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Effect of black chokeberry on skeletal muscle damage and neuronal cell death
[PURPOSE]: Numerous epidemiological studies have shown that it is possible to prescribe exercise for neurodegenerative disease, such as Alzheimer's disease and Parkinson’s disease. However, despite the availability of diverse scientific knowledge, the effects of exercise in this regard are stil...
Autores principales: | , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
한국운동영양학회
2019
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7004568/ https://www.ncbi.nlm.nih.gov/pubmed/32018343 http://dx.doi.org/10.20463/jenb.2019.0028 |
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author | Kim, Jisu Lee, Kang Pa Beak, Suji Kang, Hye Ra Kim, Yong Kyun Lim, Kiwon |
author_facet | Kim, Jisu Lee, Kang Pa Beak, Suji Kang, Hye Ra Kim, Yong Kyun Lim, Kiwon |
author_sort | Kim, Jisu |
collection | PubMed |
description | [PURPOSE]: Numerous epidemiological studies have shown that it is possible to prescribe exercise for neurodegenerative disease, such as Alzheimer's disease and Parkinson’s disease. However, despite the availability of diverse scientific knowledge, the effects of exercise in this regard are still unclear. Therefore, this study attempted to investigate a substance, such as black chokeberry (Aronia melanocapa L.) that could improve the ability of the treatment and enhance the benefits of exercising in neurodegenerative diseases. [METHODS]: The cell viability was tested with 2,3-bis[2-methyloxy-4-nitro-5-sulfophenyl]-2H-tetrazolim-5-carboxanilide and the cells were stained with ethidium homodimer-1 solution. The mRNA expression levels were evaluated by microarray. The active compounds of black chokeberry ethanolic extract (BCE) were analyzed by gas chromatography. The chemical shift analysis in the brain was performed using magnetic resonance spectroscopy. [RESULTS]: BCE treatment decreased hydrogen peroxide-induced L6 cell death and beta amyloid induced primary neuronal cell death. Furthermore, BCE treatment significantly reduced the mRNA levels of the inflammatory factors, such as IL-1α, Cxcl13, IL36rn, Itgb2, Epha2, Slamf8, Itgb6, Kdm6b, Acvr1, Cd6, Adora3, Cd27, Gata3, Tnfrsf25, Cd40lg, Clec10a, and Slc11a1, in the primary neuronal cells. Next, we identified 16 active compounds from BCE, including D-mannitol. In vivo, BCE (administered orally at a dosage of 50 mg/kg) significantly regulated chemical shift in the brain. [CONCLUSION]: Our findings suggest that BCE can serve as a candidate for neurodegenerative disease therapy owing to its cyto-protective and anti-inflammatory effects. Therefore, BCE treatment is expected to prevent damage to the muscles and neurons of the athletes who continue high intensity exercise. In future studies, it would be necessary to elucidate the effects of combined BCE intake and exercise. |
format | Online Article Text |
id | pubmed-7004568 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2019 |
publisher | 한국운동영양학회 |
record_format | MEDLINE/PubMed |
spelling | pubmed-70045682020-02-13 Effect of black chokeberry on skeletal muscle damage and neuronal cell death Kim, Jisu Lee, Kang Pa Beak, Suji Kang, Hye Ra Kim, Yong Kyun Lim, Kiwon J Exerc Nutrition Biochem Original Articles [PURPOSE]: Numerous epidemiological studies have shown that it is possible to prescribe exercise for neurodegenerative disease, such as Alzheimer's disease and Parkinson’s disease. However, despite the availability of diverse scientific knowledge, the effects of exercise in this regard are still unclear. Therefore, this study attempted to investigate a substance, such as black chokeberry (Aronia melanocapa L.) that could improve the ability of the treatment and enhance the benefits of exercising in neurodegenerative diseases. [METHODS]: The cell viability was tested with 2,3-bis[2-methyloxy-4-nitro-5-sulfophenyl]-2H-tetrazolim-5-carboxanilide and the cells were stained with ethidium homodimer-1 solution. The mRNA expression levels were evaluated by microarray. The active compounds of black chokeberry ethanolic extract (BCE) were analyzed by gas chromatography. The chemical shift analysis in the brain was performed using magnetic resonance spectroscopy. [RESULTS]: BCE treatment decreased hydrogen peroxide-induced L6 cell death and beta amyloid induced primary neuronal cell death. Furthermore, BCE treatment significantly reduced the mRNA levels of the inflammatory factors, such as IL-1α, Cxcl13, IL36rn, Itgb2, Epha2, Slamf8, Itgb6, Kdm6b, Acvr1, Cd6, Adora3, Cd27, Gata3, Tnfrsf25, Cd40lg, Clec10a, and Slc11a1, in the primary neuronal cells. Next, we identified 16 active compounds from BCE, including D-mannitol. In vivo, BCE (administered orally at a dosage of 50 mg/kg) significantly regulated chemical shift in the brain. [CONCLUSION]: Our findings suggest that BCE can serve as a candidate for neurodegenerative disease therapy owing to its cyto-protective and anti-inflammatory effects. Therefore, BCE treatment is expected to prevent damage to the muscles and neurons of the athletes who continue high intensity exercise. In future studies, it would be necessary to elucidate the effects of combined BCE intake and exercise. 한국운동영양학회 2019-12-31 /pmc/articles/PMC7004568/ /pubmed/32018343 http://dx.doi.org/10.20463/jenb.2019.0028 Text en ©2019 The Korean Society for Exercise Nutrition ©2019 Jisu Kim et al.; License Journal of Exercise Nutrition and Biochemistry. This is an open access article distributed under the terms of the creative commons attribution license (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the orginal work is properly cited. |
spellingShingle | Original Articles Kim, Jisu Lee, Kang Pa Beak, Suji Kang, Hye Ra Kim, Yong Kyun Lim, Kiwon Effect of black chokeberry on skeletal muscle damage and neuronal cell death |
title | Effect of black chokeberry on skeletal muscle damage and neuronal cell death |
title_full | Effect of black chokeberry on skeletal muscle damage and neuronal cell death |
title_fullStr | Effect of black chokeberry on skeletal muscle damage and neuronal cell death |
title_full_unstemmed | Effect of black chokeberry on skeletal muscle damage and neuronal cell death |
title_short | Effect of black chokeberry on skeletal muscle damage and neuronal cell death |
title_sort | effect of black chokeberry on skeletal muscle damage and neuronal cell death |
topic | Original Articles |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7004568/ https://www.ncbi.nlm.nih.gov/pubmed/32018343 http://dx.doi.org/10.20463/jenb.2019.0028 |
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