|  Help  |  About  |  Contact Us

Publication : Enriched endogenous omega-3 fatty acids in mice protect against global ischemia injury.

First Author  Luo C Year  2014
Journal  J Lipid Res Volume  55
Issue  7 Pages  1288-97
PubMed ID  24875538 Mgi Jnum  J:214995
Mgi Id  MGI:5604333 Doi  10.1194/jlr.M046466
Citation  Luo C, et al. (2014) Enriched endogenous omega-3 fatty acids in mice protect against global ischemia injury. J Lipid Res 55(7):1288-1297
abstractText  Transient global cerebral ischemia, one of the consequences of cardiac arrest and cardiovascular surgery, usually leads to delayed death of hippocampal cornu Ammonis1 (CA1) neurons and cognitive deficits. Currently, there are no effective preventions or treatments for this condition. Omega-3 (omega-3) PUFAs have been shown to have therapeutic potential in a variety of neurological disorders. Here, we report that the transgenic mice that express the fat-1 gene encoding for omega-3 fatty acid desaturase, which leads to an increase in endogenous omega-3 PUFAs and a concomitant decrease in omega-6 PUFAs, were protected from global cerebral ischemia injury. The results of the study show that the hippocampal CA1 neuronal loss and cognitive deficits induced by global ischemia insult were significantly less severe in fat-1 mice than in WT mice controls. The protection against global cerebral ischemia injury was closely correlated with increased production of resolvin D1, suppressed nuclear factor-kappa B activation, and reduced generation of pro-inflammatory mediators in the hippocampus of fat-1 mice compared with WT mice controls. Our study demonstrates that fat-1 mice with high endogenous omega-3 PUFAs exhibit protective effects on hippocampal CA1 neurons and cognitive functions in a global ischemia injury model.
Quick Links:
 
Quick Links:
 

Expression

Publication --> Expression annotations

 

Other

3 Bio Entities

0 Expression