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Role of Rac1 GTPase in NADPH Oxidase Activation and Cognitive Impairment Following Cerebral Ischemia in the Rat

BACKGROUND: Recent work by our laboratory and others has implicated NADPH oxidase as having an important role in reactive oxygen species (ROS) generation and neuronal damage following cerebral ischemia, although the mechanisms controlling NADPH oxidase in the brain remain poorly understood. The purp...

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Autores principales: Raz, Limor, Zhang, Quan-Guang, Zhou, Cai-feng, Han, Dong, Gulati, Priya, Yang, Li-cai, Yang, Fang, Wang, Rui-min, Brann, Darrell W.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2935374/
https://www.ncbi.nlm.nih.gov/pubmed/20830300
http://dx.doi.org/10.1371/journal.pone.0012606
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author Raz, Limor
Zhang, Quan-Guang
Zhou, Cai-feng
Han, Dong
Gulati, Priya
Yang, Li-cai
Yang, Fang
Wang, Rui-min
Brann, Darrell W.
author_facet Raz, Limor
Zhang, Quan-Guang
Zhou, Cai-feng
Han, Dong
Gulati, Priya
Yang, Li-cai
Yang, Fang
Wang, Rui-min
Brann, Darrell W.
author_sort Raz, Limor
collection PubMed
description BACKGROUND: Recent work by our laboratory and others has implicated NADPH oxidase as having an important role in reactive oxygen species (ROS) generation and neuronal damage following cerebral ischemia, although the mechanisms controlling NADPH oxidase in the brain remain poorly understood. The purpose of the current study was to examine the regulatory and functional role of the Rho GTPase, Rac1 in NADPH oxidase activation, ROS generation and neuronal cell death/cognitive dysfunction following global cerebral ischemia in the male rat. METHODOLOGY/PRINCIPAL FINDINGS: Our studies revealed that NADPH oxidase activity and superoxide (O(2) (−)) production in the hippocampal CA1 region increased rapidly after cerebral ischemia to reach a peak at 3 h post-reperfusion, followed by a fall in levels by 24 h post-reperfusion. Administration of a Rac GTPase inhibitor (NSC23766) 15 min before cerebral ischemia significantly attenuated NADPH oxidase activation and O(2) (−) production at 3 h after stroke as compared to vehicle-treated controls. NSC23766 also attenuated “in situ” O(2) (−) production in the hippocampus after ischemia/reperfusion, as determined by fluorescent oxidized hydroethidine staining. Oxidative stress damage in the hippocampal CA1 after ischemia/reperfusion was also significantly attenuated by NSC23766 treatment, as evidenced by a marked attenuation of immunostaining for the oxidative stress damage markers, 4-HNE, 8-OHdG and H2AX at 24 h in the hippocampal CA1 region following cerebral ischemia. In addition, Morris Water maze testing revealed that Rac GTPase inhibition after ischemic injury significantly improved hippocampal-dependent memory and cognitive spatial abilities at 7–9 d post reperfusion as compared to vehicle-treated animals. CONCLUSIONS/SIGNIFICANCE: The results of the study suggest that Rac1 GTPase has a critical role in mediating ischemia/reperfusion injury-induced NADPH oxidase activation, ROS generation and oxidative stress in the hippocampal CA1 region of the rat, and thus contributes significantly to neuronal degeneration and cognitive dysfunction following cerebral ischemia.
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spelling pubmed-29353742010-09-09 Role of Rac1 GTPase in NADPH Oxidase Activation and Cognitive Impairment Following Cerebral Ischemia in the Rat Raz, Limor Zhang, Quan-Guang Zhou, Cai-feng Han, Dong Gulati, Priya Yang, Li-cai Yang, Fang Wang, Rui-min Brann, Darrell W. PLoS One Research Article BACKGROUND: Recent work by our laboratory and others has implicated NADPH oxidase as having an important role in reactive oxygen species (ROS) generation and neuronal damage following cerebral ischemia, although the mechanisms controlling NADPH oxidase in the brain remain poorly understood. The purpose of the current study was to examine the regulatory and functional role of the Rho GTPase, Rac1 in NADPH oxidase activation, ROS generation and neuronal cell death/cognitive dysfunction following global cerebral ischemia in the male rat. METHODOLOGY/PRINCIPAL FINDINGS: Our studies revealed that NADPH oxidase activity and superoxide (O(2) (−)) production in the hippocampal CA1 region increased rapidly after cerebral ischemia to reach a peak at 3 h post-reperfusion, followed by a fall in levels by 24 h post-reperfusion. Administration of a Rac GTPase inhibitor (NSC23766) 15 min before cerebral ischemia significantly attenuated NADPH oxidase activation and O(2) (−) production at 3 h after stroke as compared to vehicle-treated controls. NSC23766 also attenuated “in situ” O(2) (−) production in the hippocampus after ischemia/reperfusion, as determined by fluorescent oxidized hydroethidine staining. Oxidative stress damage in the hippocampal CA1 after ischemia/reperfusion was also significantly attenuated by NSC23766 treatment, as evidenced by a marked attenuation of immunostaining for the oxidative stress damage markers, 4-HNE, 8-OHdG and H2AX at 24 h in the hippocampal CA1 region following cerebral ischemia. In addition, Morris Water maze testing revealed that Rac GTPase inhibition after ischemic injury significantly improved hippocampal-dependent memory and cognitive spatial abilities at 7–9 d post reperfusion as compared to vehicle-treated animals. CONCLUSIONS/SIGNIFICANCE: The results of the study suggest that Rac1 GTPase has a critical role in mediating ischemia/reperfusion injury-induced NADPH oxidase activation, ROS generation and oxidative stress in the hippocampal CA1 region of the rat, and thus contributes significantly to neuronal degeneration and cognitive dysfunction following cerebral ischemia. Public Library of Science 2010-09-07 /pmc/articles/PMC2935374/ /pubmed/20830300 http://dx.doi.org/10.1371/journal.pone.0012606 Text en Raz et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Raz, Limor
Zhang, Quan-Guang
Zhou, Cai-feng
Han, Dong
Gulati, Priya
Yang, Li-cai
Yang, Fang
Wang, Rui-min
Brann, Darrell W.
Role of Rac1 GTPase in NADPH Oxidase Activation and Cognitive Impairment Following Cerebral Ischemia in the Rat
title Role of Rac1 GTPase in NADPH Oxidase Activation and Cognitive Impairment Following Cerebral Ischemia in the Rat
title_full Role of Rac1 GTPase in NADPH Oxidase Activation and Cognitive Impairment Following Cerebral Ischemia in the Rat
title_fullStr Role of Rac1 GTPase in NADPH Oxidase Activation and Cognitive Impairment Following Cerebral Ischemia in the Rat
title_full_unstemmed Role of Rac1 GTPase in NADPH Oxidase Activation and Cognitive Impairment Following Cerebral Ischemia in the Rat
title_short Role of Rac1 GTPase in NADPH Oxidase Activation and Cognitive Impairment Following Cerebral Ischemia in the Rat
title_sort role of rac1 gtpase in nadph oxidase activation and cognitive impairment following cerebral ischemia in the rat
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2935374/
https://www.ncbi.nlm.nih.gov/pubmed/20830300
http://dx.doi.org/10.1371/journal.pone.0012606
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