Skip to main content
Have a personal or library account? Click to login
Protective role of ceftriaxone plus sulbactam with VRP1034 on oxidative stress, hematological and enzymatic parameters in cadmium toxicity induced rat model Cover

Protective role of ceftriaxone plus sulbactam with VRP1034 on oxidative stress, hematological and enzymatic parameters in cadmium toxicity induced rat model

Open Access
|Mar 2013

References

  1. Aebi H. (1984).In Methods in Enzymol (Packer L ed.), 125-126, Academic Press: Orlando, FL.
  2. Asagba SO. (2010). Biochemical Changes in Urine and Plasma of Rats in Foodchain Mediated Cadmium toxicity.: 9-17.
  3. Anacona J, Rodriguez A. (2005). Synthesis and Antibacterial Activity of Ceftriaxone Metal Complexes.: 897-901.
  4. Anacona JR, Osorio I. (2008). Synthesis and antibacterial activity of copper(II) complexes with sulphathiazole and cephalosporin ligands.: 517-521.
  5. Berlin A, Schaller KH. (1974). European standardized method for the determination of delta aminolevulinic acid dehydratase activity in blood.: 389-390.
  6. Bray TM, Taylor CG. (1993). Tissue glutathione, nutrition and oxidative stress.: 746-775.
  7. Carlberg I, Mannervik B.(1985). Glutathione reductase.: 485-90.
  8. Casalino E, Calzaretti G, Sblano C, Landriscina C. (2002a). Molecular inhibitory mechanisms of antioxidant enzymes in rat liver and kidney by cadmium.: 37-50.
  9. Casalino E,Valzaretti G, Sblano C, Landriscina V, Felice TM, Landriscina C. (2002b). Antioxidant effect of hyroxytyrosol (DPE) and Mn+2 in liver of cadmium intoxicated rats.: 625-632.
  10. Dwivedi VK, Chaudhary M, Soni A, Yadav J, Tariq A. (2010). Diffusion of Sulbactomax and ceftriaxone into cerebrospinal fluid of meningitis induced rat model.: 307-312.
  11. Dwivedi VK, Arya A, Gupta H, Bhatnagar A, Kumar P, Chaudhary M. (2011). Chelating ability of Sulbactomax drug in arsenic intoxication.: 307-314.
  12. Ellman GL. (1959). Tissue sulfhydrl groups.: 70-77.
  13. Fried R, Fried LW. (1945). Xanthine Oxidase (Xanthine Dehydrogenase).: 644-9.
  14. Guilhermino LA, Soares MVM, Carvalho AP, Lopes MC. (1998). effects of Cadmium and Parathion Exposure on Hematology and Blood Biochemistry of Adult Male Rats.: 52-59.
  15. Gunther MR, Mao J, Cohen MS. (1993). Oxidant-scavenging activities of ampicillin and sulbactam and their effects on neutrophil functions.: 950-956.
  16. Herbig WJ, Pabst MJ, Jacoby WB. (1974). Glutathione S-transferase, the first enzymatic step in mercapturic acid formation.: 7139-7147.
  17. Hu M. (1994). Measurement of protein thiol groups and glutathione in plasma.: 380-382.
  18. Iscan M, Coban T, Eke BC. (1994). Differential combined effect of cadmium and nickel on hepatic and renal glutathione S-transferase of the guinea pig.: 69-72.
  19. Jurczuk M, Jakoniuk MJ, Rogalska J.(2006).Glutathione related enzyme actvity in the liver and kidney of rats exposed to cadmium and ethanol.: 861-868.
  20. Kannan GM, Flora SJS. (2004). Chronic arsenic poisoning in the rat: treatment with combined administration of succimers and an antioxidant.: 37-43.
  21. Kelley C, Sargent DE, Uno JK. (1999). Cadmium therapeutic agents.: 229-240.
  22. Kurutas EB, Arican O, Sasmaz S. (2005). Supero xide dismutase and myeloperoxidase activities in polymorphonuclear leukocytes in acne vulgaris.: 39-42.
  23. Lapenna D, Cellini L, Gioiaa S De, Mezzettia A, Ciofania G .(1995). Cephalosporins are scavengers of hypochlorous acid.: 1249-1254.
  24. Michael PW and Bhalch andra AD. (1999). Cadmiu m-induced inhibition of the growth and metastasis of human lung carcinoma xenografts: role of apoptosis.: 65-70.
  25. Misra HP, Fridovich I. (1972). The role of superoxide anion in the autooxidation of epinephrine and a sample assay for Superoxide dismutase.: 3170-3175.
  26. Ohkawa H, Ohishi N, Yagi K. (1979). Assay of lipid peroxidation in animal tissue by thio barbutric acid reaction.: 351-358.
  27. Rotruck JT, Pope AL, Ganther HE, Swanson AB, Hafeman DG, Hoekstra WG. (1973). Selenium: Biochemical role as a component of glutathione peroxidase.: 588-590.
  28. Santos JL, Arbo A. (1989). Theeffect of sulbactam on polymorphonuclear leukocytes function.: 147S-152S.
  29. Sen Gupta R, Sen Gupta E, Dhakal BK, Thakur AR, Ahnn J. (2004). Vitamin C and vitamin E protects the rats testes from cadmium induced reactive oxygen species.: 132-139.
  30. Shaikh ZA, Vu TT, Zaman K. (1999). Oxidative stress as a mechanism of chronic cadmium-induced hepatotoxicity and renal toxicity and protection by antioxidants.: 256-263.
  31. Stohs SJ, Bagchi D. (1995). Oxidative mechanisms in the toxicity of metal ions.: 321-336.
  32. Tandon SK, Singh S, Prasad S, Khandaker K, Dwivedi VK, Chatterjee M, Mathur N. (2003). Reversal of cadmium induced oxidative stress by chelating agent, antioxidant or their combination in rat.: 211-217.
  33. Waisberg M, Joseph P, Hale B, Beyersmann D. (2003). Molecular and cellular mechanisms of cadmium carcinogenesis: a review.: 95-117.
  34. Žikić R, Štajn A, Saičić Z, Spasić M, Ziemnicki K, Petrović V. (1996). The activities of SOD, catalase and ascorbic acid content in the liver of goldfish exposed to cadmium.: 479-481.
DOI: https://doi.org/10.2478/v10102-012-0032-3 | Journal eISSN: 1337-9569 | Journal ISSN: 1337-6853
Language: English
Page range: 192 - 200
Published on: Mar 9, 2013
Published by: Slovak Academy of Sciences, Institute of Experimental Pharmacology & Toxicology, Centre of Experimental Medicine
In partnership with: Paradigm Publishing Services

© 2013 Vivek Kumar Dwivedi, Anuj Bhatanagar, Manu Chaudhary, published by Slovak Academy of Sciences, Institute of Experimental Pharmacology & Toxicology, Centre of Experimental Medicine
This work is licensed under the Creative Commons License.