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Cucumeropsis mannii seed oil protects against Bisphenol A‐induced testicular mitochondrial damages

There has been increasing search for the ameliorative properties of seed oils against toxicants. bisphenol A acts as an estrogenic endocrine‐disrupting chemical capable of causing male infertility. This study aimed to explore Cucumeropsis mannii seed oil effects against mitochondrial damage in rats...

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Autores principales: Aja, Patrick Maduabuchi, Ogwoni, Hilary Akobi, Agu, Peter Chinedu, Ekpono, Ejike Ugbala, Awoke, Joshua Nonso, Ukachi, Oliver Ugochukwu, Orji, Obasi Uche, Ale, Boniface Anthony, Nweke, Chinonso Peter, Igwenyi, Ikechukwu Okorie, Alum, Esther Ugo, Chukwu, Darlington C., Offor, Christian E., Asuk, Atamgba Agbor, Eze, Ejike Daniel, Yakubu, Ojochenemi E., Akobi, J. B., Ani, Onyedika Gabriel, Awuchi, Chinaza Godswill
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10261808/
https://www.ncbi.nlm.nih.gov/pubmed/37324897
http://dx.doi.org/10.1002/fsn3.3260
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author Aja, Patrick Maduabuchi
Ogwoni, Hilary Akobi
Agu, Peter Chinedu
Ekpono, Ejike Ugbala
Awoke, Joshua Nonso
Ukachi, Oliver Ugochukwu
Orji, Obasi Uche
Ale, Boniface Anthony
Nweke, Chinonso Peter
Igwenyi, Ikechukwu Okorie
Alum, Esther Ugo
Chukwu, Darlington C.
Offor, Christian E.
Asuk, Atamgba Agbor
Eze, Ejike Daniel
Yakubu, Ojochenemi E.
Akobi, J. B.
Ani, Onyedika Gabriel
Awuchi, Chinaza Godswill
author_facet Aja, Patrick Maduabuchi
Ogwoni, Hilary Akobi
Agu, Peter Chinedu
Ekpono, Ejike Ugbala
Awoke, Joshua Nonso
Ukachi, Oliver Ugochukwu
Orji, Obasi Uche
Ale, Boniface Anthony
Nweke, Chinonso Peter
Igwenyi, Ikechukwu Okorie
Alum, Esther Ugo
Chukwu, Darlington C.
Offor, Christian E.
Asuk, Atamgba Agbor
Eze, Ejike Daniel
Yakubu, Ojochenemi E.
Akobi, J. B.
Ani, Onyedika Gabriel
Awuchi, Chinaza Godswill
author_sort Aja, Patrick Maduabuchi
collection PubMed
description There has been increasing search for the ameliorative properties of seed oils against toxicants. bisphenol A acts as an estrogenic endocrine‐disrupting chemical capable of causing male infertility. This study aimed to explore Cucumeropsis mannii seed oil effects against mitochondrial damage in rats using bisphenol A. Forty‐eight rats were randomly assigned to six groups (n = 6) of eight rats each and fed the same food and water for 6 weeks. The group A rats were given 1 mL olive oil, while the ones in group B were given bisphenol A at 100 mL/kg body weight via oral route. Group C received C. mannii seed oil 7.5 mL/kg body weight C. mannii seed oil, while group D, group E, and group F were pre‐administered bisphenol A at 100 mL/kg body weight, followed by treatment with C. mannii seed oil at 7.5, 5, and 2.5 mL/kg body weight, respectively. Antioxidant enzymes, glutathione, reactive oxygen species, testicular volume, malondialdehyde, body weight, and testicular studies were done using standard methods. The results of the bisphenol A‐administered group showed a significant decrease in the antioxidant enzymes, glutathione, body weight, and testicular volume with elevation in the levels of reactive oxygen species, malondialdehyde, and testicular indices. BPA + CMSO‐treated group showed a significant increase in GPx activity compared with BPA‐exposed rats. CMSO treatment significantly increased catalase activity in comparison with that of rats exposed to BPA. Remarkably, C. mannii seed oil and bisphenol A co‐administration significantly reversed the abnormalities observed in the dysregulated biochemical biomarkers. Our findings suggest that C. mannii seed oil has considerable antioxidant potential which can be explored in therapeutic development against systemic toxicity induced by exposure to bisphenol A. Cucumeropsis mannii seed oil protects against bisphenol A‐induced testicular mitochondria damages.
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spelling pubmed-102618082023-06-15 Cucumeropsis mannii seed oil protects against Bisphenol A‐induced testicular mitochondrial damages Aja, Patrick Maduabuchi Ogwoni, Hilary Akobi Agu, Peter Chinedu Ekpono, Ejike Ugbala Awoke, Joshua Nonso Ukachi, Oliver Ugochukwu Orji, Obasi Uche Ale, Boniface Anthony Nweke, Chinonso Peter Igwenyi, Ikechukwu Okorie Alum, Esther Ugo Chukwu, Darlington C. Offor, Christian E. Asuk, Atamgba Agbor Eze, Ejike Daniel Yakubu, Ojochenemi E. Akobi, J. B. Ani, Onyedika Gabriel Awuchi, Chinaza Godswill Food Sci Nutr Original Articles There has been increasing search for the ameliorative properties of seed oils against toxicants. bisphenol A acts as an estrogenic endocrine‐disrupting chemical capable of causing male infertility. This study aimed to explore Cucumeropsis mannii seed oil effects against mitochondrial damage in rats using bisphenol A. Forty‐eight rats were randomly assigned to six groups (n = 6) of eight rats each and fed the same food and water for 6 weeks. The group A rats were given 1 mL olive oil, while the ones in group B were given bisphenol A at 100 mL/kg body weight via oral route. Group C received C. mannii seed oil 7.5 mL/kg body weight C. mannii seed oil, while group D, group E, and group F were pre‐administered bisphenol A at 100 mL/kg body weight, followed by treatment with C. mannii seed oil at 7.5, 5, and 2.5 mL/kg body weight, respectively. Antioxidant enzymes, glutathione, reactive oxygen species, testicular volume, malondialdehyde, body weight, and testicular studies were done using standard methods. The results of the bisphenol A‐administered group showed a significant decrease in the antioxidant enzymes, glutathione, body weight, and testicular volume with elevation in the levels of reactive oxygen species, malondialdehyde, and testicular indices. BPA + CMSO‐treated group showed a significant increase in GPx activity compared with BPA‐exposed rats. CMSO treatment significantly increased catalase activity in comparison with that of rats exposed to BPA. Remarkably, C. mannii seed oil and bisphenol A co‐administration significantly reversed the abnormalities observed in the dysregulated biochemical biomarkers. Our findings suggest that C. mannii seed oil has considerable antioxidant potential which can be explored in therapeutic development against systemic toxicity induced by exposure to bisphenol A. Cucumeropsis mannii seed oil protects against bisphenol A‐induced testicular mitochondria damages. John Wiley and Sons Inc. 2023-02-07 /pmc/articles/PMC10261808/ /pubmed/37324897 http://dx.doi.org/10.1002/fsn3.3260 Text en © 2023 The Authors. Food Science & Nutrition published by Wiley Periodicals LLC. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Aja, Patrick Maduabuchi
Ogwoni, Hilary Akobi
Agu, Peter Chinedu
Ekpono, Ejike Ugbala
Awoke, Joshua Nonso
Ukachi, Oliver Ugochukwu
Orji, Obasi Uche
Ale, Boniface Anthony
Nweke, Chinonso Peter
Igwenyi, Ikechukwu Okorie
Alum, Esther Ugo
Chukwu, Darlington C.
Offor, Christian E.
Asuk, Atamgba Agbor
Eze, Ejike Daniel
Yakubu, Ojochenemi E.
Akobi, J. B.
Ani, Onyedika Gabriel
Awuchi, Chinaza Godswill
Cucumeropsis mannii seed oil protects against Bisphenol A‐induced testicular mitochondrial damages
title Cucumeropsis mannii seed oil protects against Bisphenol A‐induced testicular mitochondrial damages
title_full Cucumeropsis mannii seed oil protects against Bisphenol A‐induced testicular mitochondrial damages
title_fullStr Cucumeropsis mannii seed oil protects against Bisphenol A‐induced testicular mitochondrial damages
title_full_unstemmed Cucumeropsis mannii seed oil protects against Bisphenol A‐induced testicular mitochondrial damages
title_short Cucumeropsis mannii seed oil protects against Bisphenol A‐induced testicular mitochondrial damages
title_sort cucumeropsis mannii seed oil protects against bisphenol a‐induced testicular mitochondrial damages
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10261808/
https://www.ncbi.nlm.nih.gov/pubmed/37324897
http://dx.doi.org/10.1002/fsn3.3260
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