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  • Επιστημονικές Δημοσιεύσεις Μελών ΠΘ (ΕΔΠΘ)
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The sesquiterpenoid valerenic acid protects neuronal cells from the detrimental effects of the fungicide benomyl on apoptosis and DNA oxidation

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Autor
Kara M., Öztaş E., Boran T., Sevim Ç., Keskin S.E., Veskoukis A.S., Kuzmin S.V., Tsatsakis A.M.
Datum
2022
Language
en
DOI
10.1177/09603271221101038
Schlagwort
benomyl
caspase 3
caspase 9
cell DNA
fungicide
immunoglobulin enhancer binding protein
pesticide
protein Bax
sesquiterpenoid
stress activated protein kinase 1
unclassified drug
valerenic acid
benomyl
DNA
fungicide
indene derivative
sesquiterpene
valerenic acid
antioxidant activity
Article
cell assay
cell viability
comet assay
concentration response
controlled study
degenerative disease
DNA damage
DNA determination
DNA metabolism
human
human cell
MAPK8 gene
neuroapoptosis
neuroprotection
oxidation reduction reaction
oxidative stress
SH-SY5Y cell line
apoptosis
metabolism
neuroblastoma
Apoptosis
Benomyl
DNA
Fungicides, Industrial
Humans
Indenes
Neuroblastoma
Sesquiterpenes
SAGE Publications Ltd
Zur Langanzeige
Zusammenfassung
Background: Valerenic acid (VA), a sesquiterpenoid of the plant Valeriana officinalis, has attracted attention of the research community due to its potential positive role against neurodegenerative diseases induced by chemicals. However, the relevant evidence in the literature is scarce. Therefore, this study aimed to examine the putative protective role of VA on the toxic effects of the fungicide benomyl on SH-SY5Y neural cells. Methods: Cell viability was determined via the MTT and NRU assays, DNA damage was assessed via comet assay and apoptosis was evaluated through the expression of relevant genes. Results: According to the results, exposure of the cells to benomyl enhanced viability inhibition and promoted DNA damage and apoptosis since the expression levels of the genes coding for MAPK8, NF-kB, Bax, Caspase-9 and Caspase-3 were increased. Treatment of the cells with VA ameliorated these effects in a concentration dependent manner. Conclusion: It is concluded that the molecular mechanism through which benomyl exerts its toxic action appears to depend on DNA oxidation and apoptosis induction. Furthermore, VA, a plant-derived compound is a protective antioxidant against pesticide-induced toxicity. Therefore, herbs, extracts and compounds of plant origin could be used as nutritional supplements that back up the beneficial role of medicine in neurodegenerative diseases. © The Author(s) 2022.
URI
http://hdl.handle.net/11615/74313
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