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rutinoside/stroke

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AtikEsè klinikPatant
7 rezilta yo
In the present study, we aim to evaluate the potential neuroprotective effect and the underlying mechanism of Kaempferide-7-O-(4″-O-acetylrhamnosyl)-3-O-rutinoside (A-F-B) against cerebral I/R injury. Adult male rats were pretreated with A-F-B by intragastric administration once a day for 3 days.

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
BACKGROUND Ischemic brain injury is associated with neuroinflammatory response, which essentially involves glial activation and neutrophil infiltration. Transcription factors nuclear factor-κB (NF-κB) and signal transducer and activator of transcription 3 (STAT3) contribute to ischemic

Combination of chemical fingerprinting with bioassay, a preferable approach for quality control of Safflower Injection.

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Safflower Injection is one kind of injections derived from traditional Chinese medicine. It is widely applied to treat cerebrovascular diseases such as acute cerebral infarction, stroke, coronary heart disease, and angiitis. However, most adverse reactions of Safflower Injection in clinic are caused
Inhibition of the oxidative stress induced by hypoxia and ischemia would be beneficial for reducing neuroinflammation and promoting nerve cell survival. We had previously reported a kind of anthocyanin (pentunidin-3-O-rutinoside (p-coumaroyl)-5-O-glucoside) to reduce the damage to neurovascular unit
The neuroprotective effect and mechanism of the flavonoid-rich extract (FRE) from Rosa laevigata Michx fruit on cerebral ischemia-reperfusion (I/R) injury were investigated. The contents of flavonoids, saponins and tannin were determined, and ten chemicals including chlorogenic acid,

Inhibition of Protein Disulfide Isomerase in Thrombosis.

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This MiniReview addresses our current understanding of the mechanisms by which protein disulfide isomerase (PDI) mediates thrombus formation and discusses the potential of blocking thrombosis by targeting PDI. Thiol isomerases are ubiquitous oxidoreductases primarily localized to the endoplasmic
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