1.The effect of hyperglycemia on lipid peroxidation in the global cerebral ischemia of the rat.
Jae Kyu ROH ; Seung Bong HONG ; Byung Woo YOON ; Myung Suk KIM ; Ho Jin MYUNG
Journal of Korean Medical Science 1992;7(1):40-46
To investigate the influence of hyperglycemia on ischemic brain damage, we measured brain ATP, lactate and malondialdehyde (MDA) levels in global cerebral ischemic models of Wistar rats. We induced global cerebral ischemia by the 4-vessel occlusion method. After 30 or 60 min of occlusion, and after 30 min of reperfusion, we measured brain ATP, lactate and MDA levels. During the ischemic period, brain ATP levels decreased to 30-70% of sham groups both in normoglycemic and hyperglycemic groups. But during the reperfusion period, the recovery rate of ATP levels was significantly lower in the hyperglycemic than in the normoglycemic groups (p less than 0.05). After 60 min of global ischemia, brain lactate increased much more in the hyperglycemic than in the normoglycemic group, and, during reperfusion, was washed out slowly in the hyperglycemic group. The MDA level, a parameter of lipid peroxidation, increased more in the hyperglycemic group than in the normoglycemic group during reperfusion periods (p less than 0.05). We conclude that hyperglycemia increases lactate accumulation, delays the recovery of energy metabolism, and enhances the lipid peroxidation in the transient global ischemia of rat brain. These findings may suggest the harmfulness of hyperglycemia in clinical cerebral ischemia.
3,4-Methylenedioxyamphetamine/metabolism
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Adenosine Triphosphate/metabolism
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Animals
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Hyperglycemia/complications/*metabolism
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Ischemic Attack, Transient/complications/*metabolism
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Lactates/metabolism
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*Lipid Peroxidation
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Male
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Rats
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Rats, Wistar
2.Neuroprotective effect of sodium ferulate on transient focal cerebral ischemia by weakening activation of postsynaptic density-95 in rats.
Qiang WANG ; Shao-yang CHEN ; Li-ze XIONG ; Wei-lin JIN ; Jing YANG
Chinese Journal of Traumatology 2005;8(5):297-302
OBJECTIVETo investigate the effects of sodium ferulate (SF), an intravenous drug made from traditional Chinese herbs, on activation of postsynaptic density-95 (PSD-95) and neuroprotection after transient cerebral artery occlusion in rats.
METHODSForty-six male Sprague-Dawley rats were randomized into 2 groups (n=23 in each group): the control group and the SF group. After anesthesia, the middle cerebral artery occlusion (MCAO) was conducted with the intraluminal filament technique. The neurological deficit was assessed with the method devised by Bederson et al. The 2,3,4-triphenyltetrazolium chloride staining was used to assess the infarct volume. We adopted a modified six-point scale to conduct neurobehavioral evaluation. Immediately the activation of postsynaptic density-95 (PSD-95) was studied with Western blot analysis system in the cortex and striatum of rat brain.
RESULTSThe neurologic deficit score of the SF group decreased substantially compared with that of the control group (P<0.05). The infarct volume of the control group (168.1 mm3 +/- 42.2 mm3) was significantly larger than that of the SF group (61.5 mm3 +/- 28.7 mm3) at 24 hours after reperfusion (P<0.01). And the rats showed some neurological deficit. The activity of PSD-95 in the SF group at most timepoints was less than that in the control group. No upregulation of PSD-95 protein could be detected in the contralateral cortex.
CONCLUSIONSSodium ferulate can induce a neuroprotective effect against the transient focal cerebral ischemic injury and weaken the activation of PSD-95 in ischemic area after MCAO.
Animals ; Blotting, Western ; Brain Infarction ; drug therapy ; etiology ; Coumaric Acids ; therapeutic use ; Disks Large Homolog 4 Protein ; Intracellular Signaling Peptides and Proteins ; drug effects ; metabolism ; Ischemic Attack, Transient ; complications ; drug therapy ; metabolism ; Male ; Membrane Proteins ; drug effects ; metabolism ; Neuroprotective Agents ; therapeutic use ; Random Allocation ; Rats ; Rats, Sprague-Dawley ; Treatment Outcome