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The role of neuronal nitric oxide and its pathways in the protection and recovery from neurotoxin-induced de novo hypokinetic motor behaviors in the embryonic zebrafish (Danio rerio)

Neuronal nitric oxide (nNO) has been shown to affect motor function in the brain. Specifically, nNO acts in part through regulation of dopamine (DA) release, transporter function, and the elicitation of neuroprotection/neurodegeneration of neurons in conditions such as Parkinson's disease (PD)....

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Autores principales: Woodard, Amber, Barbery, Brandon, Wilkinson, Reid, Strozyk, Jonathan, Milner, Mathew, Doucette, Patrick, Doran, Jarred, Appleby, Kendra, Atwill, Henry, Bell, Wade E., Turner, James E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: AIMS Press 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7179346/
https://www.ncbi.nlm.nih.gov/pubmed/32341966
http://dx.doi.org/10.3934/Neuroscience.2019.1.25
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author Woodard, Amber
Barbery, Brandon
Wilkinson, Reid
Strozyk, Jonathan
Milner, Mathew
Doucette, Patrick
Doran, Jarred
Appleby, Kendra
Atwill, Henry
Bell, Wade E.
Turner, James E.
author_facet Woodard, Amber
Barbery, Brandon
Wilkinson, Reid
Strozyk, Jonathan
Milner, Mathew
Doucette, Patrick
Doran, Jarred
Appleby, Kendra
Atwill, Henry
Bell, Wade E.
Turner, James E.
author_sort Woodard, Amber
collection PubMed
description Neuronal nitric oxide (nNO) has been shown to affect motor function in the brain. Specifically, nNO acts in part through regulation of dopamine (DA) release, transporter function, and the elicitation of neuroprotection/neurodegeneration of neurons in conditions such as Parkinson's disease (PD). Recently, the zebrafish has been proposed to be a new model for the study of PD since neurotoxin damage to their nigrostriatal-like neurons exhibit PD-like motor dysfunctions similar to those of mammalian models and human patients. Results from this study demonstrate that treatment of 5 days post fertilization (dpf) fish with a nNO synthase inhibitor as a co-treatment with 6-OHDA facilitates long-term survival and accelerates the recovery from 6-OHDA-induced hypokinesia-like symptoms. These findings are unique in that under conditions of neurotoxin-induced stress, the inhibition of the NO-related S-nitrosylation indirect pathway dramatically facilitates recovery from 6-OHDA treatment but inhibition of the NO-sGC-cGMP direct pathway is essential for survival in 5 dpf treated fish. In conclusion, these results indicate that nNOS and the inhibition of the NO-linked S-nitrosylation pathway plays an important role in antagonizing the protection and recovery of fish from neurotoxin treatment. These data begin to help in the understanding of the role of NO as a neuroprotectant in dopaminergic pathways, particularly those that influence motor dysfunctions.
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spelling pubmed-71793462020-04-27 The role of neuronal nitric oxide and its pathways in the protection and recovery from neurotoxin-induced de novo hypokinetic motor behaviors in the embryonic zebrafish (Danio rerio) Woodard, Amber Barbery, Brandon Wilkinson, Reid Strozyk, Jonathan Milner, Mathew Doucette, Patrick Doran, Jarred Appleby, Kendra Atwill, Henry Bell, Wade E. Turner, James E. AIMS Neurosci Research Article Neuronal nitric oxide (nNO) has been shown to affect motor function in the brain. Specifically, nNO acts in part through regulation of dopamine (DA) release, transporter function, and the elicitation of neuroprotection/neurodegeneration of neurons in conditions such as Parkinson's disease (PD). Recently, the zebrafish has been proposed to be a new model for the study of PD since neurotoxin damage to their nigrostriatal-like neurons exhibit PD-like motor dysfunctions similar to those of mammalian models and human patients. Results from this study demonstrate that treatment of 5 days post fertilization (dpf) fish with a nNO synthase inhibitor as a co-treatment with 6-OHDA facilitates long-term survival and accelerates the recovery from 6-OHDA-induced hypokinesia-like symptoms. These findings are unique in that under conditions of neurotoxin-induced stress, the inhibition of the NO-related S-nitrosylation indirect pathway dramatically facilitates recovery from 6-OHDA treatment but inhibition of the NO-sGC-cGMP direct pathway is essential for survival in 5 dpf treated fish. In conclusion, these results indicate that nNOS and the inhibition of the NO-linked S-nitrosylation pathway plays an important role in antagonizing the protection and recovery of fish from neurotoxin treatment. These data begin to help in the understanding of the role of NO as a neuroprotectant in dopaminergic pathways, particularly those that influence motor dysfunctions. AIMS Press 2019-03-28 /pmc/articles/PMC7179346/ /pubmed/32341966 http://dx.doi.org/10.3934/Neuroscience.2019.1.25 Text en © 2019 the Author(s), licensee AIMS Press This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0)
spellingShingle Research Article
Woodard, Amber
Barbery, Brandon
Wilkinson, Reid
Strozyk, Jonathan
Milner, Mathew
Doucette, Patrick
Doran, Jarred
Appleby, Kendra
Atwill, Henry
Bell, Wade E.
Turner, James E.
The role of neuronal nitric oxide and its pathways in the protection and recovery from neurotoxin-induced de novo hypokinetic motor behaviors in the embryonic zebrafish (Danio rerio)
title The role of neuronal nitric oxide and its pathways in the protection and recovery from neurotoxin-induced de novo hypokinetic motor behaviors in the embryonic zebrafish (Danio rerio)
title_full The role of neuronal nitric oxide and its pathways in the protection and recovery from neurotoxin-induced de novo hypokinetic motor behaviors in the embryonic zebrafish (Danio rerio)
title_fullStr The role of neuronal nitric oxide and its pathways in the protection and recovery from neurotoxin-induced de novo hypokinetic motor behaviors in the embryonic zebrafish (Danio rerio)
title_full_unstemmed The role of neuronal nitric oxide and its pathways in the protection and recovery from neurotoxin-induced de novo hypokinetic motor behaviors in the embryonic zebrafish (Danio rerio)
title_short The role of neuronal nitric oxide and its pathways in the protection and recovery from neurotoxin-induced de novo hypokinetic motor behaviors in the embryonic zebrafish (Danio rerio)
title_sort role of neuronal nitric oxide and its pathways in the protection and recovery from neurotoxin-induced de novo hypokinetic motor behaviors in the embryonic zebrafish (danio rerio)
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7179346/
https://www.ncbi.nlm.nih.gov/pubmed/32341966
http://dx.doi.org/10.3934/Neuroscience.2019.1.25
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