1. Effects of Nitroglycerine on Renal Ischemia-Reperfusion Injury in Adult Male Rats
- Author
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Fatemeh Ghanbari, Fatemeh Ahmadi, Ali Rahbari, and Saeed Hajihashemi
- Subjects
Male ,medicine.medical_specialty ,Antioxidant ,medicine.medical_treatment ,Renal function ,Kidney ,Protective Agents ,01 natural sciences ,Antioxidants ,Lipid peroxidation ,Electrolytes ,Nitroglycerin ,03 medical and health sciences ,chemistry.chemical_compound ,0302 clinical medicine ,Internal medicine ,medicine.artery ,Drug Discovery ,medicine ,Animals ,Rats, Wistar ,Renal artery ,Vein ,010405 organic chemistry ,business.industry ,Sodium ,Acute kidney injury ,Kidney metabolism ,General Medicine ,Acute Kidney Injury ,medicine.disease ,Rats ,0104 chemical sciences ,Oxidative Stress ,medicine.anatomical_structure ,Endocrinology ,chemistry ,Regional Blood Flow ,Creatinine ,Reperfusion Injury ,030220 oncology & carcinogenesis ,Renal blood flow ,Potassium ,Lipid Peroxidation ,business - Abstract
Background Ischemia-reperfusion (I-R) leads to acute kidney injury (AKI). The present study investigated the effects of nitroglycerine (NG) on improving renal dysfunctions caused by I-R in rats. Methodology Twenty-four rats were equally divided into four groups: (1) the control group, (2) the sham group, (3) the I-R group, and (4) NG-treated groups.NG (50 μg/kg) was injected intraperitoneally after induction of IR. I-R was induced through clamping of the bilateral renal artery and vein of both kidneys for 20 min followed by 24 h of reperfusion. Results NG significantly increased the creatinine clearance levels and renal blood flow rate (which was reduced by I-R). NG also significantly improved serum electrolytes (sodium and potassium) that were disordered by I-R. In addition, NG significantly offset impaired antioxidant defense mechanism and inhibited lipid peroxidation. Conclusions The results show NG has a protective effect on renal tissue against AKI caused by I-R. These protective effects mediated through antioxidant activity and decrease of lipid peroxidation.
- Published
- 2019
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