N-acetylcysteine prevents spatial memory impairment induced by chronic early postnatal glutaric acid and lipopolysaccharide in rat pups.

BACKGROUND AND AIMS:Glutaric aciduria type I (GA-I) is characterized by accumulation of glutaric acid (GA) and neurological symptoms, such as cognitive impairment. Although this disease is related to oxidative stress and inflammation, it is not known whether these processes facilitate the memory imp...

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Main Authors: Fernanda S Rodrigues, Mauren A Souza, Danieli V Magni, Ana Paula O Ferreira, Bibiana C Mota, Andreia M Cardoso, Mariana Paim, Léder L Xavier, Juliano Ferreira, Maria Rosa C Schetinger, Jaderson C Da Costa, Luiz Fernando F Royes, Michele R Fighera
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3813430?pdf=render
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spelling doaj-05538c45f80248b6a54814e817f9a8712020-11-25T01:19:26ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-01810e7833210.1371/journal.pone.0078332N-acetylcysteine prevents spatial memory impairment induced by chronic early postnatal glutaric acid and lipopolysaccharide in rat pups.Fernanda S RodriguesMauren A SouzaDanieli V MagniAna Paula O FerreiraBibiana C MotaAndreia M CardosoMariana PaimLéder L XavierJuliano FerreiraMaria Rosa C SchetingerJaderson C Da CostaLuiz Fernando F RoyesMichele R FigheraBACKGROUND AND AIMS:Glutaric aciduria type I (GA-I) is characterized by accumulation of glutaric acid (GA) and neurological symptoms, such as cognitive impairment. Although this disease is related to oxidative stress and inflammation, it is not known whether these processes facilitate the memory impairment. Our objective was to investigate the performance of rat pups chronically injected with GA and lipopolysaccharide (LPS) in spatial memory test, antioxidant defenses, cytokines levels, Na+, K+-ATPase activity, and hippocampal volume. We also evaluated the effect of N-acetylcysteine (NAC) on theses markers. METHODS:Rat pups were injected with GA (5 umol g of body weight-1, subcutaneously; twice per day; from 5th to 28th day of life), and were supplemented with NAC (150 mg/kg/day; intragastric gavage; for the same period). LPS (2 mg/kg; E.coli 055 B5) or vehicle (saline 0.9%) was injected intraperitoneally, once per day, from 25th to 28th day of life. Oxidative stress and inflammatory biomarkers as well as hippocampal volume were assessed. RESULTS:GA caused spatial learning deficit in the Barnes maze and LPS potentiated this effect. GA and LPS increased TNF-α and IL-1β levels. The co-administration of these compounds potentiated the increase of IL-1β levels but not TNF-α levels in the hippocampus. GA and LPS increased TBARS (thiobarbituric acid-reactive substance) content, reduced antioxidant defenses and inhibited Na+, K+-ATPase activity. GA and LPS co-administration did not have additive effect on oxidative stress markers and Na+, K+ pump. The hippocampal volume did not change after GA or LPS administration. NAC protected against impairment of spatial learning and increase of cytokines levels. NAC Also protected against inhibition of Na+,K+-ATPase activity and oxidative markers. CONCLUSIONS:These results suggest that inflammatory and oxidative markers may underlie at least in part of the neuropathology of GA-I in this model. Thus, NAC could represent a possible adjuvant therapy in treatment of children with GA-I.http://europepmc.org/articles/PMC3813430?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Fernanda S Rodrigues
Mauren A Souza
Danieli V Magni
Ana Paula O Ferreira
Bibiana C Mota
Andreia M Cardoso
Mariana Paim
Léder L Xavier
Juliano Ferreira
Maria Rosa C Schetinger
Jaderson C Da Costa
Luiz Fernando F Royes
Michele R Fighera
spellingShingle Fernanda S Rodrigues
Mauren A Souza
Danieli V Magni
Ana Paula O Ferreira
Bibiana C Mota
Andreia M Cardoso
Mariana Paim
Léder L Xavier
Juliano Ferreira
Maria Rosa C Schetinger
Jaderson C Da Costa
Luiz Fernando F Royes
Michele R Fighera
N-acetylcysteine prevents spatial memory impairment induced by chronic early postnatal glutaric acid and lipopolysaccharide in rat pups.
PLoS ONE
author_facet Fernanda S Rodrigues
Mauren A Souza
Danieli V Magni
Ana Paula O Ferreira
Bibiana C Mota
Andreia M Cardoso
Mariana Paim
Léder L Xavier
Juliano Ferreira
Maria Rosa C Schetinger
Jaderson C Da Costa
Luiz Fernando F Royes
Michele R Fighera
author_sort Fernanda S Rodrigues
title N-acetylcysteine prevents spatial memory impairment induced by chronic early postnatal glutaric acid and lipopolysaccharide in rat pups.
title_short N-acetylcysteine prevents spatial memory impairment induced by chronic early postnatal glutaric acid and lipopolysaccharide in rat pups.
title_full N-acetylcysteine prevents spatial memory impairment induced by chronic early postnatal glutaric acid and lipopolysaccharide in rat pups.
title_fullStr N-acetylcysteine prevents spatial memory impairment induced by chronic early postnatal glutaric acid and lipopolysaccharide in rat pups.
title_full_unstemmed N-acetylcysteine prevents spatial memory impairment induced by chronic early postnatal glutaric acid and lipopolysaccharide in rat pups.
title_sort n-acetylcysteine prevents spatial memory impairment induced by chronic early postnatal glutaric acid and lipopolysaccharide in rat pups.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2013-01-01
description BACKGROUND AND AIMS:Glutaric aciduria type I (GA-I) is characterized by accumulation of glutaric acid (GA) and neurological symptoms, such as cognitive impairment. Although this disease is related to oxidative stress and inflammation, it is not known whether these processes facilitate the memory impairment. Our objective was to investigate the performance of rat pups chronically injected with GA and lipopolysaccharide (LPS) in spatial memory test, antioxidant defenses, cytokines levels, Na+, K+-ATPase activity, and hippocampal volume. We also evaluated the effect of N-acetylcysteine (NAC) on theses markers. METHODS:Rat pups were injected with GA (5 umol g of body weight-1, subcutaneously; twice per day; from 5th to 28th day of life), and were supplemented with NAC (150 mg/kg/day; intragastric gavage; for the same period). LPS (2 mg/kg; E.coli 055 B5) or vehicle (saline 0.9%) was injected intraperitoneally, once per day, from 25th to 28th day of life. Oxidative stress and inflammatory biomarkers as well as hippocampal volume were assessed. RESULTS:GA caused spatial learning deficit in the Barnes maze and LPS potentiated this effect. GA and LPS increased TNF-α and IL-1β levels. The co-administration of these compounds potentiated the increase of IL-1β levels but not TNF-α levels in the hippocampus. GA and LPS increased TBARS (thiobarbituric acid-reactive substance) content, reduced antioxidant defenses and inhibited Na+, K+-ATPase activity. GA and LPS co-administration did not have additive effect on oxidative stress markers and Na+, K+ pump. The hippocampal volume did not change after GA or LPS administration. NAC protected against impairment of spatial learning and increase of cytokines levels. NAC Also protected against inhibition of Na+,K+-ATPase activity and oxidative markers. CONCLUSIONS:These results suggest that inflammatory and oxidative markers may underlie at least in part of the neuropathology of GA-I in this model. Thus, NAC could represent a possible adjuvant therapy in treatment of children with GA-I.
url http://europepmc.org/articles/PMC3813430?pdf=render
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