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1.
Chinese Journal of Biologicals ; (12): 281-2023.
Artigo em Chinês | WPRIM | ID: wpr-976082

RESUMO

@#ObjectiveTo explore the protective effect of Sox11 gene on cerebral ischemia reperfusion injury(CIRI)in mice and its mechanism,so as to provide a new target for the treatment of CIRI.MethodsThe mouse middle cerebral artery occlusion(MCAO)model and Neuro2A cell oxygen glucose deprivation reperfusion(OGDR)model were established and detected for the temporal and spatial distribution of Sox11 in the models by real-time quantitative PCR,Western blot,immunohistochemistry(IHC)and immunohistofluorescence(IHF).The altered expression of some crucial genes in the pathway of apoptosis and inflammation in OGDR model after the disruption of Sox11 expression was detected by Western blot.ResultsThe expression level of Sox11 mRNA and protein increased significantly in both MCAO and Neuro2A OGDR models(P = 0.000 1 ~ 0.038 8);After CIRI,Sox11 expression was elevated in the hippocampal dentate gyrus(DG)region of mice;After interfering with the expression of Sox11 in OGDR model,the expression of apoptosis-related protein Cleaved Caspase 3 significantly increased,while the expression of anti-apoptosis protein Bcl-2 significantly decreased,and the expression of phosphorylated NF-κB(p-NF-κB)protein related to inflammatory reaction also up-regulated significantly.Conclusion Sox11gene had a protective effect against CIRI in mice,and was involved in the regulation of apoptosis and inflammation pathways after CIRI.

2.
Chinese Journal of Experimental Traditional Medical Formulae ; (24): 11-18, 2022.
Artigo em Chinês | WPRIM | ID: wpr-940581

RESUMO

ObjectiveTo observe the protective effect of Sanhuatang and its modifications on the brain tissue of rats exposed to cerebral ischemia-reperfusion injury (CIRI) and explore its action mechanism and compatibility characteristics. MethodOne hundred and forty SD male rats of clean grade were randomly divided into the control group, sham-operation group, and operation group. The Longa suture method was employed to establish the CIRI model. The successfully modeled CIRI rats were further divided into five groups, namely the model group, nimodipine group, Sanhuatang without Notopterygii Rhizoma et Radix group, Notopterygii Rhizoma et Radix group, and Sanhuatang group, and treated with the corresponding medicines by gavage for five days. The cerebral infarct size in each group was examined by 2,3,5-triphenyltetrazolium chloride (TTC) staining, and the pathological changes in the brain tissue were observed by hematoxylin-eosin (HE) staining and electron microscopy. The mRNA and protein expression levels of Claudin-5, Occludin, and zonula occludens-1 (ZO-1) in brain tissues were detected by real-time fluorescence quantitative polymerase chain reaction (Real-time PCR) and Western blot, respectively. ResultCompared with the control group, the model group exhibited markedly increased infarct size, obvious changes in brain morphology and ultrastructure, and down-regulated mRNA and protein expression of Claudin-5, Occludin, and ZO-1 (P<0.01). Compared with the model group, both nimodipine and Sanhuatang significantly decreased the infarct size (P<0.01) and relived the pathological changes. The infarct sizes in the Sanhuatang without Notopterygii Rhizoma et Radix group and Notopterygii Rhizoma et Radix group were reduced without exhibiting a statistically significant difference. The mRNA and protein expression levels of Claudin-5, Occludin, and ZO-1 in the nimodipine group, Sanhuatang group, and Notopterygii Rhizoma et Radix group were up-regulated significantly in comparison with those in the model group (P<0.01, P<0.01). The mRNA and protein expression levels of Claudin-5 and ZO-1 were higher in the Notopterygii Rhizoma et Radix group than in the Sanhuatang without Notopterygii Rhizoma et Radix group (P<0.01, P<0.01). ConclusionSanhuatang exerts the protective effect against CIRI in rats possibly by regulating the expression of Claudin-5, Occludin, and ZO-1 and improving the blood-brain barrier function. Notopterygii Rhizoma et Radix in Sanhuatang may play an important role in the protection of rats from CIRI.

3.
Chinese Journal of Experimental Traditional Medical Formulae ; (24): 235-242, 2021.
Artigo em Chinês | WPRIM | ID: wpr-905918

RESUMO

Cerebral ischemia/reperfusion injury (CIRI) is a common feature and the main pathophysiological mechanism of ischemic stroke(IS), which is caused by a blood reperfusion injury in ischemic brain tissues. It can aggravate brain tissue injury and cause irreversible brain damage, seriously affecting the quality of life or even the life of patients. Hence, we must find out the exact mechanism as well as the effective therapeutic drugs and targets for CIRI. The Chinese medicine effective in Xingnao (restoring consciousness) and Kaiqiao (opening orifices) has been widely used in the treatment of CIRI and serves as a classic therapy for IS. In recent years, scholars have conducted extensive and in-depth studies on the mechanism and therapeutic targets of Chinese medicine in Xingnao and Kaiqiao. They found that those drugs could interfere with a series of changes after IS and achieve the remarkable curative effect. This study summarized the effect and mechanism of Chinese medicine in Xingnao and Kaiqiao in the treatment of CIRI, including reducing the inflammatory response and oxidative stress, alleviating brain edema and the toxicity of excitatory amino acids, reducing cell apoptosis, promoting angiogenesis and neurovascular remodeling, and improving blood-brain barrier injury. It is expected to provide references to clarify the mechanism and important targets of those drugs in resisting CIRI and ideas for the in-depth investigation and application of brain protection of Chinese medicine in Xingnao and Kaiqiao.

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