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J Renal Inj Prev. 2017;6(2): 93-98. doi: 10.15171/jrip.2017.18
PMID: 28497082        PMCID: PMC5423291

Original Article

Evaluation of selenium on kidney function following ischemic injury in rats; protective effects and antioxidant activity

Amin Hasanvand 1, Abolfazl Abbaszadeh 2, Saeideh Darabi 3, Afshin Nazari 4, Mohammadreza Gholami 5, Ali Kharazmkia 6 *

Cited by CrossRef: 29


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3- Akhiani O, Zangouie N, Laripour R, Rashidian A, Ebrahimi M, Hami Z, Chamanara M. Sub-Flap Use of Nano-Selenium Oxide Solution Enhances Skin Flap Viability in Rats: Study the Novel Role of mTOR and p-mTOR Expression. Aesth Plast Surg. 2022;46(3):1452 [Crossref]
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5- Nogales F, Ojeda M, Serrano A, Rua R, Carreras O. Metabolic syndrome during gestation and lactation: An important renal problem in dams. selenium renal clearance. Journal of Trace Elements in Medicine and Biology. 2021;64:126709 [Crossref]
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7- Csekő G, Horváth A. Bromide Ion Impurity-Induced Reaction between Selenium(IV) and Acidic Bromate: Prototype of a Cycle with Autocatalytic Behavior. Inorg Chem. 2024;63(4):2053 [Crossref]
8- DOĞANAY S, BUDAK Ö. Effects of Ascorbic Acid and Sodium Selenite on Inflammatory Response and Apoptosis in Renal Ischemia-Reperfusion Injury. 2022;7(1):130 [Crossref]
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11- Sri Charitha G, Sudhakar K, Reddy K. Protective Effects of Selenium Against Sodium Fluoride Induced Behavioral, Anti-Oxidant and Neurohistological Alterations in Wistar Rats. Biosci, Biotech Res Asia. 2018;15(2):475 [Crossref]
12- Neamah N, Naaeem Khudair A, Al-Jadaan S. Comparative evaluation of biochemical profiling of 4’, 4”- (4, 5, 6, 7-TETRAHYDRO- [1, 2, 3-] SELENADIAZOLO [4, 5e] PYRIDINE-4, 6-DIYL) BIS (BENZENE-1, 3-DIOL) and dipyrone on female rat’s. J Phys: Conf Ser. 2019;1279(1):012033 [Crossref]
13- Sadeghmanesh F, Eidi A, Mortazavi P, Oryan S. Nanoselenium attenuates renal ischemia-reperfusion injury in rats. Naunyn-Schmiedeberg's Arch Pharmacol. 2024;397(4):2297 [Crossref]
14- Satpathy S, Panigrahi L, Arakha M. The Role of Selenium Nanoparticles in Addressing Diabetic Complications: A Comprehensive Study. CTMC. 2024;24(15):1327 [Crossref]
15- Liu Z, Mou G, Liang Z, Zhao R, Jin C, Wu R. Selenomethionine Alleviates Intestinal Ischemia–Reperfusion Injury in Mice Through the Bax-Caspase Pathway. Biol Trace Elem Res. 2022;200(7):3205 [Crossref]
16- Ojeda M, Nogales F, Serrano A, Murillo M, Carreras O. Selenoproteins and renal programming in metabolic syndrome-exposed rat offspring. Food Funct. 2020;11(5):3904 [Crossref]
17- Gunes S, Sahinturk V, Uslu S, Ayhanci A, Kacar S, Uyar R. Protective Effects of Selenium on Cyclophosphamide-Induced Oxidative Stress and Kidney Injury. Biol Trace Elem Res. 2018;185(1):116 [Crossref]
18- Nemati A, Assadollahi V, Peluso I, Abbaszadeh A, Beigi-boroujeni M, Khanipur Z, Gholami M. A Stereological Study of the Toxic Effects of Cerium Oxide during Pregnancy on Kidney Tissues in Neonatal NMRI Mice. Oxidative Medicine and Cellular Longevity. 2020;2020:1 [Crossref]
19- Garcia E, Hernández-Ayvar F, Rodríguez-Barrera R, Flores-Romero A, Borlongan C, Ibarra A. Supplementation With Vitamin E, Zinc, Selenium, and Copper Re-Establishes T-Cell Function and Improves Motor Recovery in a Rat Model of Spinal Cord Injury. Cell Transplant. 2022;31 [Crossref]
20- Hosnedlova B, Kepinska M, Skalickova S, Fernandez C, Ruttkay-Nedecky B, Malevu T, Sochor J, Baron M, Melcova M, Zidkova J, Kizek R. A Summary of New Findings on the Biological Effects of Selenium in Selected Animal Species—A Critical Review. IJMS. 2017;18(10):2209 [Crossref]
21- Csekő G, Nyitrai B, Horváth A. Kinetics and Mechanism of Selenium(IV) Oxidation by Aqueous Bromine Solution. ACS Omega. 2023;8(17):15769 [Crossref]
22- Alhazza I, Ebaid H, Omar M, Hassan I, Habila M, Al-Tamimi J, Sheikh M. Supplementation with selenium nanoparticles alleviates diabetic nephropathy during pregnancy in the diabetic female rats. Environ Sci Pollut Res. 2022;29(4):5517 [Crossref]
23- Dana P, Pimpha N, Chaipuang A, Thumrongsiri N, Tanyapanyachon P, Taweechaipaisankul A, Chonniyom W, Watcharadulyarat N, Sathornsumetee S, Saengkrit N. Inhibiting Metastasis and Improving Chemosensitivity via Chitosan-Coated Selenium Nanoparticles for Brain Cancer Therapy. Nanomaterials. 2022;12(15):2606 [Crossref]
24- Askari H, Sanadgol N, Azarnezhad A, Tajbakhsh A, Rafiei H, Safarpour A, Gheibihayat S, Raeis-Abdollahi E, Savardashtaki A, Ghanbariasad A, Omidifar N. Kidney diseases and COVID-19 infection: causes and effect, supportive therapeutics and nutritional perspectives. Heliyon. 2021;7(1):e06008 [Crossref]
25- Ostróżka-Cieślik A, Dolińska B, Ryszka F. Therapeutic Potential of Selenium as a Component of Preservation Solutions for Kidney Transplantation. Molecules. 2020;25(16):3592 [Crossref]
26- Xie C, Zeng M, Shi Z, Li S, Jiang K, Zhao Y. Association between Selenium Status and Chronic Kidney Disease in Middle-Aged and Older Chinese Based on CHNS Data. Nutrients. 2022;14(13):2695 [Crossref]
27- Albassit S, Al Laham S, Al-Manadili A. Histological Assessment of Selenium Protective Effect Against Diclofenac Sodium-Induced Nephrotoxicity in Rats. J Pharm Nutr Sci. 2023;13:1 [Crossref]
28- Kyriakopoulos G, Tsaroucha A, Valsami G, Lambropoulou M, Kostomitsopoulos N, Christodoulou E, Kakazanis Z, Anagnostopoulos C, Tsalikidis C, Simopoulos C. Silibinin Improves TNF-α and M30 Expression and Histological Parameters in Rat Kidneys After Hepatic Ischemia/Reperfusion. Journal of Investigative Surgery. 2018;31(3):201 [Crossref]