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Int J Biol Sci ; 12(8): 1000-9, 2016.
Article in English | MEDLINE | ID: mdl-27489503

ABSTRACT

Mitochondrial dysfunction contributes to brain injury following global cerebral ischemia after cardiac arrest. Carbon monoxide treatment has shown potent cytoprotective effects in ischemia/reperfusion injury. This study aimed to investigate the effects of carbon monoxide-releasing molecules on brain mitochondrial dysfunction and brain injury following resuscitation after cardiac arrest in rats. A rat model of cardiac arrest was established by asphyxia. The animals were randomly divided into the following 3 groups: cardiac arrest and resuscitation group, cardiac arrest and resuscitation plus carbon monoxide intervention group, and sham control group (no cardiac arrest). After the return of spontaneous circulation, neurologic deficit scores (NDS) and S-100B levels were significantly decreased at 24, 48, and 72 h, but carbon monoxide treatment improved the NDS and S-100B levels at 24 h and the 3-day survival rates of the rats. This treatment also decreased the number of damaged neurons in the hippocampus CA1 area and increased the brain mitochondrial activity. In addition, it increased mitochondrial biogenesis by increasing the expression of biogenesis factors including peroxisome proliferator-activated receptor-γ coactivator-1α, nuclear respiratory factor-1, nuclear respiratory factor-2 and mitochondrial transcription factor A. Thus, this study showed that carbon monoxide treatment alleviated brain injury after cardiac arrest in rats by increased brain mitochondrial biogenesis.


Subject(s)
Brain Ischemia/drug therapy , Brain Ischemia/metabolism , Carbon Monoxide/therapeutic use , Heart Arrest/drug therapy , Heart Arrest/metabolism , Mitochondria/metabolism , Organelle Biogenesis , Animals , Brain/drug effects , Brain/metabolism , Brain Ischemia/etiology , DNA-Binding Proteins/metabolism , GA-Binding Protein Transcription Factor/metabolism , Heart Arrest/complications , Male , Mitochondria/drug effects , Mitochondrial Proteins/metabolism , Nuclear Respiratory Factor 1/metabolism , PPAR alpha/metabolism , Rats , Transcription Factors/metabolism
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