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Prolonged Toxicokinetics and Toxicodynamics of Paraquat in Mouse Brain

BACKGROUND: Paraquat (PQ) has been implicated as a risk factor for the Parkinson disease phenotype (PDP) in humans and mice using epidemiologic or experimental approaches. The toxicokinetics (TK) and toxicodynamics (TD) of PQ in the brain are not well understood. OBJECTIVES: The TK and TD of PQ in b...

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Autores principales: Prasad, Kavita, Winnik, Bozena, Thiruchelvam, Mona J., Buckley, Brian, Mirochnitchenko, Oleg, Richfield, Eric K.
Formato: Texto
Lenguaje:English
Publicado: National Institute of Environmental Health Sciences 2007
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2022643/
https://www.ncbi.nlm.nih.gov/pubmed/17938734
http://dx.doi.org/10.1289/ehp.9932
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author Prasad, Kavita
Winnik, Bozena
Thiruchelvam, Mona J.
Buckley, Brian
Mirochnitchenko, Oleg
Richfield, Eric K.
author_facet Prasad, Kavita
Winnik, Bozena
Thiruchelvam, Mona J.
Buckley, Brian
Mirochnitchenko, Oleg
Richfield, Eric K.
author_sort Prasad, Kavita
collection PubMed
description BACKGROUND: Paraquat (PQ) has been implicated as a risk factor for the Parkinson disease phenotype (PDP) in humans and mice using epidemiologic or experimental approaches. The toxicokinetics (TK) and toxicodynamics (TD) of PQ in the brain are not well understood. OBJECTIVES: The TK and TD of PQ in brain were measured after single or repeated doses. METHODS: Brain regions were analyzed for PQ levels, amount of lipid peroxidation, and functional activity of the 20S proteasome. RESULTS: Paraquat (10 mg/kg, ip) was found to be persistent in mouse ventral midbrain (VM) with an apparent half-life of approximately 28 days and was cumulative with a linear pattern between one and five doses. PQ was also absorbed orally with a concentration in brain rising linearly after single doses between 10 and 50 mg/kg. The level of tissue lipid peroxides (LPO) was differentially elevated in three regions, being highest in VM, lower in striatum (STR), and least in frontal cortex (FCtx), with the earliest significant elevation detected at 1 day. An elevated level of LPO was still present in VM after 28 days. Despite the cumulative tissue levels of PQ after one, three, and five doses, the level of LPO was not further increased. The activity of the 20S proteasome in the striatum was altered after a single dose and reduced after five doses. CONCLUSIONS: These data have implications for PQ as a risk factor in humans and in rodent models of the PDP.
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spelling pubmed-20226432007-10-15 Prolonged Toxicokinetics and Toxicodynamics of Paraquat in Mouse Brain Prasad, Kavita Winnik, Bozena Thiruchelvam, Mona J. Buckley, Brian Mirochnitchenko, Oleg Richfield, Eric K. Environ Health Perspect Research BACKGROUND: Paraquat (PQ) has been implicated as a risk factor for the Parkinson disease phenotype (PDP) in humans and mice using epidemiologic or experimental approaches. The toxicokinetics (TK) and toxicodynamics (TD) of PQ in the brain are not well understood. OBJECTIVES: The TK and TD of PQ in brain were measured after single or repeated doses. METHODS: Brain regions were analyzed for PQ levels, amount of lipid peroxidation, and functional activity of the 20S proteasome. RESULTS: Paraquat (10 mg/kg, ip) was found to be persistent in mouse ventral midbrain (VM) with an apparent half-life of approximately 28 days and was cumulative with a linear pattern between one and five doses. PQ was also absorbed orally with a concentration in brain rising linearly after single doses between 10 and 50 mg/kg. The level of tissue lipid peroxides (LPO) was differentially elevated in three regions, being highest in VM, lower in striatum (STR), and least in frontal cortex (FCtx), with the earliest significant elevation detected at 1 day. An elevated level of LPO was still present in VM after 28 days. Despite the cumulative tissue levels of PQ after one, three, and five doses, the level of LPO was not further increased. The activity of the 20S proteasome in the striatum was altered after a single dose and reduced after five doses. CONCLUSIONS: These data have implications for PQ as a risk factor in humans and in rodent models of the PDP. National Institute of Environmental Health Sciences 2007-10 2007-07-20 /pmc/articles/PMC2022643/ /pubmed/17938734 http://dx.doi.org/10.1289/ehp.9932 Text en http://creativecommons.org/publicdomain/mark/1.0/ Publication of EHP lies in the public domain and is therefore without copyright. All text from EHP may be reprinted freely. Use of materials published in EHP should be acknowledged (for example, ?Reproduced with permission from Environmental Health Perspectives?); pertinent reference information should be provided for the article from which the material was reproduced. Articles from EHP, especially the News section, may contain photographs or illustrations copyrighted by other commercial organizations or individuals that may not be used without obtaining prior approval from the holder of the copyright.
spellingShingle Research
Prasad, Kavita
Winnik, Bozena
Thiruchelvam, Mona J.
Buckley, Brian
Mirochnitchenko, Oleg
Richfield, Eric K.
Prolonged Toxicokinetics and Toxicodynamics of Paraquat in Mouse Brain
title Prolonged Toxicokinetics and Toxicodynamics of Paraquat in Mouse Brain
title_full Prolonged Toxicokinetics and Toxicodynamics of Paraquat in Mouse Brain
title_fullStr Prolonged Toxicokinetics and Toxicodynamics of Paraquat in Mouse Brain
title_full_unstemmed Prolonged Toxicokinetics and Toxicodynamics of Paraquat in Mouse Brain
title_short Prolonged Toxicokinetics and Toxicodynamics of Paraquat in Mouse Brain
title_sort prolonged toxicokinetics and toxicodynamics of paraquat in mouse brain
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2022643/
https://www.ncbi.nlm.nih.gov/pubmed/17938734
http://dx.doi.org/10.1289/ehp.9932
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