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naringin/脳卒中

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The effects of hesperidin, glucosyl hesperidin (G-hesperidin), a water-soluble derivative of hesperidin, and naringin on blood pressure and cerebral thrombosis were investigated using stroke-prone spontaneously hypertensive rats (SHRSP). Hesperidin, G-hesperidin and naringin were mixed with diet and

Nitric oxide mechanism in the protective effect of naringin against post-stroke depression (PSD) in mice.

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OBJECTIVE The present study has been designed to explore the nitric oxide mechanism in the protective effect of naringin against I/R induced neurobehavioral alterations, oxidative damage and mitochondrial dysfunction in mice. METHODS Laca mice (25-30 g) were subjected twice to BCCAO occlusion (5

Ameliorative effect of Xiaoyao-jieyu-san on post-stroke depression and its potential mechanisms.

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A stroke is a severe life-threatening disease with high fatality and disability rate. This investigation aimed to study the effect of Xiaoyao-jieyu-san (XYJY) on post-stroke depression (PSD) and its potential mechanisms. PSD rats were prepared using middle cerebral artery embolization (MCAO) and
Oxidative/nitrosative stress and neuroinflammation are critical pathological processes in cerebral ischemia-reperfusion injury, and their intimate interactions mediate neuronal damage, blood-brain barrier (BBB) damage and hemorrhagic transformation (HT) during ischemic stroke. We review current

Naringin Reverses Neurobehavioral and Biochemical Alterations in Intracerebroventricular Collagenase-Induced Intracerebral Hemorrhage in Rats.

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Intracerebral hemorrhage (ICH) contributes to 10-15% of all strokes and is a high risk factor for morbidity and mortality as compared to other subtypes of stroke, that is, cerebral ischemia and subarachnoid hemorrhage. Oxidative stress (OS)-induced neuroinflammation and neuronal cell death

Selected activities of Citrus maxima Merr. fruits on human endothelial cells: enhancing cell migration and delaying cellular aging.

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Endothelial injury and damage as well as accumulated reactive oxygen species (ROS) in aging play a significant role in the development of cardiovascular disease (CVD). Recent studies show an association of high citrus fruit intake with a lower risk of CVD and stroke but the mechanisms involved are
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