Article detail · 2019 · article
Neuroprotective effects of mitoquinone and oleandrin on Parkinson’s disease model in zebrafish
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- YÖKSİSYÖKSİS article record
- YÖKSİS venueInternational Journal of Neuroscience
- Catalog match (ISSN)International Journal of Neuroscience
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- Semantic Scholarcitation count (not merged with OpenAlex)
Abstract
Aim: The aim of this study is to investigate the possible protective effects of mitoquinone and oleandrin on rotenone induced Parkinson’s disease in zebrafish. Materials and methods: Adult zebrafish were exposed to rotenone and mitoquinone for 30 days. Biochemical parameters were determined by spectrophotometric method and Parkinson’s disease-related gene expressions were determined by reverse transcription polymerase chain reaction method. Measurement of neurotransmitters was performed by liquid chromatography tandem-mass spectrometry instrument. The accumulation of synuclein was demonstrated by immunohistochemical staining. In vitro thiazolyl blue tetrazolium bromide method was applied to determine the mitochondrial function of synaptosomal brain fractions using rotenone as a neurotoxic agent and mitoquinone and oleandrin as neuroprotective agents. Results: Mitoquinone improved the oxidant-antioxidant balance and neurotransmitter levels that were disrupted by rotenone. Mitoquinone also ameliorated the expressions of Parkinson’s disease-related gene expressions that were disrupted by rotenone. According to thiazolyl blue tetrazolium bromide assay results, mitoquinone and oleandrin increased mitochondrial function which was decreased due to rotenone exposure. Conclusion: Based on the results of our study, positive effects of mitoquinone were observed in Parkinson’s disease model induced by rotenone in zebrafish.
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46citationsOpenAlex · cited_by_count (cache / database)
29 publications in the local catalog that cite this work (OpenAlex reference match; not the full global list).
- 2020 Oleandrin: A bioactive phytochemical and potential cancer killer via multiple cellular signaling pathwaysCitations 75 · OpenAlex
- 2021 Caprylic acid ameliorates rotenone induced inflammation and oxidative stress in the gut-brain axis in ZebrafishCitations 74 · OpenAlex
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- 2022 Amelioration of rotenone‐induced alterations in energy/redox system, stress response and cytoskeleton proteins by octanoic acid in zebrafish: A proteomic studyCitations 20 · OpenAlex
- 2022 Amelioration of rotenone‐induced alterations in energy/redox system, stress response and cytoskeleton proteins by octanoic acid in zebrafish: A proteomic studyCitations 20 · OpenAlex
- 2023 Identification of molecular network of gut‐brain axis associated with neuroprotective effects of PPARδ‐ligand erucic acid in rotenone‐induced Parkinsons disease model in zebrafishCitations 19 · OpenAlex
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