Cite

Abd-El-Baset M, Abd El-reheem A. (2008). The roles of honeybee solution on the physiological parameters of rats exposed to cadmium chloride. Aust J Basic & Appl Sci 2: 1438-1453.Search in Google Scholar

Abd-El-Reheem A, Zaahkcuk S. (2007). Protective eff ect of Vitamin C and selenium against the toxicity induced by lead acetate on some physiological parameters in blood of male albino rats. Bull Physiol Soc Egypt 27: 59-76.Search in Google Scholar

Aebi H. (1974). Catalase estimation: Methods of enzymatic analysis. In: Bergmeyer HV (ed), Verlag Chemic, pp. 673-684.Search in Google Scholar

Asagba SO, Eriyamremu GE, Adaikpoh MA, Ezeoma A. (2004). Levels of lipid peroxidation, superoxide dismutase, and Na+/K+ ATPase in some tissues of rats exposed to a Nigerian-like diet and cadmium. Biol Trace Elem Res 100: 75-86.Search in Google Scholar

Beutler E, Duron O, Kellin BM. (1963). Improved method for the determination of blood glutathione. J Lab Clin Med 61: 882-888.Search in Google Scholar

Bishop M, Duben-Engelkirk J, Fody E. (2000). Clinical chemistry: principles, procedures, correlations. 4th ed. Philadelphia (PA): Lippincott Williams & Wilkins.Search in Google Scholar

Buege JA, Aust SD. (1978). Microsomal lipid peroxidation. Methods Enzymol 52: 302-310.Search in Google Scholar

Casalino E, Calzaretti G, Sblano C, Landriscina C. (2002). Molecular inhibitory mechanisms of antioxidant enzymes in rat liver and kidney by cadmium. Toxicology 179: 37-50.Search in Google Scholar

Chawla R. (2003). Practical Clinical Biochemistry: Methods and Interpretations. New Delhi (India): Jaypee Brothers Publishers.Search in Google Scholar

Chen L, Liu L, Huang S. (2008). Cadmium activates the mitogen-activated protein kinase (MAPK) pathway via induction of reactive oxygen species and inhibition of protein phosphatases 2A and 5. Free Radic Biol Med 45: 1035-1044.Search in Google Scholar

Dienagha ARS, Miebi TO. (2011). Energy requirements for craking dika (ogbono) nuts (Irvingia gabonensis). Eur J Sci Res 59: 208-215. el-Ashmawy IM, el-Nahas AF, Salama OM. (2005). Protective eff ect of volatile oil, alcoholic and aqueous extracts of Origanum majorana on lead acetate toxicity in mice. Basic Clin Pharmacol Toxicol 97: 238-243.Search in Google Scholar

EI-demerdash FM, Yousef IM, Radwan ME. (2009). Ameliorating eff ect of curcumin on sodium arsenite-induced oxidative damage and lipid peroxidation in diff erent rat organs. Food Chem Toxicol 47: 249-254.Search in Google Scholar

El-Sharaky AS, Newairy AA, Badreldeen MM, Eweda SM, Sheweita SA. (2007). Protective role of selenium against renal toxicity induced by cadmium in rats. Toxicology 235: 185-193.Search in Google Scholar

Eybl V, Kotyzova D, Leseticky L, Bludovska M, Koutensky J. (2006). The influence of curcumin and manganese complex of curcumin on cadmiuminduced oxidative damage and trace elements status in tissues of mice. J Appl Toxicol 26: 207-212.Search in Google Scholar

Friberg L, Elinder CG, Kjellstrom T, Nordberg GF (1986). Cadmium and Health: A Toxicological and Epidemiological Appraisal. Boca Raton, FL: CRC Press.Search in Google Scholar

Fuhrman B, Aviram M. (2001). Flavonoids protect LDL from oxidation and attenuate atherosclerosis. Curr Opin Lipidol 12: 41-48.Search in Google Scholar

Gaskill CL, Miller LM, Mattoon JS, Hoff mann WE, Burton SA, Gelens HC. (2005). Liver histopathology and liver and serum alanine aminotransferase and alkaline phosphatase activities in epileptic dogs receiving phenobarbital. Vet Pathol 42: 147-160.Search in Google Scholar

Goering PL, Waalkes MP, Klaassen CD. (1995). Toxicology of cadmium. In: Goyer RA, Cherian MG, editors. Toxicology of Metals: Biological Aspects. Handbook of Experimental Pharmacology. Vol. 115. New York: Springer-Verlag; p. 189-213.Search in Google Scholar

Graham RE, Ahn AC, Davis RB, O’Connor BB, Eisenberg DM, Phillips RS. (2005). Use of complementary and alternative medical therapies among racial and ethnic minority adults: results from the 2002 National Health Interview Survey. J Natl Med Assoc 97: 535-455.Search in Google Scholar

Ikediobi CO, Badisa VL, Ayuk-Takem LT, Latinwo LM, West J. (2004). Response of antioxidant enzymes and redox metabolites to cadmium-induced oxidative stress in CRL-1439 normal rat liver cells. Int J Mol Med 14: 87-92.Search in Google Scholar

Jahangir T, Khan TH, Prasad L, Sultana S. (2005). Alleviation of free radical mediated oxidative and genotoxic eff ects of cadmium by farnesol in Swiss albino mice. Redox Rep 10: 303-310.Search in Google Scholar

Jurczuk M, Brzoska MM, Moniuszko-Jakoniuk J, Gałazyn-Sidorczuk M, Kulikowska-Karpińska E. (2004). Antioxidant enzymes activity and lipid peroxidation in liver and kidney of rats exposed to cadmium and ethanol. Food Chem Toxicol 42: 429-438.Search in Google Scholar

Kaltreider RC, Davis AM, Lariviere JP, Hamilton JW. (2001). Arsenic alters the function of the glucocorticoid receptor as a transcription factor. Environ Health Persp. 109: 245-251.Search in Google Scholar

Klaassen CD, Liu J, Choudhuri S. (1999). Metallothionein: An intracellular protein to protect against cadmium toxicity. Ann Rev Pharmacol Toxicol 39: 267-294.10.1007/978-3-0348-8847-9Search in Google Scholar

Liu J, Qian SY, Guo Q, Jiang J, Waalkes MP, Mason RP, Kadiiska MB. (2008). Cadmium generates reactive oxy- gen- and carbon-centered radical species in rats: insights from in vivo spin-trapping studies. Free Radic Biol Med 45: 475-481.Search in Google Scholar

Lowry OH, Rosebrough NJ, Farr AL, Randall RJ. (1951). Protein measurement with the Folin phenol reagent. J Biol Chem 193(1): 265-275.Search in Google Scholar

McCord JM, Fridovich I. (1969). Superoxide dismutase, an enzymatic function for erythrocuperin. J Biol Chem 244(22): 6049-6055.Search in Google Scholar

Messaoudi I, El Heni J, Hammouda F, Said K, Kerkeni A. (2009). Protective effects of selenium, zinc, or their combination on cadmium-induced oxidative stress in rat kidney. Biol Trace Elem Res 130: 152-161.Search in Google Scholar

Mohun AF, Cook LJ. (1957). Simple method for measuring serum level of glutamate- oxaloacetate and glutamate-pyruvate transaminases in laboratories. J Clin Pathol 10(4): 394-399.Search in Google Scholar

Nangue TJ, Womeni HM, biapo FT, Fanni J, Michel L. (2011). Irvingia gabonensis fat: Nutritional properties and eff ect of increasing amounts on the growth and lipid metabolism of young rats Wistar sp. Lipids Health Dis 10: 43.Search in Google Scholar

Nedorostova L, Kloucek P, Kokoska L, Stolcova M, Pulkrabek J. (2009). Antimicrobial properties of selected essential oils in vapour phase against foodborne bacteria. Food Control 20: 157-160.Search in Google Scholar

Noonan CW, Sarasua SM, Campagna D, Kathman SJ, Lybarger JA, Mueller PW. (2002). Eff ects of exposure to low levels of environmental cadmium on renal biomarkers. Environ Health Persp 110: 151-155.Search in Google Scholar

Ognjanović BI, Marković SD, Ethordević NZ, Trbojević IS, Stajn AS, Saicić ZS. (2010). Cadmium-induced lipid peroxidation and changes in antioxidant defense system in the rat testes: protective role of coenzyme Q (10) and vitamin E. Reprod Toxicol 29: 191-197.Search in Google Scholar

Ojo OA, Ajiboye BO, Oyinloye BE, Ojo AB. (2014). Prophylactic eff ects of Ethanolic extract of Irvingia gabonensis stem bark against Cadmium-induced Toxicity in albino rats. Advances in Pharmaceutics, Article ID 894610, 8 pages, Hindiwi Publishing Co-operation. http://dx.doi.org/10.1155/2014/894610.10.1155/2014/894610Search in Google Scholar

Rahman M, Tondel M, Ahmad SA. (1998). Diabetes mellitus associated with arsenic exposure in Bangladesh. Am J Epidem 148: 198-203.Search in Google Scholar

Reitman S, Frankel S. (1957). A colorimetric method for the determination of serum level of glutamate-oxaloacetate and pyruvate transaminases. Am J Clin Pathol 28(1): 56-63.Search in Google Scholar

Renugadevi J, Prabu SM. (2010). Cadmium-induced hepatotoxicity in rats and the protective eff ect of naringenin. Exp Toxicol Pathol 62: 171-181.Search in Google Scholar

Reyes JL, Lamas M, Martin D, del Carmen Namorado M, Islas S, Luna J. (2002). The renal segmental distribution of claudins changes with development. Kidney Int 62: 476-487.Search in Google Scholar

Rotruck JT, Pope AL, Ganther HE, Swanson AB, Hafeman DG, Hoekstra WG. (1973). Selenium: biochemical role as a component of glutathione peroxidase. Science 179 (4073): 588-590.Search in Google Scholar

Sajeesh T, Arunachalam K, Parimelazhagan T. (2011). Antioxidant and antipyretic studies on Pothos scandens L. Asian Pac J Trop Med 4(11): 889-899.Search in Google Scholar

Satarug S, Moore MR. (2004). Adverse health eff ects of chronic exposure to low-level cadmium in foodstuff s and cigarette smoke. Environ Health Persp 112: 1099-1103.Search in Google Scholar

Shati AA, Elsaid FG. (2009). Eff ects of water extracts of thyme (Thymus vulgaris) and ginger (Zingiber offi cinale Roscoe) on alcohol abuse. Food Chem Toxicol 47: 1945-1949.Search in Google Scholar

Shati AA, Alamri SA. (2010). Role of saff ron (Crocus sativus L.) and honey syrup on aluminum-induced hepatotoxicity. Saudi Med J 31: 1106-1113.Search in Google Scholar

Shati AA, Elsaid FG, Hafez EE. (2011). Biochemical and molecular aspects of aluminium chloride-induced neurotoxicity in mice and the protective role of Crocus sativus L. extraction and honey syrup. Neuroscience 175: 66-74.Search in Google Scholar

Srinivasan R, Chandrasekar MJN, Nanjan MJ, Suresh B. (2007). Antioxidant activity of Caesalpinia digyna root. J Ethonopharmacol 113: 284-291.Search in Google Scholar

Swarup D, Naresh R, Varshney VP, Balagangatharathilagar M, Kumar P, Nandi D. (2007). Changes in plasma hormones profi le and liver function in cows naturally exposed to lead and cadmium around diff erent industrial areas. Res Vet Sci 82: 16-21.Search in Google Scholar

Tietz NW. (1994). Textbook of Clinical Chemistry. 2nd Edn. Burtis CA, Ashwood ER, W.B. Saunders Company, Philadelphia. p.751.Search in Google Scholar

Uchida M, Teranishi H, Aoshima K, Katoh T, Kasuya M, Inadera H. (2004). Reduction of erythrocyte catalase and superoxide dismutase activities in male inhabitants of a cadmium-polluted area in Jinzu river basin, Japan. Toxicol Lett 151: 451-457.Search in Google Scholar

Valko M, Morris H, Cronin MT. (2005). Metals, toxicity and oxidative stress. Curr Med Chem 12: 1161-1208.Search in Google Scholar

Waalkes MP. (2003). Cadmium carcinogenesis. Mutat Res 533: 107-120. Search in Google Scholar

eISSN:
1337-9569
Language:
English
Publication timeframe:
4 times per year
Journal Subjects:
Medicine, Clinical Medicine, Pharmacology, Toxicology