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A Cystine-Rich Whey Supplement (Immunocal®) Provides Neuroprotection from Diverse Oxidative Stress-Inducing Agents In Vitro by Preserving Cellular Glutathione

Oxidative stress is a principal mechanism underlying the pathophysiology of neurodegeneration. Therefore, nutritional enhancement of endogenous antioxidant defenses may represent a viable treatment option. We investigated the neuroprotective properties of a unique whey protein supplement (Immunocal®...

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Autores principales: Winter, Aimee N., Ross, Erika K., Daliparthi, Vamsi, Sumner, Whitney A., Kirchhof, Danielle M., Manning, Evan, Wilkins, Heather M., Linseman, Daniel A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5574309/
https://www.ncbi.nlm.nih.gov/pubmed/28894506
http://dx.doi.org/10.1155/2017/3103272
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author Winter, Aimee N.
Ross, Erika K.
Daliparthi, Vamsi
Sumner, Whitney A.
Kirchhof, Danielle M.
Manning, Evan
Wilkins, Heather M.
Linseman, Daniel A.
author_facet Winter, Aimee N.
Ross, Erika K.
Daliparthi, Vamsi
Sumner, Whitney A.
Kirchhof, Danielle M.
Manning, Evan
Wilkins, Heather M.
Linseman, Daniel A.
author_sort Winter, Aimee N.
collection PubMed
description Oxidative stress is a principal mechanism underlying the pathophysiology of neurodegeneration. Therefore, nutritional enhancement of endogenous antioxidant defenses may represent a viable treatment option. We investigated the neuroprotective properties of a unique whey protein supplement (Immunocal®) that provides an essential precursor (cystine) for synthesis of the endogenous antioxidant, glutathione (GSH). Primary cultures of rat cerebellar granule neurons (CGNs), NSC34 motor neuronal cells, or HT22 hippocampal cells were preincubated in medium containing Immunocal and then subsequently treated with agents known to induce oxidative stress. Immunocal protected CGNs against neurotoxicity induced by the Bcl-2 inhibitor, HA14-1, the nitric oxide donor, sodium nitroprusside, CuCl(2), and AlCl(3). Immunocal also significantly reduced NSC34 cell death due to either H(2)O(2) or glutamate and mitigated toxicity in HT22 cells overexpressing β-amyloid(1-42). The neuroprotective effects of Immunocal were blocked by inhibition of γ-glutamyl-cysteine ligase, demonstrating dependence on de novo GSH synthesis. These findings indicate that sustaining GSH with Immunocal significantly protects neurons against diverse inducers of oxidative stress. Thus, Immunocal is a nutritional supplement worthy of testing in preclinical animal models of neurodegeneration and in future clinical trials of patients afflicted by these diseases.
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spelling pubmed-55743092017-09-11 A Cystine-Rich Whey Supplement (Immunocal®) Provides Neuroprotection from Diverse Oxidative Stress-Inducing Agents In Vitro by Preserving Cellular Glutathione Winter, Aimee N. Ross, Erika K. Daliparthi, Vamsi Sumner, Whitney A. Kirchhof, Danielle M. Manning, Evan Wilkins, Heather M. Linseman, Daniel A. Oxid Med Cell Longev Research Article Oxidative stress is a principal mechanism underlying the pathophysiology of neurodegeneration. Therefore, nutritional enhancement of endogenous antioxidant defenses may represent a viable treatment option. We investigated the neuroprotective properties of a unique whey protein supplement (Immunocal®) that provides an essential precursor (cystine) for synthesis of the endogenous antioxidant, glutathione (GSH). Primary cultures of rat cerebellar granule neurons (CGNs), NSC34 motor neuronal cells, or HT22 hippocampal cells were preincubated in medium containing Immunocal and then subsequently treated with agents known to induce oxidative stress. Immunocal protected CGNs against neurotoxicity induced by the Bcl-2 inhibitor, HA14-1, the nitric oxide donor, sodium nitroprusside, CuCl(2), and AlCl(3). Immunocal also significantly reduced NSC34 cell death due to either H(2)O(2) or glutamate and mitigated toxicity in HT22 cells overexpressing β-amyloid(1-42). The neuroprotective effects of Immunocal were blocked by inhibition of γ-glutamyl-cysteine ligase, demonstrating dependence on de novo GSH synthesis. These findings indicate that sustaining GSH with Immunocal significantly protects neurons against diverse inducers of oxidative stress. Thus, Immunocal is a nutritional supplement worthy of testing in preclinical animal models of neurodegeneration and in future clinical trials of patients afflicted by these diseases. Hindawi 2017 2017-08-15 /pmc/articles/PMC5574309/ /pubmed/28894506 http://dx.doi.org/10.1155/2017/3103272 Text en Copyright © 2017 Aimee N. Winter et al. http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Winter, Aimee N.
Ross, Erika K.
Daliparthi, Vamsi
Sumner, Whitney A.
Kirchhof, Danielle M.
Manning, Evan
Wilkins, Heather M.
Linseman, Daniel A.
A Cystine-Rich Whey Supplement (Immunocal®) Provides Neuroprotection from Diverse Oxidative Stress-Inducing Agents In Vitro by Preserving Cellular Glutathione
title A Cystine-Rich Whey Supplement (Immunocal®) Provides Neuroprotection from Diverse Oxidative Stress-Inducing Agents In Vitro by Preserving Cellular Glutathione
title_full A Cystine-Rich Whey Supplement (Immunocal®) Provides Neuroprotection from Diverse Oxidative Stress-Inducing Agents In Vitro by Preserving Cellular Glutathione
title_fullStr A Cystine-Rich Whey Supplement (Immunocal®) Provides Neuroprotection from Diverse Oxidative Stress-Inducing Agents In Vitro by Preserving Cellular Glutathione
title_full_unstemmed A Cystine-Rich Whey Supplement (Immunocal®) Provides Neuroprotection from Diverse Oxidative Stress-Inducing Agents In Vitro by Preserving Cellular Glutathione
title_short A Cystine-Rich Whey Supplement (Immunocal®) Provides Neuroprotection from Diverse Oxidative Stress-Inducing Agents In Vitro by Preserving Cellular Glutathione
title_sort cystine-rich whey supplement (immunocal®) provides neuroprotection from diverse oxidative stress-inducing agents in vitro by preserving cellular glutathione
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5574309/
https://www.ncbi.nlm.nih.gov/pubmed/28894506
http://dx.doi.org/10.1155/2017/3103272
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