Pomegranate peel attenuates aluminum-induced hepatorenal toxicity

dc.AffiliationOctober University for modern sciences and Arts (MSA)
dc.contributor.authorAbdel Moneim A.E.
dc.contributor.authorOthman M.S.
dc.contributor.authorMohmoud S.M.
dc.contributor.authorEl-Deib K.M.
dc.contributor.otherDepartment of Zoology and Entomology
dc.contributor.otherFaculty of Science
dc.contributor.otherHelwan University
dc.contributor.other11795 Helwan
dc.contributor.otherCairo
dc.contributor.otherEgypt; Biochemistry and Molecular Biology Department
dc.contributor.otherFaculty of Pharmacy
dc.contributor.otherOctober University for Modern Science and Arts (MSA)
dc.contributor.otherGiza
dc.contributor.otherEgypt; Department of Zoology
dc.contributor.otherFaculty of Science
dc.contributor.otherCairo University
dc.contributor.otherCairo
dc.contributor.otherEgypt; Molecular Drug Evaluation Department
dc.contributor.otherNational Organization for Drug Control and Research (NODCAR)
dc.contributor.otherGiza
dc.contributor.otherEgypt
dc.date.accessioned2020-01-09T20:42:23Z
dc.date.available2020-01-09T20:42:23Z
dc.date.issued2013
dc.descriptionScopus
dc.description.abstractThe present study was undertaken to determine the potential role of methanolic extract of pomegranate peel (MEPP) in modulating aluminum chloride (AlCl3) induced hepatorenal toxicity in female rats. The effect of MEPP (200mg/kgbwt) on AlCl3 (34mg/kgbwt) induced hepatorenal toxicity, accumulation of aluminum (Al), hepatorenal functions and oxidant/antioxidant status of liver and kidney were determined. The changes of liver and kidney structures were investigated with hematoxyline and eosin, in addition, the anti-apoptotic effect of MEPP was analyzed by immunohistochemistry. The present study showed an indication of carcinogenicity in the AlCl3 treated group represented by an increase in tumor necrosis factor-? and angiogenin and inflammation by inducing an increase in prostaglandin E2 and F2?. MEPP protected liver and kidney through reduce the Al accumulation, stimulated antioxidant activities and elevated the anti-apoptotic protein namely Bcl-2. Therefore, these results indicated that the methanolic extract of pomegranate peel has beneficial influences and could be able to inhibit Al-induced oxidative stress and histopathological alternations in liver and kidney of female rats, and these effects may be related to anti-apoptotic and antioxidant activities. � 2013 Informa Healthcare USA, Inc.en_US
dc.description.urihttps://www.scimagojr.com/journalsearch.php?q=25241&tip=sid&clean=0
dc.identifier.doihttps://doi.org/10.3109/15376516.2013.823634
dc.identifier.doiPubMed ID 23837566
dc.identifier.issn15376516
dc.identifier.otherhttps://doi.org/10.3109/15376516.2013.823634
dc.identifier.otherPubMed ID 23837566
dc.identifier.urihttps://t.ly/LXM3X
dc.language.isoEnglishen_US
dc.relation.ispartofseriesToxicology Mechanisms and Methods
dc.relation.ispartofseries23
dc.subjectAluminum chlorideen_US
dc.subjectKidneyen_US
dc.subjectLiveren_US
dc.subjectOxidant/antioxidant statusen_US
dc.subjectPomegranate peelen_US
dc.subjectaluminum chlorideen_US
dc.subjectangiogeninen_US
dc.subjectmethanolen_US
dc.subjectpomegranate extracten_US
dc.subjectpomegranate peel extracten_US
dc.subjectprostaglandin E2en_US
dc.subjectprostaglandin F2 alphaen_US
dc.subjectprotein bcl 2en_US
dc.subjecttumor necrosis factor alphaen_US
dc.subjectunclassified drugen_US
dc.subjectanimal cellen_US
dc.subjectanimal experimenten_US
dc.subjectanimal modelen_US
dc.subjectanimal tissueen_US
dc.subjectantioxidant activityen_US
dc.subjectarticleen_US
dc.subjectcarcinogenicityen_US
dc.subjectcontrolled studyen_US
dc.subjectfemaleen_US
dc.subjecthistopathologyen_US
dc.subjectimmunohistochemistryen_US
dc.subjectinflammationen_US
dc.subjectkidneyen_US
dc.subjectliveren_US
dc.subjectliver toxicityen_US
dc.subjectnephrotoxicityen_US
dc.subjectnonhumanen_US
dc.subjectoxidative stressen_US
dc.subjectpomegranateen_US
dc.subjectpriority journalen_US
dc.subjectraten_US
dc.subjectsolvent extractionen_US
dc.subjectAluminumen_US
dc.subjectAnimalsen_US
dc.subjectKidneyen_US
dc.subjectLiveren_US
dc.subjectPunicaceaeen_US
dc.subjectRatsen_US
dc.titlePomegranate peel attenuates aluminum-induced hepatorenal toxicityen_US
dc.typeArticleen_US
dcterms.isReferencedByAbdel Moneim, A.E., Dkhil, M., Al-Quraishy, S., The redox status in rats treated with flaxseed oil and lead-induced hepatotoxicity (2011) Biol Trace Elem Res, 143, pp. 457-467; Abdel Moneim, A.E., Dkhil, M., Al-Quraishy, S., Studies on the effect of pomegranate (Punica granatum) juice and peel on liver and kidney in adult male rats (2011) J Med Plants Res, 5, pp. 5083-5088; Aebi, H., Catalase in vitro (1984) Methods Enzymol, 105, pp. 121-126; Aviram, M., Dornfeld, L., Rosenblat, M., Pomegranate juice consumption reduces oxidative stress, atherogenic modifications to LDL, and platelet aggregation: Studies in humans and in atherosclerotic apolipoprotein E-deficient mice (2000) Am J Clin Nutr, 71, pp. 1062-1076; Bhadauria, M., Combined treatment of HEDTA and propolis prevents aluminum induced toxicity in rats (2012) Food Chem Toxicol, 50, pp. 2487-2495; Campbell, A., Becaria, A., Lahiri, D.K., Chronic exposure to aluminum in drinking water increases inflammatory parameters selectively in the brain (2004) J Neurosci Res, 75, pp. 565-572; El-Demerdash, F.M., Antioxidant effect of vitamin e and selenium on lipid peroxidation, enzyme activities and biochemical parameters in rats exposed to aluminium (2004) J Trace Elem Med Biol, 18, pp. 113-121; El-Sayed, W.M., Al-Kahtani, M.A., Abdel-Moneim, A.M., Prophylactic and therapeutic effects of taurine against aluminum-induced acute hepatotoxicity in mice (2011) J Hazard Mater, 192, pp. 880-886; Ellman, G.L., Tissue sulfhydryl groups (1959) Arch Biochem Biophys, 82, pp. 70-77; Factor, V.M., Kiss, A., Woitach, J.T., Disruption of redox homeostasis in the transforming growth factor-alpha/c-myc transgenic mouse model of accelerated hepatocarcinogenesis (1998) J Biol Chem, 273, pp. 15846-15853; Faria, A., Calhau, C., De Freitas, V., Mateus, N., Procyanidins as antioxidants and tumor cell growth modulators (2006) J Agricult Food Chem, 54, pp. 2392-2397; Flora, S.J., Mehta, A., Satsangi, K., Aluminum-induced oxidative stress in rat brain: Response to combined administration of citric acid and HEDTA (2003) Comp Biochem Physiol C Toxicol Pharmacol, 134, pp. 319-328; Ghribi, O., Dewitt, D.A., Forbes, M.S., Co-involvement of mitochondria and endoplasmic reticulum in regulation of apoptosis: Changes in cytochrome c, Bcl-2 and Bax in the hippocampus of aluminum-treated rabbits (2001) Brain Res, 903, pp. 66-73; Gil, M.I., Tomas-Barberan, F.A., Hess-Pierce, B., Antioxidant activity of pomegranate juice and its relationship with phenolic composition and processing (2000) J Agric Food Chem, 48, pp. 4581-4589; Gonzalez-Munoz, M.J., Meseguer, I., Sanchez-Reus, M.I., Beer consumption reduces cerebral oxidation caused by aluminum toxicity by normalizing gene expression of tumor necrotic factor alpha and several antioxidant enzymes (2008) Food Chem Toxicol, 46, pp. 1111-1118; Gonz�lez, M., Bernal, C., Mahieu, S., Carrillo, M., The interactions between the chronic exposure to aluminum and liver regeneration on bile flow and organic anion transport in rats (2009) Biol Trace Elem Res, 127, pp. 164-176; Green, L.C., Wagner, D.A., Glogowski, J., Analysis of nitrate, nitrite, and [15N]nitrate in biological fluids (1982) Anal Biochem, 126, pp. 131-138; Guo, C.-H., Lin, C.-Y., Yeh, M.-S., Hsu, G.-S.W., Aluminum-induced suppression of testosterone through nitric oxide production in male mice (2005) Environ Toxicol Pharm, 19, pp. 33-40; Lansky, E.P., Newman, R.A., Punica granatum (pomegranate) and its potential for prevention and treatment of inflammation and cancer (2007) J Ethnopharmacol, 109, pp. 177-206; Li, Y., Guo, C., Yang, J., Evaluation of antioxidant properties of pomegranate peel extract in comparison with pomegranate pulp extract (2006) Food Chem, 96, pp. 254-260; Matsushima, F., Meshitsuka, S., Ingestion and excretion of aluminum in foods and pharmaceuticals (2001) Nihon Eiseigaku Zasshi, 56, pp. 528-534; Mollace, V., Muscoli, C., Masini, E., Modulation of prostaglandin biosynthesis by nitric oxide and nitric oxide donors (2005) Pharmacol Rev, 57, pp. 217-252; Nehru, B., Anand, P., Oxidative damage following chronic aluminium exposure in adult and pup rat brains (2005) J Trace Elem Med Biol, 19, pp. 203-208; Ni, H., Simile, C., Hardy, A.M., Utilization of complementary and alternative medicine by United States adults: Results from the 1999 national health interview survey (2002) Med Care, 40, pp. 353-358; Nishikimi, M., Appaji, N., Yagi, K., The occurrence of superoxide anion in the reaction of reduced phenazine methosulfate and molecular oxygen (1972) Biochem Biophys Res Commun, 46, pp. 849-854; Ogasawara, Y., Sakamotot, O.E., A model of aluminum exposure associated with lipid peroxidation in rat brain (2003) Biol Trace Elem Res, 96, pp. 191-201; Ohkawa, H., Ohishi, N., Yagi, K., Assay for lipid peroxides in animal tissues by thiobarbituric acid reaction (1979) Anal Biochem, 95, pp. 351-358; Paglia, D.E., Valentine, W.N., Studies on the quantitative and qualitative characterization of erythrocyte glutathione peroxidase (1967) J Lab Clin Med, 70, pp. 158-169; Pedrycz, A., Czerny, K., Immunohistochemical study of proteins linked to apoptosis in rat fetal kidney cells following prepregnancy adriamycin administration in the mother (2008) Acta Histochem, 110, pp. 519-523; Reitman, S., Frankel, S., A colorimetric method for the determination of serum glutamic oxalacetic and glutamic pyruvic transamin-ases (1957) Am J Clin Pathol, 28, pp. 56-63; Shati, A.A., Alamri, S.A., Role of saffron (Crocus sativus L.) and honey syrup on aluminum-induced hepatotoxicity (2010) Saudi Med J, 31, pp. 1106-1113; Shati, A.A., Elsaid, F.G., Hafez, E.E., Biochemical and molecular aspects of aluminium chloride-induced neurotoxicity in mice and the protective role of Crocus sativus L. Extraction and honey syrup (2011) Neuroscience, 175, pp. 66-74; Sumathi, T., Shobana, C., Kumari, B.R., Nandhini, D.N., Protective role of Cynodon dactylon in ameliorating the aluminium-induced neurotoxicity in rat brain regions (2011) Biol Trace Elem Res, 144, pp. 843-853; Tezcan, F., Gultekin-Ozguven, M., Diken, T., Antioxidant activity and total phenolic, organic acid and sugar content in commercial pomegranate juices (2009) Food Chem, 115, pp. 873-877; Togashi, H., Sasaki, M., Frohman, E., Neuronal (type I) nitric oxide synthase regulates nuclear factor kappaB activity and immuno-logic (type II) nitric oxide synthase expression (1997) Proc Natl Acad Sci USA, 94, pp. 2676-2680; Turner, T.T., Lysiak, J.J., Oxidative stress: A common factor in testicular dysfunction (2008) J Androl, 29, pp. 488-498; Viuda-Martos, M., P�rez-Alvarez, J.A., Sendra, E., Fern�ndez- L�pez, J., In vitro antioxidant properties of pomegranate (Punica granatum) peel powder extract obtained as coproduct in the juice extraction process (2012) J Food Process Preserv, , [Epub ahead of print], DOI: 10.1111/j.1745-4549.2012.00715.x; Wang, J., Current researches on biological effect of aluminum (2002) Wei Sheng Yan Jiu, 31, pp. 320-322; Yokel, R.A., The toxicology of aluminum in the brain: A review (2000) Neurotoxicology, 21, pp. 813-828; Yokel, R.A., Wilson, M., Harris, W.R., Halestrap, A.P., Aluminum citrate uptake by immortalized brain endothelial cells: Implications for its blood-brain barrier transport (2002) Brain Res, 930, pp. 101-110; Yousef, M.I., Aluminium-induced changes in hemato-biochemical parameters, lipid peroxidation and enzyme activities of male rabbits: Protective role of ascorbic acid (2004) Toxicology, 199, pp. 47-57; Yousef, M.I., Salama, A.F., Propolis protection from reproductive toxicity caused by aluminium chloride in male rats (2009) Food Chem Toxicol, 47, pp. 1168-1175
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