Yıl: 2020 Cilt: 34 Sayı: 3 Sayfa Aralığı: 147 - 151 Metin Dili: İngilizce İndeks Tarihi: 19-06-2021

Ameliorating Effects of Rutin on Nephrotoxicity Caused by Cisplatin in Rats

Öz:
Cisplatin treatment in patients with solid tumor is common, but a major factor limiting its use isnephrotoxic effects. Thus, this study was performed to investigate the effects of rutin on oxidativestress, apoptotic protein caspase-3 and anti-apoptotic protein Bcl-3 levels in nephrotoxicity causedby cisplatin in rats. The rats were randomly separated into three groups (7 rats in each group).Group I was treated with physiological saline. Group II was treated with cisplatin intraperitoneallyon the tenth day of the study. Group III was treated with rutin 150 mg/kg orally for 14 days pluscisplatin 10 mg/kg intraperitoneally on the tenth day of the study. The kidneys and blood sampleswere collected for the measurement of urea, creatinine, malondialdehyde (MDA), glutathione(GSH), superoxide dismutase (SOD), catalase, glutathione peroxidase (GSH-Px), caspase-3 andB-cell lymphoma protein 3 (Bcl-3) levels. Single dose cisplatin treatment in the rats caused thekidney injury. Rutin alleviated nephrotoxicity by significantly increasing antioxidant activity, anddecreasing MDA, caspase-3 and Bcl-3 levels (P<0.001). The present study suggested that rutincould decrease oxidative stress by enhancing antioxidant activity and nephrotoxicity caused bycisplatin by decreasing apoptotic pathways.
Anahtar Kelime:

Ratlarda Sisplatinden Kaynaklanan Nefrotoksisite Üzerine Rutinin İyileştirici Etkileri

Öz:
Solid tümörü olan hastalarda sisplatin tedavisi yaygındır, fakat kullanımını sınırlandıran önemli bir faktör nefrotoksik etkileridir. Dolayısıyla bu çalışma ratlarda sisplatinden kaynaklanan nefrotoksisitede oksidatif stres, apoptotik protein kaspaz-3 ve antiapoptotik protein Bcl-3 düzeyleri üzerine rutinin etkilerini değerlendirmek amacıyla yapıldı. Ratlar rastgele 3 gruba ayrıldı (her grupta 7 adet rat). Grup I’e serum fizyolojik uygulandı. Grup II’ye çalışmanın 10. gününde periton içi sisplatin uygulandı. Grup III’e 14 gün boyunca 150 mg/kg ağızdan rutin ve çalışmanın 10. gününde 10 mg/kg periton içi sisplatin uygulandı. Üre, kreatinin, malondialdehit (MDA), glutatyon (GSH), süperoksit dismutaz (SOD), katalaz, glutatyon peroksidaz (GSH-Px), kaspaz-3 ve B-hücre lenfoma protein 3 (Bcl-3) düzeylerinin ölçülmesi için böbrekler ve kan örnekleri toplandı. Ratlarda tek doz sisplatin uygulanması böbrek hasarına neden oldu. Rutin, antioksidant aktiviteyi artırarak ve MDA, kaspaz-3 ve Bcl-3 düzeylerini azaltarak nefrotoksisiteyi önemli düzeyde azalttı (P<0.001). Mevcut çalışma rutinin antioksidant aktiviteyi artırarak oksidatif stresi ve apoptotik yolakları azaltarak sisplatinden kaynaklanan nefrotoksisiteyi hafifletebileceğini gösterdi.
Anahtar Kelime:

Belge Türü: Makale Makale Türü: Araştırma Makalesi Erişim Türü: Erişime Açık
  • 1. Bergamini A, Pisano C, Di Napoli M, et al. Cisplatin can be safely administered to ovarian cancer patients with hypersensitivity to carboplatin. Gynecol Oncol 2017; 144: 72-76.
  • 2. Chen X, Zou H, Li H, et al. Weekly versus triweekly cisplatin-based chemotherapy concurrent with radiotherapy in the treatment of cervical cancer: A Metaanalysis. Int J Gynecol Cancer 2017; 27: 344-349.
  • 3. Guidi A, Codeca C, Ferrari D. Chemotherapy and immunotherapy for recurrent and metastatic head and neck cancer: a systematic review. Med Oncol 2018; 35: 37.
  • 4. Ma Y, Zhang NP, An N, et al. Clinical efficacy of weekly cisplatin for treatment of patients with breast cancer. Medicine (Baltimore) 2019; 98: e17114.
  • 5. Kosmidis C, Sapalidis K, Zarogoulidis P, et al. Inhaled Cisplatin for NSCLC: Facts and Results. Int J Mol Sci 2019; 20: pii: E205.
  • 6. Hu Z, Yu J, Gui G, et al. Cisplatin for testicular germ cell tumors: a rapid review. J Evid Based Med 2016; 9: 144- 151.
  • 7. Zhou X, Ling K, Liu M, et al. Targeted delivery of cisplatinderived nanoprecursors via a biomimetic yeast microcapsule for tumor therapy by the oral route. Theranostics 2019; 9: 6568-6586.
  • 8. Manohar S, Leung N. Cisplatin nephrotoxicity: A review of the literature. J Nephrol 2018; 31: 15-25.
  • 9. Hamroun A, Lenain R, Bigna JJ, et al. Prevention of cisplatin-induced acute kidney injury: A systematic review and meta-analysis. Drugs 2019; 79: 1567-1582.
  • 10. Kuhlmann MK, Burkhardt G, Kohler H. Insights into potential cellular mechanisms of cisplatin nephrotoxicity and their clinical application. Nephrol Dial Transplant 1997; 12: 2478-2480.
  • 11. Yang Y, Liu H, Liu F, Dong Z. Mitochondrial dysregulation and protection in cisplatin nephrotoxicity. Arch Toxicol 2014; 88: 1249-1256.
  • 12. Tanabe K, Tamura Y, Lanaspa MA, et al. Epicatechin limits renal injury by mitochondrial protection in cisplatin nephropathy. Am J Physiol-Renal Physiol 2012; 303: F1264-1274.
  • 13. Kharbangar A, Khynriam D, Prasad SB. Effect of cisplatin on mitochondrial protein, glutathione, and succinate dehydrogenase in Dalton lymphoma-bearing mice. Cell Biol Toxicol 2000; 16: 363-373.
  • 14. Pabla N, Dong Z. Cisplatin nephrotoxicity: mechanisms and renoprotective strategies. Kidney Int 2008; 73: 994- 1007.
  • 15. Ganeshpurkar A, Saluja AK. The pharmacological potential of rutin. Saudi Pharm J 2017; 25: 149-164.
  • 16. Hosseinzadeh H, Nassiri-Asl M. Review of the protective effects of rutin on the metabolic function as an important dietary flavonoid. J Endocrinol Invest 2014; 37: 783-788.
  • 17. Kandemir FM, Ozkaraca M, Yildirim BA, et al. Rutin attenuates gentamicin-induced renal damage by reducing oxidative stress, inflammation, apoptosis, and autophagy in rats. Ren Fail 2015; 37: 518-525.
  • 18. Caglayan C, Kandemir FM, Darendelioglu E, et al. Rutin ameliorates mercuric chloride-induced hepatotoxicity in rats via interfering with oxidative stress, inflammation and apoptosis. J Trace Elem Med Biol 2019; 56: 60-68.
  • 19. Caglayan C, Kandemir FM, Yildirim S, Kucukler S, Eser G. Rutin protects mercuric chloride-induced nephrotoxicity via targeting of aquaporin 1 level, oxidative stress, apoptosis and inflammation in rats. J Trace Elem Med Biol 2019; 54: 69-78.
  • 20. Aksu EH, Kandemir FM, Ozkaraca M, Omur AD, Kucukler S. Rutin ameliorates cisplatin-induced reproductive damage via suppression of oxidative stress and apoptosis in adult male rats. Andrologia 2017; 49: e12593.
  • 21. Enogieru AB, Haylett W, Hiss DC, Bardien S, Ekpo OE. Rutin as a potent antioxidant: Implications for neurodegenerative disorders. Oxid Med Cell Longev 2018; 2018: 6241017.
  • 22. Yang H, Wang C, Zhang L, Lv J, Ni H. Rutin alleviates hypoxia/reoxygenation-induced injury in myocardial cells by up-regulating SIRT1 expression. Chem Biol Interact 2019; 297: 4-49.
  • 23. Placer ZA, Cushman LL, Johnson BC. Estimation of product of lipid peroxidation (malonyl dialdehyde) in biochemical systems. Anal Biochem 1966; 16: 359-364.
  • 24. Aebi H. Catalase. In: Bergmeyer H (Editor). Methods in Enzymatic Analysis. New York: Academic Press. 1974; 276-286.
  • 25. Lowry OH, Rosebrough NJ, Farr AL, Randall RJ. Protein measurement with the Folin phenol reagent. J Biol Chem 1951; 193: 265-275.
  • 26. Sun Y, Oberley LW, Li Y. A simple method for clinical assay of superoxide dismutase. Clin Chem 1988; 34: 497- 500.
  • 27. Sedlak J, Lindsay RH. Estimation of total, protein-bound, and nonprotein sulfhydryl groups in tissue with Ellman's reagent. Anal Biochem 1968; 25: 192-205.
  • 28. Lawrence RA, Burk RF. Glutathione peroxidase activity in selenium-deficient rat liver. Biochem Biophys Res Commun 1976; 71: 952-958.
  • 29. Sümbüloğlu K, Sümbüloğlu V. Biyoistatistik. 6. Baskı, Ankara: Özdemir Basım, Yayım ve Dağıtım Ltd. Şti, 1995.
  • 30. Qin X, Meghana K, Sowjanya NL, et al. Embelin attenuates cisplatin-induced nephrotoxicity: Involving inhibition of oxidative stress and inflammation in addition with activation of Nrf-2/Ho-1 pathway. Biofactors 2019; 45: 471-478.
  • 31. Davis CA, Nick HS, Agarwal A. Manganese superoxide dismutase attenuates cisplatin-induced renal injury: importance of superoxide. J Am Soc Nephrol 2001; 12: 2683-2690.
  • 32. Kadikoylu G, Bolaman Z, Demir S, et al. The effects of desferrioxamine on cisplatin-induced lipid peroxidation and the activities of antioxidant enzymes in rat kidneys. Hum Exp Toxicol 2004; 23: 29-34.
  • 33. Arjumand W, Seth A, Sultana S. Rutin attenuates cisplatin induced renal inflammation and apoptosis by reducing NFkappaB, TNF-alpha and caspase-3 expression in wistar rats. Food Chem Toxicol 2011; 49: 2013-2021.
  • 34. Kandemir FM, Yildirim S, Caglayan C, Kucukler S, Eser G. Protective effects of zingerone on cisplatin-induced nephrotoxicity in female rats. Environ Sci Pollut Res Int 2019; 26: 22562-22574.
  • 35. Malik S, Suchal K, Gamad N, Dinda AK, Arya DS. Telmisartan ameliorates cisplatin-induced nephrotoxicity by inhibiting MAPK mediated inflammation and apoptosis. Eur J Pharmacol 2015; 748: 54-60.
  • 36. Nazari Soltan Ahmad S, Rashtchizadeh N, Argani H, et al. Tangeretin protects renal tubular epithelial cells against experimental cisplatin toxicity. Iran J Basic Med Sci 2019; 22: 179-186.
  • 37. Ko JW, Shin NR, Jung TY, et al. Melatonin attenuates cisplatin-induced acute kidney injury in rats via induction of anti-aging protein, Klotho. Food Chem Toxicol 2019; 129: 201-210.
  • 38. Qu S, Dai C, Lang F, et al. Rutin attenuates vancomycininduced nephrotoxicity by ameliorating oxidative stress, apoptosis, and inflammation in rats. Antimicrob Agents Chemother 2019; 63: e01545-18.
  • 39. Carmody RJ, Ruan Q, Palmer S, Hilliard B, Chen YH. Negative regulation of toll-like receptor signaling by NFkappaB p50 ubiquitination blockade. Science 2007; 317: 675-678.
  • 40. Collins PE, Kiely PA, Carmody RJ. Inhibition of transcription by B cell leukemia 3 (Bcl-3) protein requires interaction with nuclear factor kappaB (NF-kappaB) p50. J Biol Chem 2014; 289: 7059-7067.
  • 41. Poveda J, Sanz AB, Carrasco S, et al. Bcl3: A regulator of NF-kappaB inducible by TWEAK in acute kidney injury with anti-inflammatory and antiapoptotic properties in tubular cells. Exp Mol Med 2017; 49: e352.
APA KANDEMİR F, Hanedan B, AKTAS S, KÜÇÜKLER S, ÇAĞLAYAN C (2020). Ameliorating Effects of Rutin on Nephrotoxicity Caused by Cisplatin in Rats. , 147 - 151.
Chicago KANDEMİR Fatih Mehmet,Hanedan Başak,AKTAS SINAN,KÜÇÜKLER Sefa,ÇAĞLAYAN Cüneyt Ameliorating Effects of Rutin on Nephrotoxicity Caused by Cisplatin in Rats. (2020): 147 - 151.
MLA KANDEMİR Fatih Mehmet,Hanedan Başak,AKTAS SINAN,KÜÇÜKLER Sefa,ÇAĞLAYAN Cüneyt Ameliorating Effects of Rutin on Nephrotoxicity Caused by Cisplatin in Rats. , 2020, ss.147 - 151.
AMA KANDEMİR F,Hanedan B,AKTAS S,KÜÇÜKLER S,ÇAĞLAYAN C Ameliorating Effects of Rutin on Nephrotoxicity Caused by Cisplatin in Rats. . 2020; 147 - 151.
Vancouver KANDEMİR F,Hanedan B,AKTAS S,KÜÇÜKLER S,ÇAĞLAYAN C Ameliorating Effects of Rutin on Nephrotoxicity Caused by Cisplatin in Rats. . 2020; 147 - 151.
IEEE KANDEMİR F,Hanedan B,AKTAS S,KÜÇÜKLER S,ÇAĞLAYAN C "Ameliorating Effects of Rutin on Nephrotoxicity Caused by Cisplatin in Rats." , ss.147 - 151, 2020.
ISNAD KANDEMİR, Fatih Mehmet vd. "Ameliorating Effects of Rutin on Nephrotoxicity Caused by Cisplatin in Rats". (2020), 147-151.
APA KANDEMİR F, Hanedan B, AKTAS S, KÜÇÜKLER S, ÇAĞLAYAN C (2020). Ameliorating Effects of Rutin on Nephrotoxicity Caused by Cisplatin in Rats. Fırat Üniversitesi Sağlık Bilimleri Veteriner Dergisi, 34(3), 147 - 151.
Chicago KANDEMİR Fatih Mehmet,Hanedan Başak,AKTAS SINAN,KÜÇÜKLER Sefa,ÇAĞLAYAN Cüneyt Ameliorating Effects of Rutin on Nephrotoxicity Caused by Cisplatin in Rats. Fırat Üniversitesi Sağlık Bilimleri Veteriner Dergisi 34, no.3 (2020): 147 - 151.
MLA KANDEMİR Fatih Mehmet,Hanedan Başak,AKTAS SINAN,KÜÇÜKLER Sefa,ÇAĞLAYAN Cüneyt Ameliorating Effects of Rutin on Nephrotoxicity Caused by Cisplatin in Rats. Fırat Üniversitesi Sağlık Bilimleri Veteriner Dergisi, vol.34, no.3, 2020, ss.147 - 151.
AMA KANDEMİR F,Hanedan B,AKTAS S,KÜÇÜKLER S,ÇAĞLAYAN C Ameliorating Effects of Rutin on Nephrotoxicity Caused by Cisplatin in Rats. Fırat Üniversitesi Sağlık Bilimleri Veteriner Dergisi. 2020; 34(3): 147 - 151.
Vancouver KANDEMİR F,Hanedan B,AKTAS S,KÜÇÜKLER S,ÇAĞLAYAN C Ameliorating Effects of Rutin on Nephrotoxicity Caused by Cisplatin in Rats. Fırat Üniversitesi Sağlık Bilimleri Veteriner Dergisi. 2020; 34(3): 147 - 151.
IEEE KANDEMİR F,Hanedan B,AKTAS S,KÜÇÜKLER S,ÇAĞLAYAN C "Ameliorating Effects of Rutin on Nephrotoxicity Caused by Cisplatin in Rats." Fırat Üniversitesi Sağlık Bilimleri Veteriner Dergisi, 34, ss.147 - 151, 2020.
ISNAD KANDEMİR, Fatih Mehmet vd. "Ameliorating Effects of Rutin on Nephrotoxicity Caused by Cisplatin in Rats". Fırat Üniversitesi Sağlık Bilimleri Veteriner Dergisi 34/3 (2020), 147-151.