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Watermelon rind ethanol extract exhibits hepato-renal protection against lead induced-impaired antioxidant defenses in male Wistar rats

Lead acetate associated tissue injury has been linked to altered antioxidant defenses, hyperuricemia and inflammation. We hypothesized that watermelon rind extract, would ameliorate lead acetate-induced hepato-renal injury. Thirty Male Wistar rats received distilled water, lead acetate (Pb; 5 mg/kg)...

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Autores principales: Michael, Olugbenga S., Bamidele, Olubayode, Ogheneovo, Pamela, Ariyo, Temitope A., Adedayo, Lawrence D., Oluranti, Olufemi I., Soladoye, Elizabeth O., Adetunji, Charles O., Awobajo, Funmileyi O.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8607130/
https://www.ncbi.nlm.nih.gov/pubmed/34841269
http://dx.doi.org/10.1016/j.crphys.2021.11.002
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author Michael, Olugbenga S.
Bamidele, Olubayode
Ogheneovo, Pamela
Ariyo, Temitope A.
Adedayo, Lawrence D.
Oluranti, Olufemi I.
Soladoye, Elizabeth O.
Adetunji, Charles O.
Awobajo, Funmileyi O.
author_facet Michael, Olugbenga S.
Bamidele, Olubayode
Ogheneovo, Pamela
Ariyo, Temitope A.
Adedayo, Lawrence D.
Oluranti, Olufemi I.
Soladoye, Elizabeth O.
Adetunji, Charles O.
Awobajo, Funmileyi O.
author_sort Michael, Olugbenga S.
collection PubMed
description Lead acetate associated tissue injury has been linked to altered antioxidant defenses, hyperuricemia and inflammation. We hypothesized that watermelon rind extract, would ameliorate lead acetate-induced hepato-renal injury. Thirty Male Wistar rats received distilled water, lead acetate (Pb; 5 mg/kg) with or without watermelon rind extract (WM; 400 mg/kg; WM + Pb; 15 days of WM pretreatment); Pb + WM (15 days of WM post treatment) and simultaneous treatment (WM-Pb) for 30 days. Lead toxicity led to elevated serum malondialdehyde, creatinine, urea, uric acid, lactate dehydrogenase, liver injury enzymes, as well as decreased body weight. Decreased serum levels of reduced glutathione, nitric oxide, total protein and glutathione peroxidase activity was also observed. However, these alterations were ameliorated by watermelon rind extract in lead acetate-treated rats. Watermelon rind ethanol extract protects against lead acetate-induced hepato-renal injury through improved antioxidant defenses at least in part, via uric acid/nitric oxide-dependent pathway signifying the health benefits of this agricultural waste and a potential for waste recycling while limiting environmental pollution.
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spelling pubmed-86071302021-11-26 Watermelon rind ethanol extract exhibits hepato-renal protection against lead induced-impaired antioxidant defenses in male Wistar rats Michael, Olugbenga S. Bamidele, Olubayode Ogheneovo, Pamela Ariyo, Temitope A. Adedayo, Lawrence D. Oluranti, Olufemi I. Soladoye, Elizabeth O. Adetunji, Charles O. Awobajo, Funmileyi O. Curr Res Physiol Research Paper Lead acetate associated tissue injury has been linked to altered antioxidant defenses, hyperuricemia and inflammation. We hypothesized that watermelon rind extract, would ameliorate lead acetate-induced hepato-renal injury. Thirty Male Wistar rats received distilled water, lead acetate (Pb; 5 mg/kg) with or without watermelon rind extract (WM; 400 mg/kg; WM + Pb; 15 days of WM pretreatment); Pb + WM (15 days of WM post treatment) and simultaneous treatment (WM-Pb) for 30 days. Lead toxicity led to elevated serum malondialdehyde, creatinine, urea, uric acid, lactate dehydrogenase, liver injury enzymes, as well as decreased body weight. Decreased serum levels of reduced glutathione, nitric oxide, total protein and glutathione peroxidase activity was also observed. However, these alterations were ameliorated by watermelon rind extract in lead acetate-treated rats. Watermelon rind ethanol extract protects against lead acetate-induced hepato-renal injury through improved antioxidant defenses at least in part, via uric acid/nitric oxide-dependent pathway signifying the health benefits of this agricultural waste and a potential for waste recycling while limiting environmental pollution. Elsevier 2021-11-17 /pmc/articles/PMC8607130/ /pubmed/34841269 http://dx.doi.org/10.1016/j.crphys.2021.11.002 Text en © 2021 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Paper
Michael, Olugbenga S.
Bamidele, Olubayode
Ogheneovo, Pamela
Ariyo, Temitope A.
Adedayo, Lawrence D.
Oluranti, Olufemi I.
Soladoye, Elizabeth O.
Adetunji, Charles O.
Awobajo, Funmileyi O.
Watermelon rind ethanol extract exhibits hepato-renal protection against lead induced-impaired antioxidant defenses in male Wistar rats
title Watermelon rind ethanol extract exhibits hepato-renal protection against lead induced-impaired antioxidant defenses in male Wistar rats
title_full Watermelon rind ethanol extract exhibits hepato-renal protection against lead induced-impaired antioxidant defenses in male Wistar rats
title_fullStr Watermelon rind ethanol extract exhibits hepato-renal protection against lead induced-impaired antioxidant defenses in male Wistar rats
title_full_unstemmed Watermelon rind ethanol extract exhibits hepato-renal protection against lead induced-impaired antioxidant defenses in male Wistar rats
title_short Watermelon rind ethanol extract exhibits hepato-renal protection against lead induced-impaired antioxidant defenses in male Wistar rats
title_sort watermelon rind ethanol extract exhibits hepato-renal protection against lead induced-impaired antioxidant defenses in male wistar rats
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8607130/
https://www.ncbi.nlm.nih.gov/pubmed/34841269
http://dx.doi.org/10.1016/j.crphys.2021.11.002
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