FABRICATION OF SILVER NANOPARTICLES: USING VITEX NEGUNDO L. AGAINST CISPLATIN-INDUCED NEPHROTOXICITY IN ALBINO RAT

Authors

  • Janakiraman M Department of Biochemistry, J. J. College of Arts and Science (Autonomous), Pudukkottai, Tamil Nadu, India.

DOI:

https://doi.org/10.22159/ajpcr.2018.v11i10.28721

Keywords:

Vitex negundo L, Nephrotoxicity, Silver nanoparticles, Cisplatin, Histopathology

Abstract

Objective: This study was carried out to evaluate the fabrication of silver nanoparticles using Vitex negundo L. against cisplatin-induced nephrotoxicity in albino rat.

Methods: Synthesized silver nanoparticles of V. negundo L. were characterized by particle size, ultra violet (UV)-visible, Fourier transform infrared (FTIR), and X-ray diffraction (XRD) analysis. Albino rats were divided randomly into six groups of six animals each. Group I normal rats were treated with an oral dose of distilled water for 15 days. Group II rats were treated with single i.p. dose of cisplatin (16 mg/kg) on day 1. Group III rats were treated only with an oral dose of V. negundo L. (200 mg/kg/d) for 15 days. Group IV rats were treated only with an oral dose of silver nanoparticles of V. negundo L. (200 mg/kg/d) for 15 days. Group V rats were treated with an oral dose of V. negundo L. for 14 days after single i.p. dose of cisplatin on day 1. Group VI rats were treated with an oral dose of silver nanoparticles of V. negundo L. for 14 days after single i.p. dose of cisplatin on day 1. Collected blood samples and kidney tissue samples were used for biochemical, enzymatic antioxidant, and histopathological studies in all groups.

Results: The formation of silver nanoparticles was confirmed by particle size, UV-visible, and XRD analysis, and active principles were identified by FTIR analysis. Biochemical results of silver nanoparticles of V. negundo L.-treated groups showed the significant (p˂0.05) decrease in the level of creatinine, urea, and uric acid as compared to cisplatin-induced rats. The enzymatic antioxidants results of silver nanoparticles of V. negundo L.-treated groups showed the significant (p˂0.05) increase in the level of glutathione reductase and significant decrease in malondialdehyde level as compared to cisplatin-induced rats. In addition, histopathological results of silver nanoparticles of V. negundo L.-treated groups showed the ameliorated impact in cisplatin-induced rats.

Conclusion: The results of these studies were concluded that silver nanoparticles of V. negundo L. have profound protective effect against the adverse effects caused by cisplatin in rat kidney than V. negundo L. treated along with cisplatin in albino rat.

Downloads

Download data is not yet available.

Author Biography

Janakiraman M, Department of Biochemistry, J. J. College of Arts and Science (Autonomous), Pudukkottai, Tamil Nadu, India.

Assistant Professor

Department of Biochemistry

 

References

Ferguson MA, Vaidya VS, Bonventre JV. Biomarkers of nephrotoxic acute kidney injury. Toxicology 2008;245:182-93.

Meyer KB, Madias NE. Cisplatin nephrotoxicity. Miner Electrolyte Metab 1994;20:201-13.

Appenroth D, Frob S, Kersten L, Splinter EK, Winnefeld K. Protective effects of Vitamin E and C on cisplatin nephrotoxicity in developing rats. Arch Toxicol 1997;71:677-83.

Clark JS, Faisal A, Baliga R. Cisplatin induces apoptosis through the ERK-p66shc pathway in renal tubule cells. Cancer Lett 2010;297:165-70.

Choudhury D, Ahmed Z. Drug-associated renal dysfunction and injury. Nat Clin Pract Nephrol 2006;2:80-91.

Nordberg G, Gerhardsson LS. Silver. In: Seiler HG, Sigel H, Sigel A, editors. Handbook on Toxicity of Inorganic Compounds. New York: Marcell Dekker Press; 1988. p. 619-24.

Hill WR, Pillsbury DM. Argyria: The Pharmacology of Silver. 18th ed. Baltimore: Williams and Wilkins Company Publishers; 1939.

Uppalapathi L, Rao JT. Antimicrobial properties of the essential oil of Vitex negundo. Indian J Pharm Sci 1979;50:57-8.

Masilungan VA. Anticancer activity of Vitex negundo extracts. Indian J Pharm 1963;25:381.

Perumalsamy R, Singamuthu S, Sen A. Screening of 34 Indian medicinal plants for antibacterial properties. J Ethnopharmacol 1998;62:173-82.

Indhumathi T, Rajathi K. A study on synthesis of silver nanoparticles from Murraya koengii leaf and its antifungal activity. Int J Drug Dev Res 2013;5:293-8.

Abd El-Rahman SN, Al-Jameel SS. Protection of curcumin and curcumin nanoparticles against cisplatin induced nephrotoxicity in male rats. Sch Acad J Biosci 2014;2:214-23.

Sinha SN, Paul D, Halder N, Sengupta D, Patra SK. Green synthesis of silver nanoparticles using fresh water green alga Pithophora oedogonia (Mont) wittrock and evaluation of their antibacterial activity. Appl Nanosci 2015;5:703-9.

Kumari AS, Venkatesham M, Ayodhya D, Veerabhadram G. Green synthesis, characterization and catalytic activity of palladium nanoparticles by xanthan gum. Appl Nanosci 2015;5:315-20.

Bobby MD, Wesely EG, Johnson M. FTIR studies on the leaves of Albizia lebbeck benth. Int J Pharm Sci 2012;4:293-6.

Maheswari C, Mariyammal R, Venkatnarayanan R. Renal protective activity of Orthosiphon stamineus leaf extract against cisplatin induced renal toxicity. Int J Pharm Technol 2011;1:1584-92.

Guguloth S, Vivekanandan L, Singaravel S. Nephroprotective activity of Vitex negundo linn bark against chemical induced toxicity in experimenal rats. Int J Adv Pharm Res 2011;6:462-70.

Marsh WH, Fingerhut B, Miller A. Non protein nitrogen, urea, creatine and creatinine. In: Varley H, editor. Practical Clinical Biochemistry. London: William Heinemann Press; 1980. p. 456-68.

Ito A. The exercise prescription for hyperuricemia. Nihon Rinsho 2000;58:431-6.

Brod J, Siorta JH. The renal clearance of endogenous creatinine in man. J Clin Invest 1948;27:645-54.

Beuge JA, Aust SD. The thiobarbituric acid assay. Methods Enzymol 1978;52:306-7.

David M, Richard JS. In: Bergmeyer J, Grab M, editors. Methods of Enzymatic Analysis. Deer Field Beach-Florida: Verlag Chemie Press; 1983. p. 358.

Ochei J, Kolhatkar A. Medical Laboratory Science (Theory and Practice). 2nd ed. New Delhi: Tata McGraw Hill Publishers; 2000.

Gupta SP. Textbook of Statistical Methods. 43rd ed. New Delhi: Sultan Chand and Sons Publishers; 2014.

Kalainila P, Subha V, Ernest R, Sahadevan R. Synthesis and characterization of silver nanoparticle from Erythrina indica. Asian J Pharm Clin Res 2014;7:39-43.

Shankar SS, Rai A, Ahmad A, Sastry M. Rapid synthesis of Au, Ag and bimetallic Au core Ag shell nanoparticles using Neem (Azadirachta indica) leaf broth. J Colloid Interface Sci 2004;275:496-502.

Pawar S, Kamble V. Phytochemical screening, elemental and functional group analysis of Vitex negundo L. leaves. Int J Pharm Pharm Sci 2017;9:226-30.

Amudha M, Krishnakumari S. Biosynthesis and characterization of silver nanoparticles using the aqueous extract of Vitex negundo L. World J Pharm Pharm Sci 2014;3:1385-93.

Shemesh O, Golbetz H, Kriss JP, Myers BD. Limitations of creatinine as a filtration marker in glomerulopathic patients. Kidney Int 1985;28:830-8.

Meessen JH, Petersen H. Urea, in Ullmann’s Encyclopedia of Industrial Chemistry. 6th ed. Weinheim, Germany: Wiley-VCH Press; 2005.

Cirillo P, Sato W, Reungjui S. Uric acid, the metabolic syndrome and renal disease. J Am Soc Nephrol 2006;17:S165-68.

Ostrea EM, Cepeda EE, Fleury CA, Balun JE. Red cell membrane lipid peroxidation and hemolysis secondary to phototherapy. Acta Paediatr Scand 1985;74:378-81.

Deponde M. Glutathione catalysis and the reaction mechanisms of glutathione-dependent enzymes. Biochim Biophys Acta 2013;1830:3217-66.

Mohamed ER, Abdel AH. Antioxidant and anti-inflammatory activities of silver nanoparticles biosynthesized from aqueous leaves extracts of four Terminalia species. Adv Nat Sci Nanosci Nanotechnol 2014;5:1-11.

Wahdan SA, Azab SS, Elsherbiny CA, Demerdash EE. Piceatannol ameliorates cisplatin-induced histological and biochemical alterations in rats kidney. Int J Pharm Pharm Sci 2017;9:305-11.

Gautam LM, Shrestha SL, Wagle P, Tamrakar BM. Chemical constituents from Vitex negundo (Linn.) of nepalese origin. Sci World 2008;6:27-32.

Published

07-10-2018

How to Cite

M, J. “FABRICATION OF SILVER NANOPARTICLES: USING VITEX NEGUNDO L. AGAINST CISPLATIN-INDUCED NEPHROTOXICITY IN ALBINO RAT”. Asian Journal of Pharmaceutical and Clinical Research, vol. 11, no. 10, Oct. 2018, pp. 498-03, doi:10.22159/ajpcr.2018.v11i10.28721.

Issue

Section

Original Article(s)