Evaluation of the effect of administration of Tadalafil on Gentamicin-induced nephrotoxicity in rats

Document Type : Original Article

Authors

1 Department of Pharmacology, Faculty of Medicine, Beni-Suef University, Beni-Suef, Egypt.

2 Department of Pathology, Faculty of Medicine, Beni-Suef University, Beni-Suef, Egypt.

Abstract

Background: Gentamicin (GNT) is a highly effective aminoglycoside antibiotic that is commonly used to treat life-threatening bacterial infections. Aim: The aim of the current study is to determine whether tadalafil can protect against GNT-induced nephrotoxicity. Methods: Twenty-four male Albino rats were used in the study, which were randomly divided into four groups, six animals each. Control untreated group received distilled water (5ml/kg, P.O) for 12 days and on days 6-12, they received (5ml/kg,i.p) normal saline daily, one hour after oral administration of distilled water. Tadalafil group received tadalafil (5mg/kg, P.O) for 12 days and on days 6-12, they received (5ml/kg,i.p) of normal saline daily, one hour after oral administration of tadalafil. Gentamicin group received distilled water (5ml/kg, P.O) and on days 6-12, they received gentamicin (100mg/kg,i.p) one hour after oral administration of distilled water. Gentamicin+Tadalafil group received tadalafil (5mg/kg, P.O) for 12 days and on days 6-12, they received gentamicin (100mg/kg,i.p) one hour after oral administration of tadalafil. Body weight and kidney weight were investigated. Urine volume as well as urinary albumin, creatinine, creatinine clearance and albumin /creatinine ratio (ACR) were evaluated. Besides, serum levels of urea and creatinine were measured as kidney function parameters. Renal tissues oxidative stress markers as malondialdehyde (MDA) and the antioxidant enzymes as superoxide dismutase (SOD) and catalase (CAT) activities. Renal cortex nitric oxide (NO) and kidney injury molecule-1 (KIM-1) were evaluated. Histological analysis and immunohistochemical expression of endothelial nitric oxide synthase (eNOS) and inducible nitric oxide synthase (iNOS) were performed. The results of the present study showed that GNT decreased creatinine clearance and increased the serum levels of renal function parameters. GNT caused a significant increase in renal cortex MDA, NO and urine levels of KIM-1, while it decreased CAT and SOD activities.  Gentamicin   administration resulted in increased immunohistochemical expression of iNOS enzyme while decreasing eNOS expression. Renal corpuscles and tubules also showed histological and ultrastructural changes. Pretreatment with tadalafil, on the other hand, reversed the effects of GNT administration.  In conclusion, findings of the present study indicate that tadalafil reduces GNT-induced kidney damage by inhibition of inflammation, oxidative stress, and apoptosis.

Keywords

Main Subjects


  1. Nagib RM. Inhibitory Effects of Grape Seeds Powder, Extract and Oil on Gentamicin Induced Nephrotoxicity in Rats (2014). Egypt Journal of Nutrition and Health;9(1):1.
  2. Wargo K and Edwards J. Aminoglycoside-Induced Nephro-toxicity (2014). Journal of Pharmcological Practice;27(6):573.
  3. Adil M, Kandhare AD, Dalvi G, Ghosh P, Venkata S, Raygude KS, Bodhankar SL. Ameliorative effect of berberine against gentamicin induced nephrotoxicity in rats via attenuation of oxidative stress, inflammation, apoptosis, and mitochondrial dysfunction (2016). Journal of Renal failure;38(6):996.
  4. Hafez LO, Ali FA, El-Ghoneimy AA and Abdel-Aziz MI. Nephro-Protective effect of wheat germ oil on gentamicin-induced acute nephrotoxicity in wistar albino rat (2019). SVU-International Journal of Veterinary Sciences;2(1):51.
  5. Cairoli C, Reyes LA, Henneges C and Sorsaburu S. PDE5 inhibitor treatment persistence and adherence in Brazilian men: post-hoc analyses from a 6-month, prospective, observational study (2014). International Brazilian Journal of Urology;40(3):390.
  6. Tomita N, Hotta Y, Naiki-Ito A, Hirano K, Kataoka T, Maeda Y, Takahashi S, Kimura K. The phosphodiesterase 5 inhibitor tadalafil has renoprotective effects in a rat model of chronic kidney disease (2020). Journal of Reproductive Physiology;8(17):14556.
  7. Okamoto K, Kurita M, Yamaguchi H, Numakura Y, Oka M. Effect of tadalafil on chronic pelvic pain and prostatic inflammation in a rat model of experimental autoimmune prostatitis (2018). Journal of Prostate;78(10):707.
  8. Brock G, Ni X, Oelke M, Mulhall J, Rosenberg M, Seftel A, D'Souza D and Barry J. Efficacy of continuous dosing of tadalafil once daily vs. tadalafil on demand in clinical subgroups of men with erectile dysfunction: A descriptive comparison using the Integrated Tadalafil Databases (2016). The Journal of Sexual Medicine;13(5):860.
  9. Morsy MA, Ibrahim SA, Entesar FA, Kamel MA, Rifaai RA and Hassan MK. Sildenafil Ameliorates Gentamicin-Induced Nephrotoxicity in Rats: Role of iNOS and eNOS (2014). Journal of Toxicology;2014.
  10. Adeneye A and Benebo AS. Chemopreventive Effect of Tadalafil in Cisplatin-Induced Nephrotoxicity in Rats (2016). Nigerian Journal of Physiological Sciences;31(1):1.
  11. AL-kuraishy HM, AL-Gareeb AI and Rasheed Antioxidant and anti-inflammatory effects of Curcumin contribute into attenuation of acute Gentamicin -induced nephrotoxcity in rats (2019). Asian Journal of Pharmaceutical and Clinical Research;2(3):30875.
  12. Kampmann JP and Hansen JM. Glomerular filtration rate and creatinine clearance (1981). British Journal of Clinical Pharmacology;12(1):7.
  13. Hosaka EM, Santos OFP, Seguro AC and Vattimo MFF. Effect of cyclooxygenase inhibitors on gentamicin-induced nephrotoxicity in rats (2004). Brazilian Journal of Medical and Biological Research;37(7):979.
  14. Sahu BD, Tatireddy S, Koneru M, Borkar RM, Kumar JM, Kuncha M, Srinivas R and Sistla R. Naringin ameliorates gentamicin-induced nephrotoxicity and associated mitochondrial dysfunction, apoptosis, and inflammation in rats: possible mechanism of nephroprotection (2014). Journal of Toxicology and Applied Pharmacology;277(1):8.
  15. El-Kashef DH, El-Kenawi A, Suddek GM and Salem HA. Protective effect of allicin against gentamicin-induced nephrotoxicity in rat (2015). Journal of Internternational Immunopharmacology;29(2):679.
  16. Salama SA, Arab HH and Maghrabi IA. Troxerutin down-regulates KIM-1, modulates p38 MAPK signaling, and enhances renal regenerative capacity in a rat model of gentamicin-induced acute kidney injury (2018). Journal of Food &Function;9(12):6632.
  17. Ghaznavi H, Mehrzadi S, Dormanesh B, Tabatabaei SM, Vahedi H, Hosseinzadeh A, Pazoki-Toroudi H, Rashidian A. Comparison of the Protective Effects of Melatonin and Silymarin Against Gentamicin-Induced Nephrotoxicity in Rats (2016). Journal of Evidence-Based Integrative Medicine;21(4):49.
  18. Adeneye A and Benebo AS. Chemopreventive Effect of Tadalafil in Cisplatin-Induced Nephrotoxicity in Rats (2016). Nigerian Journal of Physiological Sciences;31(1):1.
  19. Azouz AA, Saleh E and Abo-Saif AA. Aliskiren, tadalafil, and cinnamaldehyde alleviate joint destruction biomarkers; MMP-3 and RANKL; in complete Freund's adjuvant arthritis model: ownregulation of IL-6/JAK2/STAT3 signaling pathway (2020). Saudi Pharmaceutical Journal: SPJ: the official publication of the Saudi Pharmaceutical Society;28(9):1101.
  20. Hejazi S, Kasebzadeh M and Tagdisi A. The Effect of Gentamicin Nephrotoxicity in Newborn Mice at Breastfeeding (2018). International Journal of Morphology;1(36):2.
  21. Jaikumkao K, Pongchaidecha A, Chattipakorn N, Chatsudthipong V, Promsan S, Arjinajarn P and Lungkaphin A. Atorvastatin improves renal organic anion transporter 3 and renal function in gentamicin-induced nephrotoxicity in rats (2016). Experimental Physiology;101(6):743.
  22. Balakumar P, WitnessKoe WE, Gan YS, JemayPuah SM, Kuganesswari S, Prajapati SK, Varatharajan R, Jayachristy SA, Sundram K and Bahari MB. Effects of pre- and post-treatments with dipyridamole in gentamicin-induced acute nephrotoxicity in the rat (2017). Journal of Regulatory Toxicology and Pharmacology;84:35.
  23. Ehsani V, Amirteimoury M, Taghipour Z, Shamsizadeh A, Bazmandegan G, Rahnama A, Khajehasani F and Fatemi I. Protective effect of hydroalcoholic extract of Pistacia vera against gentamicin-induced nephrotoxicity in rats (2017). Journal of Renal Failure;39(1):519.
  24. Randjelovic P, Veljkovic S, Stojiljkovic N,  Sokolovic D and Ilic Gentamicin nephrotoxicity in animals: Current knowledge and future perspectives (2017). Journal of Experimental and Clinical Sciences;16:388.
  25. Diamond JR and Yoburn DC. Nonoliguric Acute Renal Failure (1982). Journal of Archives of Internernal Medicine;142(10):1882.
  26. Choi HM, Kim SC, Kim MG, Jo SK, Cho WY, and Kim HK.  Etiology and outcomes of anuria in acute kidney injury: a single center study (2015). Journal of Kidney Research and Clinical Practice;34(1):13.
  27. Dungca NT. Protective effect of the methanolic leaf extract of Eclipta alba (L.) Hassk. (Asteraceae) against gentamicin-induced nephrotoxicity in Sprague Dawley rats (2016). Journal of Ethnopharmacology;184:18.
  28. Chen Q, Cui Y, Ding G, Jia Z, Zhang Y, Zhang A and Huang S. PEA3 protects against gentamicin nephrotoxicity: role of mitochondrial dysfunction (2017). American Journal of Translational Research;9(5):2153.
  29. Abdelrahman RS. Protective effect of apocynin against gentamicin-induced nephrotoxicity in rats (2018). Human & Experimental Toxicology Journal;37(1):27.
  30. Abd-Elhamid TH, Elgamal DA, Ali SS, Ali FE, Hassanein EH, El-Shoura EA and Hemeida RA. Reno-protective effects of ursodeoxycholic acid against gentamicin-induced nephrotoxicity through modulation of NF-κB, eNOS and caspase-3 expressions (2018). Journal of Cell Tissue Research;374(2):367.
  31. Mehan S, Dudi R and Kalra S. Renoprotective effect of corosolic acid in gentamicin-induced nephrotoxicity and renal dysfunction in experimental rats (2017). Journal of Annals of Pharmacology and Pharmaceutics;2(12):1065.
  32. Pavlakou P, Liakopoulos V, Eleftheriadis T, Mitsis M and Dounousi E. Oxidative stress and acute kidney injury in critical illness: pathophysiologic mechanisms biomarkers inter ventions, and future perspectives (2017). Journal of Oxidative Medicine and Cellular Longevity;2017.
  33. Sardana A, Kalra S, Khanna D, Balakumar P. Nephroprotective effect of catechin on gentamicin-induced experimental nephrotoxicity (2015). Journal of Clinical and Experimental Nephrology;19(2):178.
  34. Özbek K, Ceyhan K, Koç F, Söğüt E, Altunkaş F, Karayakalı M, Çelik A, Kadı H, Köseoğlu RD, Önalan O. The protective effect of single dose tadalafil in contrast-induced nephropathy: an experimental study (2015). Anatolian Journal of Cardiology;15(4):306.
  35. Georgiadis G, Zisis IE, Docea AO, Tsarouhas K, Karavitakis M, Fragkiadoulaki I, Mavridis C, Calina D, Stratakis S, Stylianou K, Tsitsimpikou K, Sofikitis N, Tsatsakis A and Mamoulakis C. Current Concepts on the Reno-Protective Effects of Phosphodiesterase 5 Inhibitors in Acute Kidney Injury: Systematic Search and Review (2020). Journal of Clinical Medicine;9(5):1284.
  36. Elhawary AM and Abdullah OProtective effect of tadalafil in diabetic nephropathy induced rat model (2017). International Journal of Basic and Clinical pharmacology;6(4):711.
  37. Erol B, Turker T, Tok A, Bektas S, Mungan G, Ozkanli S, Karakas B, Tokgoz H, Akduman B and Mungan A. The protective effects of tadalafil on renal damage following ischemia reperfusion injury in rats (2015). The Kaohsiung Journal of Medical Sciences;31(9):454.
  38. Altaş M, Aras M, Meydan S, Nacar E, Ulutaş KT, Serarslan Y and Yılmaz N. Effects of tadalafil on ischemia/reperfusion injury in rat brain (2014). Journal of Acta Neurologica Belgica;114(1):33.
  39. Azouz AA, Saleh E and Abo-Saif AA. Aliskiren, tadalafil, and cinnamaldehyde alleviate joint destruction biomarkers; MMP-3 and RANKL; in complete Freund's adjuvant arthritis model: ownregulation of IL-6/JAK2/STAT3 signaling pathway (2020). Saudi Pharmaceutical Journal: SPJ: the official publication of the Saudi Pharmaceutical Society;28(9):1101.
  40. Zhu CY, Liu M, Liu YZ, Li W, Zhai W, Che JP, Yan Y, Wang GC, and Zheng JH. Preventive effect of phosphodiesterase 5 inhibitor tadalafil on experimental post-pyelonephritic renal injury in rats (2014). Journal of Surgical Research;186(1):253.