Nitrosative/oxidative stress plays an important role in neuronal death following cerebral ischemia/reperfusion (I/R). Chrysophanol (CHR) has been shown to afford significant neuroprotection on ischemic stroke, however, whether its mechanism is related to attenuating nitrosative/oxidative stress is not clear. In the present study, we investigated the effect of CHR on neuronal injury related to nitric oxide (NO) production by using mouse middle cerebral artery occlusion (MCAO) model. Our results revealed that nitrite plus nitrate (NOx−) and 3-nitrotyrosine (3-NT) levels increased in ischemic brain 14 days after reperfusion, and were subsequently attenuated by CHR treatment. Moreover, 3-NT is colocalized with NeuN and TUNEL, suggesting that ne...
BackgroundOur prior study showed that resveratrol could suppress infarct volume and exert neuroprote...
Ischemic stroke is an acute vascular event that obstructs blood supply to the brain, producing irrev...
Significant amounts of oxygen free radicals (oxidants) are generated during cerebral ischemia=reperf...
Inflammation and oxidative stress play an important part in the pathogenesis of focal cerebral ische...
Inflammation and oxidative stress play an important part in the pathogenesis of focal cerebral ische...
Nitroxyl (HNO) donor compounds function as potent vasorelaxants, improve myocardial contractility an...
Abstract: Inflammation and oxidative stress play an important part in the pathogenesis of focal cere...
which permits unrestricted use, distribution, and reproduction in any medium, provided the original ...
Background and Purpose-Use of thrombolysis in stroke is limited by a short therapeutic window becaus...
Background and Purpose-Reperfusion injury is one of the factors that unfavorably affects stroke outc...
Ischemic stroke accounts for nearly 80% of stroke cases. Recanalization with thrombolysis is a curre...
Ischemic stroke, the cause of death and disability worldwide, is closely related to oxidative stress...
Objective: Ischemic stroke leads to programmed cell death via intrinsic mitochondrial apoptosis path...
Nitric oxide (NO) can regulate signaling pathways via S-nitrosylation. Fyn can be post-translational...
Nitric oxide (NO) can regulate signaling pathways via S-nitrosylation. Fyn can be post-translational...
BackgroundOur prior study showed that resveratrol could suppress infarct volume and exert neuroprote...
Ischemic stroke is an acute vascular event that obstructs blood supply to the brain, producing irrev...
Significant amounts of oxygen free radicals (oxidants) are generated during cerebral ischemia=reperf...
Inflammation and oxidative stress play an important part in the pathogenesis of focal cerebral ische...
Inflammation and oxidative stress play an important part in the pathogenesis of focal cerebral ische...
Nitroxyl (HNO) donor compounds function as potent vasorelaxants, improve myocardial contractility an...
Abstract: Inflammation and oxidative stress play an important part in the pathogenesis of focal cere...
which permits unrestricted use, distribution, and reproduction in any medium, provided the original ...
Background and Purpose-Use of thrombolysis in stroke is limited by a short therapeutic window becaus...
Background and Purpose-Reperfusion injury is one of the factors that unfavorably affects stroke outc...
Ischemic stroke accounts for nearly 80% of stroke cases. Recanalization with thrombolysis is a curre...
Ischemic stroke, the cause of death and disability worldwide, is closely related to oxidative stress...
Objective: Ischemic stroke leads to programmed cell death via intrinsic mitochondrial apoptosis path...
Nitric oxide (NO) can regulate signaling pathways via S-nitrosylation. Fyn can be post-translational...
Nitric oxide (NO) can regulate signaling pathways via S-nitrosylation. Fyn can be post-translational...
BackgroundOur prior study showed that resveratrol could suppress infarct volume and exert neuroprote...
Ischemic stroke is an acute vascular event that obstructs blood supply to the brain, producing irrev...
Significant amounts of oxygen free radicals (oxidants) are generated during cerebral ischemia=reperf...