concentrated in triterpenic acids in alterations related to hypertension in rats: mechanisms involved. Mol Nutr Food Res 2014;58:376-383







 

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