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Cobalt exposure triggers impairments in cognitive and anxiety-like behaviors, brain oxidative stress and inflammation, and hippocampo-amygdala histomorphological alterations: Protective role of aqueous Prosopis africana seed extract

OBJECTIVE(S): Cobalt toxicity has become a health concern in recent years, due to overexposure resulting in neurological impairments. With a growing interest in the therapeutic roles of herbs, in toxicity research, it’s worth looking into the curative effects of aqueous Prosopis africana seed extrac...

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Autores principales: Oria, Rademene Sunday, Ben, Runyi Bassey, Esomonu, Ugochukwu Godfrey, Essien, Precious Ibiang, Odinaka, Linda Eze, Ettah, Gift Ekligbor, Eyong, Otu Otu, Ijomone, Omamuyovwi Meashack
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Mashhad University of Medical Sciences 2022
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9742575/
https://www.ncbi.nlm.nih.gov/pubmed/36544532
http://dx.doi.org/10.22038/IJBMS.2022.65689.14456
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author Oria, Rademene Sunday
Ben, Runyi Bassey
Esomonu, Ugochukwu Godfrey
Essien, Precious Ibiang
Odinaka, Linda Eze
Ettah, Gift Ekligbor
Eyong, Otu Otu
Ijomone, Omamuyovwi Meashack
author_facet Oria, Rademene Sunday
Ben, Runyi Bassey
Esomonu, Ugochukwu Godfrey
Essien, Precious Ibiang
Odinaka, Linda Eze
Ettah, Gift Ekligbor
Eyong, Otu Otu
Ijomone, Omamuyovwi Meashack
author_sort Oria, Rademene Sunday
collection PubMed
description OBJECTIVE(S): Cobalt toxicity has become a health concern in recent years, due to overexposure resulting in neurological impairments. With a growing interest in the therapeutic roles of herbs, in toxicity research, it’s worth looking into the curative effects of aqueous Prosopis africana seed extract, a plant rich in flavonoids on cobalt-induced neurotoxicity. MATERIALS AND METHODS: We treated rats with CoCl(2) or CoCl(2) in combination with aqueous PA seed extract (PAE) orally for 14 days. Control rats received distilled water for the same period. Following treatments, behavioral experiments, analysis for oxidative stress, inflammation, and histological and immunohistochemical analysis were performed. RESULTS: Results revealed that CoCl(2) reduced the exploration time, recognition index in the novel object recognition test, percentage spontaneous alternation in the Y-maze tests, and reduced open arm entry and duration in elevated plus-maze. However, treatment with PAE improved these parameters to levels comparable with those of the control group. Furthermore, PAE therapy reduced CoCl(2)-induced surge in hydrogen peroxide, malondialdehyde, TNF-α and IL-1β levels in brain homogenate, while also increasing superoxide dismutase and reduced reduced-glutathione activities. CoCl(2) exposure resulted in obvious features of neurodegeneration like nuclear disintegration, nuclear shrinkage, and cytoplasmic vacuolations of the cells of the hippocampus and amygdala, with an increased expression of GFAP. The hippocampal and amygdala histology improved after PAE administration, while exacerbated GFAP expressions were attenuated. CONCLUSION: These findings imply that PAE may be anxiolytic and can help reduce cognitive impairments and hippocampal damage caused by CoCl(2) neurotoxicity, via mechanisms that involve attenuation of oxidative stress and inflammation.
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spelling pubmed-97425752022-12-20 Cobalt exposure triggers impairments in cognitive and anxiety-like behaviors, brain oxidative stress and inflammation, and hippocampo-amygdala histomorphological alterations: Protective role of aqueous Prosopis africana seed extract Oria, Rademene Sunday Ben, Runyi Bassey Esomonu, Ugochukwu Godfrey Essien, Precious Ibiang Odinaka, Linda Eze Ettah, Gift Ekligbor Eyong, Otu Otu Ijomone, Omamuyovwi Meashack Iran J Basic Med Sci Short Communication OBJECTIVE(S): Cobalt toxicity has become a health concern in recent years, due to overexposure resulting in neurological impairments. With a growing interest in the therapeutic roles of herbs, in toxicity research, it’s worth looking into the curative effects of aqueous Prosopis africana seed extract, a plant rich in flavonoids on cobalt-induced neurotoxicity. MATERIALS AND METHODS: We treated rats with CoCl(2) or CoCl(2) in combination with aqueous PA seed extract (PAE) orally for 14 days. Control rats received distilled water for the same period. Following treatments, behavioral experiments, analysis for oxidative stress, inflammation, and histological and immunohistochemical analysis were performed. RESULTS: Results revealed that CoCl(2) reduced the exploration time, recognition index in the novel object recognition test, percentage spontaneous alternation in the Y-maze tests, and reduced open arm entry and duration in elevated plus-maze. However, treatment with PAE improved these parameters to levels comparable with those of the control group. Furthermore, PAE therapy reduced CoCl(2)-induced surge in hydrogen peroxide, malondialdehyde, TNF-α and IL-1β levels in brain homogenate, while also increasing superoxide dismutase and reduced reduced-glutathione activities. CoCl(2) exposure resulted in obvious features of neurodegeneration like nuclear disintegration, nuclear shrinkage, and cytoplasmic vacuolations of the cells of the hippocampus and amygdala, with an increased expression of GFAP. The hippocampal and amygdala histology improved after PAE administration, while exacerbated GFAP expressions were attenuated. CONCLUSION: These findings imply that PAE may be anxiolytic and can help reduce cognitive impairments and hippocampal damage caused by CoCl(2) neurotoxicity, via mechanisms that involve attenuation of oxidative stress and inflammation. Mashhad University of Medical Sciences 2022-12 /pmc/articles/PMC9742575/ /pubmed/36544532 http://dx.doi.org/10.22038/IJBMS.2022.65689.14456 Text en https://creativecommons.org/licenses/by/3.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License, (http://creativecommons.org/licenses/by/3.0/ (https://creativecommons.org/licenses/by/3.0/) ) which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Short Communication
Oria, Rademene Sunday
Ben, Runyi Bassey
Esomonu, Ugochukwu Godfrey
Essien, Precious Ibiang
Odinaka, Linda Eze
Ettah, Gift Ekligbor
Eyong, Otu Otu
Ijomone, Omamuyovwi Meashack
Cobalt exposure triggers impairments in cognitive and anxiety-like behaviors, brain oxidative stress and inflammation, and hippocampo-amygdala histomorphological alterations: Protective role of aqueous Prosopis africana seed extract
title Cobalt exposure triggers impairments in cognitive and anxiety-like behaviors, brain oxidative stress and inflammation, and hippocampo-amygdala histomorphological alterations: Protective role of aqueous Prosopis africana seed extract
title_full Cobalt exposure triggers impairments in cognitive and anxiety-like behaviors, brain oxidative stress and inflammation, and hippocampo-amygdala histomorphological alterations: Protective role of aqueous Prosopis africana seed extract
title_fullStr Cobalt exposure triggers impairments in cognitive and anxiety-like behaviors, brain oxidative stress and inflammation, and hippocampo-amygdala histomorphological alterations: Protective role of aqueous Prosopis africana seed extract
title_full_unstemmed Cobalt exposure triggers impairments in cognitive and anxiety-like behaviors, brain oxidative stress and inflammation, and hippocampo-amygdala histomorphological alterations: Protective role of aqueous Prosopis africana seed extract
title_short Cobalt exposure triggers impairments in cognitive and anxiety-like behaviors, brain oxidative stress and inflammation, and hippocampo-amygdala histomorphological alterations: Protective role of aqueous Prosopis africana seed extract
title_sort cobalt exposure triggers impairments in cognitive and anxiety-like behaviors, brain oxidative stress and inflammation, and hippocampo-amygdala histomorphological alterations: protective role of aqueous prosopis africana seed extract
topic Short Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9742575/
https://www.ncbi.nlm.nih.gov/pubmed/36544532
http://dx.doi.org/10.22038/IJBMS.2022.65689.14456
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