1,216
Views
7
CrossRef citations to date
0
Altmetric
Laboratory Study

Whortleberry protects kidney against the cisplatin-induced nephrotoxicity: an experimental study

ORCID Icon, ORCID Icon, , , , , , & show all
Pages 466-474 | Received 11 Jul 2017, Accepted 15 Mar 2018, Published online: 21 Aug 2018

References

  • Kim SH, Hong KO, Hwang JK, et al. Xanthorrhizol has a potential to attenuate the high dose cisplatin-induced nephrotoxicity in mice. Food Chem Toxicol. 2005;43:117–122.
  • Bolaman Z, Köseoğlu MH, Demir S, et al. Effect of α-tocopherol on lipid peroxidation caused by cisplatin in rat kidney. Turk J Haematol. 2003;20:35–38.
  • Karimi G, Ramezani M, Tahoonian Z. Cisplatin nephrotoxicity and protection by milk thistle extract in rats. Evid Based Complement Alternat Med. 2005;2:383–386.
  • Yilmaz HR, Iraz M, Sogut S, et al. The effects of erdosteine on the activities of some metabolic enzymes during cisplatin-induced nephrotoxicity in rats. Pharmacol Res. 2004;50:287–290.
  • Nazıroǧlu M, Karaoğlu A, Aksoy AO. Selenium and high dose vitamin E administration protects cisplatin-induced oxidative damage to renal, liver and lens tissues in rats. Toxicology. 2004;195:221–230.
  • Dillioglugil M, Maral Kir H, Gulkac M, et al. Protective effects of increasing vitamin E and a doses on cisplatin-induced oxidative damage to kidney tissue in rats. Urol Int. 2005;75:340–344.
  • Mayne ST. Antioxidant nutrients and chronic disease: use of biomarkers of exposure and oxidative stress status in epidemiologic research. J Nutr. 2003;133:933S–940S.
  • Kerr ME, Bender CM, Monti EJ. An introduction to oxygen free radicals. Heart Lung. 1996;25:200–209.
  • Carvalho LF, Silva AMF, Carvalho AA. The use of antioxidant agents for chemotherapy‐induced peripheral neuropathy treatment in animal models. Clin Exp Pharmacol Physiol. 2017;44(10):971–979.
  • Sahu D, Sharma S, Singla RK, et al. Antioxidant activity and protective effect of suramin against oxidative stress in collagen induced arthritis. Eur J Pharm Sci. 2017;101:125–139.
  • Halliwell B, Murcia MA, Chirico S, et al. Free radicals and antioxidants in food and in vivo: what they do and how they work. Crit Rev Food Sci Nutr. 1995;35:7–20.
  • Yao N, Lan F, He R-R, et al. Protective effects of bilberry (Vaccinium myrtillus L.) extract against endotoxin-induced uveitis in mice. J Agric Food Chem. 2010;58:4731–4736.
  • Bao L, Yao X-S, Tsi D, et al. Protective effects of bilberry (Vaccinium myrtillus L.) extract on KBrO3-induced kidney damage in mice. J Agric Food Chem. 2008;56:420–425.
  • Wada L, Ou B. Antioxidant activity and phenolic content of Oregon caneberries. J Agric Food Chem. 2002;50:3495–3500.
  • Moyer RA, Hummer KE, Finn CE, et al. Anthocyanins, phenolics, and antioxidant capacity in diverse small fruits: vaccinium, rubus, and ribes. J Agric Food Chem. 2002;50:519–525.
  • Sellappan S, Akoh CC, Krewer G. Phenolic compounds and antioxidant capacity of Georgia-grown blueberries and blackberries. J Agric Food Chem. 2002;50:2432–2438.
  • Wang J, Mazza G. Inhibitory effects of anthocyanins and other phenolic compounds on nitric oxide production in LPS/IFN-gamma-activated RAW 264.7 macrophages. J Agric Food Chem. 2002;50:850–857.
  • Veljković M, Pavlović DR, Stojiljković N, et al. Bilberry: chemical profiling, in vitro and in vivo antioxidant activity and nephroprotective effect against gentamicin toxicity in rats. Phytother Res. 2017;31:115–123.
  • Bolaman Z, Köseoğlu MH, Demir S, et al. Effect of α-tocopherol on lipid peroxidation caused by cisplatin in rat kidney. Kidney. 2003;20(1):35–38.
  • Bao L, Yao X-S, Yau C-C, et al. Protective effects of bilberry (Vaccinium myrtillus L.) extract on restraint stress-induced liver damage in mice. J Agric Food Chem. 2008;56:7803–7807.
  • Yilmaz A, Tumkaya L, Akyildiz K, et al. Lasting hepatotoxic effects of prenatal mobile phone exposure. J Matern Fetal Neonatal Med. 2017;30:1355–1359.
  • Akca G, Eren H, Tumkaya L, et al. The protective effect of astaxanthin against cisplatin-induced nephrotoxicity in rats. Biomed Pharmacother. 2018;100:575–582.
  • Mercantepe T, Unal D, Selli J, et al. Protective effects of estrogen and bortezomib in kidney tissue of post-menopausal rats: an ultrastructural study. Renal Failure. 2016;38:1129–1135.
  • Oh G-S, Kim H-J, Shen A, et al. Cisplatin-induced kidney dysfunction and perspectives on improving treatment strategies. Electrolyte Blood Press. 2014;12:55–65.
  • Sastry J, Kellie SJ. Severe neurotoxicity, ototoxicity and nephrotoxicity following high-dose cisplatin and amifostine. Pediatr Hematol Oncol. 2005;22:441–445.
  • Miller RP, Tadagavadi RK, Ramesh G, et al. Mechanisms of cisplatin nephrotoxicity. Toxins (Basel). 2010;2:2490–2518.
  • Alhoshani AR, Hafez MM, Husain S, et al. Protective effect of rutin supplementation against cisplatin-induced Nephrotoxicity in rats. BMC Nephrol. 2017;18:194.
  • Yao X, Panichpisal K, Kurtzman N, et al. Cisplatin nephrotoxicity: a review. Am J Med Sci. 2007;334:115–124.
  • Kuhlmann M, Burkhardt G, Köhler H. Insights into potential cellular mechanisms of cisplatin nephrotoxicity and their clinical application. Nephrol Dial Transplant. 1997;12:2478–2480.
  • Pabla N, Dong Z. Cisplatin nephrotoxicity: mechanisms and renoprotective strategies. Kidney Int. 2008;73:994–1007.
  • Jiang M, Dong Z. Regulation and pathological role of p53 in cisplatin nephrotoxicity. J Pharmacol Exp Ther. 2008;327:300–307.
  • Nematbakhsh M, Pezeshki Z, Jazi FE, et al. Cisplatin-induced nephrotoxicity; protective supplements and gender differences. Asian Pac J Cancer Prev. 2017;18:295.
  • Nematbakhsh M, Ebrahimian S, Tooyserkani M, et al. Gender difference in cisplatin-induced nephrotoxicity in a rat model: greater intensity of damage in male than female. Nephrourol Mon. 2013;5:818.
  • Ghasemi M, Nematbakhsh M, Pezeshki Z, et al. Nephroprotective effect of estrogen and progesterone combination on cisplatin-induced nephrotoxicity in ovariectomized female rats. Indian J Nephrol. 2016;26:167.
  • Lu Y, Kawashima A, Horii I, et al. Cisplatin-induced cytotoxicity in BSO-exposed renal proximal tubular epithelial cells: sex, age, and species. Renal Failure. 2005;27:629–633.
  • Sakakibara H, Ogawa T, Koyanagi A, et al. Distribution and excretion of bilberry anthocyanins [corrected] in mice. J Agric Food Chem. 2009;57:7681–7686.
  • Ali BH, Cahliková L, Opletal L, et al. Effect of aqueous extract and anthocyanins of calyces of Hibiscus sabdariffa (Malvaceae) in rats with adenine‐induced chronic kidney disease. J Pharm Pharmacol. 2017;69(9):1219–1229.
  • Ramesh G, Reeves WB. Salicylate reduces cisplatin nephrotoxicity by inhibition of tumor necrosis factor-α. Kidney Int. 2004;65:490–498.
  • Strasser A, O'Connor L, Dixit VM. Apoptosis signaling. Annu Rev Biochem. 2000;69:217–245.