Block of P2X7 receptors could partly reverse the delayed neuronal death in area CA1 of the hippocampus after transient global cerebral ischemia

被引:0
作者
Qiang Yu
Zhili Guo
Xiaofeng Liu
Qing Ouyang
Cheng He
Geoffrey Burnstock
Hongbin Yuan
Zhenghua Xiang
机构
[1] Second Military Medical University,Department of Neurobiology, MOE Key Laboratory of Molecular Neurobiology, Ministry of Education, Neuroscience Research Centre of Changzheng Hospital
[2] Second Military Medical University,Department of Dermatology, Changhai Hospital
[3] Second Military Medical University,Department of Anesthesiology, Neuroscience Research Centre, Changzheng Hospital
[4] Melbourne University,Autonomic Neuroscience Centre, University College Medical School, Rowland Hill Street, London NW3 2PF and Department of Pharmacology
来源
Purinergic Signalling | 2013年 / 9卷
关键词
P2X7 receptor; Ischemia/reperfusion injury; Delayed neuronal death; Microvesicle; Interleukin-1β;
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学科分类号
摘要
Transient global ischemia (which closely resembles clinical situations such as cardiac arrest, near drowning or severe systemic hypotension during surgical procedures), often induces delayed neuronal death in the brain, especially in the hippocampal CA1 region. The mechanism of ischemia/reperfusion (I/R) injury is not fully understood. In this study, we have shown that the P2X7 receptor antagonist, BBG, reduced delayed neuronal death in the hippocampal CA1 region after I/R injury; P2X7 receptor expression levels increased before delayed neuronal death after I/R injury; inhibition of the P2X7 receptor reduced I/R-induced microglial microvesicle-like components, IL-1β expression, P38 phosphorylation, and glial activation in hippocampal CA1 region after I/R injury. These results indicate that antagonism of the P2X7 receptor and signaling pathways of microglial MV shedding, such as src-protein tyrosine kinase, P38 MAP kinase and A-SMase, might be a promising therapeutic strategy for clinical treatment of transient global cerebral I/R injury.
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页码:663 / 675
页数:12
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