Literature DB >> 21458562

Interrupted reperfusion reduces the activation of NADPH oxidase after cerebral I/R injury.

Jia Shen1, Xiao-Yin Bai, Yuan Qin, Wei-Wei Jin, Jing-Yin Zhou, Ji-Ping Zhou, Ying-Gang Yan, Qiong Wang, Iain C Bruce, Jiang-Hua Chen, Qiang Xia.   

Abstract

Interrupted reperfusion reduces ischemia/reperfusion (I/R) injury. This study was designed to determine whether NADPH oxidase participates in the neural protection against global I/R injury after interrupted reperfusion. Mice were randomly divided into five groups: sham (sham-operated), I/R (20-min global I/R), RR (I/R+interrupted reperfusion), Apo (I/R+apocynin administration), and RR+Apo. Behavioral tests (pole test, beam walking, and Morris water maze) and Nissl staining were undertaken in all five groups; superoxide levels, expression of gp91(phox) and p47(phox), p47(phox) translocation, and Rac1 activation were measured in the sham, I/R, and RR groups. The motor coordination, bradykinesia, and spatial learning and memory, as well as the neuron survival rates, were better in the RR, Apo, and RR+Apo groups than in the I/R group. The NADPH oxidase-dependent superoxide levels, p47(phox) and gp91(phox) expression, p47(phox) translocation, and Rac1 activation were lower in the RR group than in the I/R group. In conclusion, the neural protective effect of interrupted reperfusion is at least partly mediated by decreasing the expression and assembly of NADPH oxidase and the levels of NADPH oxidase-derived superoxide. The most striking reduction Rac1-GTP in the RR group suggests that interrupted reperfusion also acts on the activation of assembled NADPH oxidase by reducing the availability of Rac1-GTP.
Copyright © 2011 Elsevier Inc. All rights reserved.

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Year:  2011        PMID: 21458562     DOI: 10.1016/j.freeradbiomed.2011.03.028

Source DB:  PubMed          Journal:  Free Radic Biol Med        ISSN: 0891-5849            Impact factor:   7.376


  10 in total

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Review 2.  Vascular cognitive impairment and Alzheimer's disease: role of cerebral hypoperfusion and oxidative stress.

Authors:  Hyun Ah Kim; Alyson A Miller; Grant R Drummond; Amanda G Thrift; Thiruma V Arumugam; Thanh G Phan; Velandai K Srikanth; Christopher G Sobey
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Review 4.  NADPH oxidases as therapeutic targets in ischemic stroke.

Authors:  Timo Kahles; Ralf P Brandes
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Review 5.  The neuroprotective effects of apocynin.

Authors:  Agnes Simonyi; Peter Serfozo; Tareq M Lehmidi; Jiankun Cui; Zezong Gu; Dennis B Lubahn; Albert Y Sun; Grace Y Sun
Journal:  Front Biosci (Elite Ed)       Date:  2012-01-01

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9.  Exosomes containing miR-451a is involved in the protective effect of cerebral ischemic preconditioning against cerebral ischemia and reperfusion injury.

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10.  Propofol Attenuates Small Intestinal Ischemia Reperfusion Injury through Inhibiting NADPH Oxidase Mediated Mast Cell Activation.

Authors:  Xiaoliang Gan; Dandan Xing; Guangjie Su; Shun Li; Chenfang Luo; Michael G Irwin; Zhengyuan Xia; Haobo Li; Ziqing Hei
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  10 in total

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