180
Views
3
CrossRef citations to date
0
Altmetric
Research Articles

Comparison of the effect of vitamin C and selenium nanoparticles on gentamicin-induced renal impairment in male rats: a biochemical, molecular and histological study

, , , & ORCID Icon
Pages 260-270 | Received 16 Mar 2022, Accepted 06 Sep 2022, Published online: 18 Sep 2022

References

  • Aebi H. 1984. [13] Catalase in vitro. In: Methods in enzymology. San Diego: Academic Press; p. 121–126.
  • Ahmed Mustafa Z, Hamed Ali R, Rostum Ali D, Abdulkarimi R, Abdulkareem NK, Akbari A. 2021. The combination of ginger powder and zinc supplement improves the fructose‐induced metabolic syndrome in rats by modulating the hepatic expression of NF‐κB, mTORC1, PPAR‐α SREBP‐1c, and Nrf2. J Food Biochem. 45(1):e13546.
  • Akbari A. 2013. The effect of oxidative stress and antioxidants on men fertility. Zahedan J Res Med Sci. 15(7):1–7.
  • Akbari A, Gholamali J, Saeed N, Javad S. 2016. An overview of the characteristics and function of vitamin C in various tissues: relying on its antioxidant function. Zahedan J Res Med Sci. 18(11):e4037.
  • Akbari A, Jelodar G, Nazifi S. 2014a. The prophylactic effect of vitamin C on oxidative stress indexes following exposure to radio frequency wave generated by a BTS antenna model in rat liver and kidney. Zahedan J Res Med Sci. 16(2):19–23.
  • Akbari A, Jelodar G, Nazifi S. 2014b. The prophylactic effect of vitamin C on oxidative stress indexes following exposure to radio frequency wave generated by a BTS antenna model in rat liver and kidney. Zahedan J Res Med Sci. 16(2):19–23.
  • Akbari A, Jelodar G, Nazifi S. 2014c. Vitamin C protects rat cerebellum and encephalon from oxidative stress following exposure to radiofrequency wave generated by a BTS antenna model. Toxicol Mech Methods. 24(5):347–352.
  • Akbari A, Jelodar G, Nazifi S. 2016. The proposed mechanisms of radio frequency waves (RFWs) on nervous system functions impairment. Comp Clin Pathol. 25(6):1289–1301.
  • Akbari A, Jelodar G, Nazifi S, Afsar T, Nasiri K. 2019. Oxidative stress as the underlying biomechanism of detrimental outcomes of ionizing and non-ionizing radiation on human health: antioxidant protective strategies. Zahedan J Res Med Sci. 21(4):e85655.
  • Alarifi S, Al-Doaiss A, Alkahtani S, Al-Farraj SA, Al-Eissa MS, Al-Dahmash B, Al-Yahya H, Mubarak M. 2012. Blood chemical changes and renal histological alterations induced by gentamicin in rats. Saudi J Biol Sci. 19(1):103–110.
  • Apostolova N, Victor VM. 2015. Molecular strategies for targeting antioxidants to mitochondria: therapeutic implications. Antioxid Redox Signal. 22(8):686–729.
  • Basile DP, Anderson MD, Sutton TA. 2012. Pathophysiology of acute kidney injury. Compr Physiol. 2(2):1303–1353.
  • Carlström M. 2021. Nitric oxide signalling in kidney regulation and cardiometabolic health. Nat Rev Nephrol. 17(9):575–590.
  • Carr AC, Maggini S. 2017. Vitamin C and immune function. Nutrients. 9(11):1211.
  • Chenthamara D, Subramaniam S, Ramakrishnan SG, Krishnaswamy S, Essa MM, Lin F-H, Qoronfleh MW. 2019. Therapeutic efficacy of nanoparticles and routes of administration. Biomater Res. 23(1):20.
  • Cui J, Bai X-Y, Sun X, Cai G, Hong Q, Ding R, Chen X. 2015. Rapamycin protects against gentamicin-induced acute kidney injury via autophagy in mini-pig models. Sci Rep. 5(1):11256.
  • Cui J, Tang L, Hong Q, Lin S, Sun X, Cai G, Bai XY, Chen X. 2019. N-Acetylcysteine ameliorates gentamicin-induced nephrotoxicity by enhancing autophagy and reducing oxidative damage in miniature pigs. Shock. 52(6):622–630.
  • D'Aniello C, Cermola F, Patriarca EJ, Minchiotti G. 2017. Vitamin C in stem cell biology: impact on extracellular matrix homeostasis and epigenetics. Stem Cells Int. 2017:8936156–8936156.
  • Demirci K, Nazıroğlu M, Övey İS, Balaban H. 2017. Selenium attenuates apoptosis, inflammation and oxidative stress in the blood and brain of aged rats with scopolamine-induced dementia. Metab Brain Dis. 32(2):321–329.
  • Esmaeilizadeh M, Hosseini M, Beheshti F, Alikhani V, Keshavarzi Z, Shoja M, Mansoorian M, Sadeghnia HR. 2020. Vitamin C improves liver and renal functions in hypothyroid rats by reducing tissue oxidative injury. International Journal for Vitamin and Nutrition Research Internationale Zeitschrift Fur Vitamin- Und Ernahrungsforschung Journal International de Vitaminologie et de Nutrition. 90(1–2):84–94.
  • Fathi R, Akbari A, Nasiri K, Chardahcherik M. 2021. Ginger (Zingiber officinale roscoe) extract could upregulate the renal expression of NRF2 and TNFα and prevents ethanol-induced toxicity in rat kidney. Avicenna J Phytomed. 11(2):134–145.
  • Ferro C, Florindo HF, Santos HA. 2021. Selenium nanoparticles for biomedical applications: from development and characterization to therapeutics. Adv Healthcare Mater. 10(16):2100598.
  • Filipović N, Ušjak D, Milenković MT, Zheng K, Liverani L, Boccaccini AR, Stevanović MM. 2021. Comparative study of the antimicrobial activity of selenium nanoparticles with different surface chemistry and structure. Front Bioeng Biotechnol. 8:1591.
  • Fuchs A, Bielicki J, Mathur S, Sharland M, Van Den Anker JN. 2016. Antibiotic use for sepsis in neonates and children: 2016 evidence update. WHO Reviews.
  • Hoffmann PR, Berry MJ. 2008. The influence of selenium on immune responses. Mol Nutr Food Res. 52(11):1273–1280.
  • Hosnedlova B, Kepinska M, Skalickova S, Fernandez C, Ruttkay-Nedecky B, Peng Q, Baron M, Melcova M, Opatrilova R, Zidkova J, et al. 2018. Nano-selenium and its nanomedicine applications: a critical review. Int J Nanomed. 13:2107–2128.
  • Jeevanandam J, Barhoum A, Chan YS, Dufresne A, Danquah MK. 2018. Review on nanoparticles and nanostructured materials: history, sources, toxicity and regulations. Beilstein J Nanotechnol. 9:1050–1074.
  • Kondaparthi P, Flora SJS, Naqvi S. 2019. Selenium nanoparticles: an insight on its pro-oxidant and antioxidant properties. Front Nanosci Nanotech. 6(1):1–5.
  • Krause KM, Serio AW, Kane TR, Connolly LE. 2016. Aminoglycosides: an overview. Cold Spring Harb Perspect Med. 6(6):a027029.
  • Lee J, Koo N, Min DB. 2004. Reactive oxygen species, aging, and antioxidative nutraceuticals. Compr Rev Food Sci Food Saf. 3(1):21–33.
  • Liguori I, Russo G, Curcio F, Bulli G, Aran L, Della-Morte D, Gargiulo G, Testa G, Cacciatore F, Bonaduce D, et al. 2018. Oxidative stress, aging, and diseases. Clin Interv Aging. 13:757–772.
  • Lin W, Zhang J, Xu J-F, Pi J. 2021. The advancing of selenium nanoparticles against infectious diseases. Front Pharmacol. 12:682284–682284.
  • Liu D, Lin J, He W, Huang K. 2021. Selenium and taurine combination is better than alone in protecting lipopolysaccharide-induced mammary inflammatory lesions via activating PI3K/Akt/mTOR signaling pathway by scavenging intracellular ROS. Oxid Med Cell Longev. 2021:5048375.
  • Livak KJ, Schmittgen TD. 2001. Analysis of relative gene expression data using real-time quantitative PCR and the 2− ΔΔCT method. Methods. 25(4):402–408.
  • Lucas K, Maes M. 2013. Role of the Toll Like receptor (TLR) radical cycle in chronic inflammation: possible treatments targeting the TLR4 pathway. Mol Neurobiol. 48(1):190–204.
  • Makris K, Spanou L. 2016. Acute kidney injury: definition, pathophysiology and clinical phenotypes. Clin Biochem Rev. 37(2):85–98.
  • Martínez-Salgado C, Eleno N, Tavares P, Rodríguez-Barbero A, García-Criado J, Bolaños JP, López-Novoa JM. 2002. Involvement of reactive oxygen species on gentamicin-induced mesangial cell activation. Kidney Int. 62(5):1682–1692.
  • Mittal M, Siddiqui MR, Tran K, Reddy SP, Malik AB. 2014. Reactive oxygen species in inflammation and tissue injury. Antioxid Redox Signal. 20(7):1126–1167.
  • Mousavi S, Bereswill S, Heimesaat MM. 2019. Immunomodulatory and antimicrobial effects of vitamin C. Eur J Microbiol Immunol. 9(3):73–79.
  • Mumtaz S, Mumtaz S, Ali S, Tahir HM, Kazmi SAR, Mughal TA, Younas M. 2021. Evaluation of antibacterial activity of vitamin C against human bacterial pathogens. Braz J Biol. 83:e247165.
  • Nasiri K, Akbari A, Nimrouzi M, Ruyvaran M, Mohamadian A. 2021. Safflower seed oil improves steroidogenesis and spermatogenesis in rats with type II diabetes mellitus by modulating the genes expression involved in steroidogenesis, inflammation and oxidative stress. J Ethnopharmacol. 275:114139.
  • Nimrouzi M, Abolghasemi J, Sharifi MH, Nasiri K, Akbari A. 2020. Thyme oxymel by improving of inflammation, oxidative stress, dyslipidemia and homeostasis of some trace elements ameliorates obesity induced by high-fructose/fat diet in male rat. Biomed Pharmacother. 126:110079.
  • Ohkawa H, Ohishi N, Yagi K. 1979. Assay for lipid peroxides in animal tissues by thiobarbituric acid reaction. Anal Biochem. 95(2):351–358.
  • Parsons PP, Garland HO, Harpur ES. 2000. Localization of the nephron site of gentamicin-induced hypercalciuria in the rat: a micropuncture study. Br J Pharmacol. 130(2):441–449.
  • Penglase S, Hamre K, Ellingsen S. 2014. Selenium prevents downregulation of antioxidant selenoprotein genes by methylmercury. Free Radic Biol Med. 75:95–104.
  • Raeeszadeh M, Karimfar B, Amiri AA, Akbari A. 2021. Protective effect of nano-vitamin C on infertility due to oxidative stress induced by lead and arsenic in male rats. J Chem. 2021:1–12.
  • Raeeszadeh M, Rezaee M, Akbari A, Khademi N. 2021. The comparison of the effect of Origanum vulgare L. extract and vitamin C on the gentamycin-induced nephrotoxicity in rats. Drug Chem Toxicol. 45(5):2031–2038.
  • Randjelovic P, Veljkovic S, Stojiljkovic N, Sokolovic D, Ilic I. 2017. Gentamicin nephrotoxicity in animals: current knowledge and future perspectives. Excli J. 16:388–399.
  • Rasoulinejad SA, Akbari A, Nasiri K. 2021. Interaction of miR-146a-5p with oxidative stress and inflammation in complications of type 2 diabetes mellitus in male rats: anti-oxidant and anti-inflammatory protection strategies in type 2 diabetic retinopathy. Iran J Basic Med Sci. 24(8):1078.
  • Ratliff BB, Abdulmahdi W, Pawar R, Wolin MS. 2016. Oxidant mechanisms in renal injury and disease. Antioxid Redox Signal. 25(3):119–146.
  • Rehman K, Akash MSH, Azhar S, Khan SA, Abid R, Waseem A, Murtaza G, Sherazi TA. 2012. A biochemical and histopathologic study showing protection and treatment of gentamicin-induced nephrotoxicity in rabbits using vitamin C. Afr J Tradit Complement Altern Med. 9(3):360–365.
  • Rex J, Lutz A, Faletti LE, Albrecht U, Thomas M, Bode JG, Borner C, Sawodny O, Merfort I. 2019. IL-1β and TNFα differentially influence NF-κB activity and FasL-induced apoptosis in primary murine hepatocytes during LPS-induced inflammation. Front Physiol. 10:117.
  • Savin V, Karniski L, Cuppage F, Hodges G, Chonko A. 1985. Effect of gentamicin on isolated glomeruli and proximal tubules of the rabbit. Lab Invest. 52(1):93–102.
  • Son EW, Mo SJ, Rhee DK, Pyo S. 2004. Vitamin C blocks TNF-α-induced NF-kB activation and ICAM-1 expression in human neuroblastoma cells. Arch Pharm Res. 27(10):1073–1079.
  • Sun M, Zigman S. 1978. An improved spectrophotometric assay for superoxide dismutase based on epinephrine autoxidation. Anal Biochem. 90(1):81–89.
  • Tapiero H, Townsend DM, Tew KD. 2003. The antioxidant role of selenium and seleno-compounds. Biomed Pharmacother. 57(3–4):134–144.
  • Tinggi U. 2008. Selenium: its role as antioxidant in human health. Environ Health Prev Med. 13(2):102–108.
  • Vallon V, Komers R. 2011. Pathophysiology of the diabetic kidney. Compr Physiol. 1(3):1175–1232.
  • Yang GQ, Xia YM. 1995. Studies on human dietary requirements and safe range of dietary intakes of selenium in China and their application in the prevention of related endemic diseases. Biomed Environ Sci. 8(3):187–201.
  • Yang M, Teng S, Ma C, Yu Y, Wang P, Yi C. 2018. Ascorbic acid inhibits senescence in mesenchymal stem cells through ROS and AKT/mTOR signaling. Cytotechnology. 70(5):1301–1313.
  • Zoidis E, Seremelis I, Kontopoulos N, Danezis GP. 2018. Selenium-dependent antioxidant enzymes: actions and properties of selenoproteins. Antioxidants. 7(5):66.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.