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Abstract The incidence of non-alcoholic fatty liver (NAFLD) remains high, and many NAFLD patients suffer from severe ischemia-reperfusion injury (IRI). Currently, no practical approach can be used to treat IRI. Puerarin plays a vital role in treating multiple diseases, such as NAFLD, stroke, diabetes, and high blood pressure. However, its role in the IRI of the fatty liver is still unclear. We aimed to explore whether puerarin could protect the fatty liver from IRI. C57BL/6J mice were fed with a high‐fat diet (HFD) followed by ischemia reperfusion injury. We showed that hepatic IRI was more severe in the fatty liver compared with the normal liver, and puerarin could significantly protect the fatty liver against IRI and alleviate oxidative stress. The PI3K-AKT signaling pathway was activated during IRI, while liver steatosis decreased the level of activation. Puerarin significantly protected the fatty liver from IRI by reactivating the PI3K-AKT signaling pathway. However, LY294002, a PI3K-AKT inhibitor, attenuated the protective effect of puerarin. In conclusion, puerarin could significantly protect the fatty liver against IRI by activating the PI3K-AKT signaling pathway.
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BACKGROUND:Mesenchymal stem cells have great potential in the treatment of ischemia-reperfusion injury of skin flaps.However,their defects and the decline of their role in the treatment of ischemia-reperfusion injury of skin flaps restrict their wide application. OBJECTIVE:To review the strategies for improving the treatment of ischemia-reperfusion injury of skin flaps with mesenchymal stem cells,and provide a reference for its further theoretical research and clinical application. METHODS:Relevant documents included in CNKI,WanFang and PubMed were searched.The Chinese and English search terms were"mesenchymal stem cell,ischemia-reperfusion adjustment of skin flap,mesenchymal stem cells,stem cells,skin flap,ischemia-reperfusion injury,pretreatment,gene modification,biomaterial packaging,joint application".The relevant documents since 2007 were retrieved,and the documents with little relationship between the research content and the article theme,poor quality and outdated content were eliminated through reading the article,and finally 75 documents were included for summary. RESULTS AND CONCLUSION:(1)Mesenchymal stem cells can inhibit inflammatory reactions,resist oxidative stress and induce angiogenesis,which has great potential in the treatment of skin flap ischemia-reperfusion injury.(2)Although mesenchymal stem cells have shown great potential in the treatment of skin flap ischemia-reperfusion injury,their shortcomings in treatment have limited their widespread clinical application.Through pre-treatment(cytokines,hypoxia,drugs,and other pre-treatment mesenchymal stem cells),gene-modified mesenchymal stem cells,biomaterial encapsulation of mesenchymal stem cells,as well as the combined use of mesenchymal stem cells and other drugs or therapeutic methods,can not only overcome the shortcomings of mesenchymal stem cells in treatment,but also improve their therapeutic effectiveness in skin flap ischemia-reperfusion injury.(3)Therefore,further improving the effectiveness of mesenchymal stem cells in treating skin flap ischemia-reperfusion injury and exploring its therapeutic potential are of great significance for the research of mesenchymal stem cells and the treatment of skin flap ischemia-reperfusion injury.
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BACKGROUND:Mesenchymal stem cells are used in flap ischemia-reperfusion injury due to their antioxidant and inflammatory inhibition,and angiogenesis induction. OBJECTIVE:To review the mechanism and latest treatment progress of mesenchymal stem cells in the treatment of flap ischemia-reperfusion injury,and to provide a basis for further theoretical research and clinical rational application. METHODS:We searched the relevant articles indexed in CNKI,WanFang and PubMed databases.Chinese and English search terms were"mesenchymal stem cells;flap ischemia reperfusion injury;conditioned medium;exosomes;oxidative stress;inflammatory reactions;angiogenesis".Relevant literature since 2010 was searched,and 74 articles were finally included after excluding the literature that had little to do with the topic of the article,poor quality and outdated content. RESULTS AND CONCLUSION:(1)Mesenchymal stem cells play significant roles in antioxidation,inhibition of inflammation and induction of angiogenesis and have great potential in the treatment of flap ischemia-reperfusion injury.(2)However,the defects of mesenchymal stem cells themselves and the decline of therapeutic effect in recent years have put the development and application of mesenchymal stem cells into a bottleneck period,and the research on the plasticity of mesenchymal stem cells conditioned medium and its exosomes and mesenchymal stem cells came into being,and the therapeutic effect was significantly better than the use of mesenchymal stem cells alone.(3)Therefore,a more comprehensive understanding of the mechanism of action and the latest treatment progress of mesenchymal stem cells in the treatment of flap ischemia-reperfusion injury is of great significance for the research of mesenchymal stem cells and the treatment of flap ischemia-reperfusion injury.
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BACKGROUND:Oxidative injury is considered to be one of the important factors of cerebral ischemia-reperfusion injury.Superoxide dismutase 2(SOD2)is a key mitochondrial antioxidant molecule,and fenofibrate can regulate the expression of SOD2 by activating peroxisome proliferator-activated receptor α. OBJECTIVE:To explore whether the mechanism of fenofibrate in the treatment of cerebral ischemia-reperfusion injury depends on the expression of SOD2. METHODS:The TALENs system was used to construct SOD2 transgenic mice.The transgenic mice were genotyped by PCR and DNA sequencing techniques.The expression of SOD2 protein in transgenic mice was detected by western blot assay.Wild-type and SOD2 transgenic mice were randomly divided into four groups:wild-type control group(n=6),wild-type fenofibrate group(n=6),SOD2 transgenic control group(n=5)and SOD2 transgenic fenofibrate group(n=5).A mouse model of middle cerebral artery occlusion was prepared using the suture-occlusion method.After 90 minutes of ischemia,the thread was removed to reperfuse cerebral blood flow for 30 minutes.A cerebral blood flow monitor was used to monitor local cerebral blood flow.Brain tissue slices were taken for 2,3,5-triphenyltetrazolium chloride staining to analyze the situation of cerebral infarction in each group. RESULTS AND CONCLUSION:After PCR and DNA sequencing analysis,nine SOD2+/+ transgenic mice were successfully constructed.After cerebral ischemia-reperfusion,the wild-type fenofibrate group showed partial recovery of cerebral blood flow and significantly reduced cerebral infarction volume compared with the wild-type control group(P<0.001).There was no significant difference in cerebral blood flow and cerebral infarction volume between the SOD2 transgenic fenofibrate group and the SOD2 transgenic control group.The SOD2 transgenic control was superior to the wild-type control group in terms of improving cerebral blood flow and cerebral infarction(P<0.001).There were also no significant differences in cerebral blood flow and cerebral infarction volume between the wild-type fenofibrate group and the SOD2 transgenic control group and between the wild-type fenofibrate group and the SOD2 transgenic fenofibrate group.To conclude,the expression of SOD2 is one of the mechanisms of fenofibrate in the treatment of cerebral ischemia-reperfusion injury.
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BACKGROUND:Studies have found that activation of nuclear factor-erythroid 2-related factor 2/heme oxidase-1(Nrf2/HO-1)pathway can alleviate oxidative stress caused by cerebral ischemia-reperfusion injury,but whether human bone marrow mesenchymal stem cells(hBMSC)can activate Nrf2/HO-1 pathway to alleviate cerebral ischemia-reperfusion injury is still lacking relevant studies. OBJECTIVE:To investigate whether intracranial transplantation of hBMSC alleviates oxidative stress injury in cerebral ischemia-reperfusion animal models by activating Nrf2/HO-1 pathway. METHODS:Totally 40 male SPF SD rats were randomly divided into sham operation group,model group,hBMSC transplantation group,hBMSC+solvent group and hBMSC+Nrf2 inhibitor group.Each group consisted of eight animals.In the model group and the hBMSC transplantation group,middle cerebral artery occlusion model was prepared by thread embolization method.The thread embolization was removed 1 hour later,and 30 μL PBS or hBMSC cultured to at least passage 5 was injected into the right cortex and striatum of rats.In the hBMSC+Nrf2 inhibitor group and hBMSC+solvent group,the left ventricle was injected with Nrf2 inhibitor Brusatol and its solvent dimethyl sulfoxide respectively 24 hours before model establishment,then the middle cerebral artery occlusion model was prepared,and hBMSC was injected.Relevant indexes were detected 3 days after transplantation. RESULTS AND CONCLUSION:(1)CT and TTC staining showed the same area and volume of cerebral infarction:model group>hBMSC+Nrf2 inhibitor group>hBMSC+solvent group>hBMSC transplantation group>sham operation group.(2)Hematoxylin-eosin staining and Nissl's staining showed that the ischemic brain tissue was intact and the neurons were normal in the sham operation group.Compared with the model group,the pathological morphology and neuronal injury of the hBMSC transplantation group and the hBMSC+solvent group were significantly improved.Compared with the hBMSC+solvent group,the hBMSC+Nrf2 inhibitor group had more serious pathological morphology and neuronal damage.(3)Western blot assay and oxidative stress index detection results showed that compared with the sham operation group,Nrf2 and HO-1 proteins were decreased(all P<0.05),malondialdehyde was increased and superoxide dismutase was decreased(all P<0.05)in the model group.Compared with the model group,the expression levels of Nrf2 and HO-1 proteins were increased(all P<0.05),malondialdehyde was decreased and superoxide dismutase was increased(all P<0.05)in the hBMSC transplantation group and the hBMSC+solvent group.Compared with the hBMSC+solvent group,the expression levels of Nrf2 and HO-1 proteins were simultaneously decreased(all P<0.05),and malondialdehyde was increased and superoxide dismutase was decreased(all P<0.05)in the hBMSC+Nrf2 inhibitor group.(4)These results indicate that hBMSC can alleviate cerebral ischemia-reperfusion injury possibly by activating Nrf2/HO-1 pathway.
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BACKGROUND:It was found that moxibustion can inhibit the inflammatory factors in the serum of rats with cerebral ischemia/reperfusion injury,resist oxidative stress,inhibit cell apoptosis,and effectively reduce cerebral ischemia/reperfusion injury. OBJECTIVE:To observe the effects of different moxibustion intervention time on the expression levels of nucleotide binding oligomerization domain-like protein 3 inflammasome(NLRP3),cysteine aspartase(caspase-1),apoptosis-related speck-like protein,exfoliatin-D protein,interleukin-1β and interleukin-18 in rats with cerebral ischemia/reperfusion injury,and to explore its action mechanism. METHODS:SD rats were randomly divided into sham operation group(n=9)and operation group(n=36).The model of focal cerebral ischemia/reperfusion injury was established by middle cerebral artery occlusion in the operation group.After successful modeling,the rats in the operation group were further divided into model group,moxibustion 10-minute group,moxibustion 15-minute group and moxibustion 30-minute group,with 9 rats in each group.Rats in the moxibustion 10-minute,15-minute and 30-minute groups were given moxibustion at"Baihui,Dazhui and Zusanli",respectively,once a day for a total of 7 days.The neurological deficits of rats were evaluated by LONGA method.The cerebral infarction was observed by 2,3,5-triphenyltetrazolium chloride staining.The pathological changes of brain tissue were observed by hematoxylin-eosin staining.The contents of interleukin-1β and interleukin-18 in serum of rats in each group were detected by ELISA.Immunohistochemistry and western blot assay were used to detect the expression levels of NLRP3,caspase-1,apoptosis-related spot-like protein and gasdermin D in the ischemic cortex of rats in each group. RESULTS AND CONCLUSION:Compared with the sham operation group,the neurological deficit score of the model group was significantly increased(P<0.01).Compared with the model group,the neurological deficit score of the moxibustion groups was significantly reduced(P<0.01).Compared with the sham operation group,the infarct volume of the model group was significantly increased(P<0.01).Compared with the model group,the infarct volume of the moxibustion groups was significantly reduced(P<0.01);the infarct volume of the rats was smallest in the moxibustion 30-minute group(P<0.05).Compared with the model group,the contents of inflammatory factors interleukin-1β and interleukin-18 in the serum of rats in the moxibustion groups were decreased(P<0.01).Compared with the moxibustion 10-minute group,the contents of inflammatory factors in the serum of rats in the moxibustion 30-minute group were significantly decreased(P<0.05).Compared with the model group,the expression of NLRP3,apoptosis-related spot-like protein,Caspase-1 and gasdermin D protein in the ischemic cortex of the moxibustion groups was significantly decreased(P<0.01).Compared with the moxibustion 10-minute and 15-minute groups,the expression of protein in the moxibustion 30-minute group was significantly decreased(P<0.05).It is concluded that moxibustion at Baihui,Dazhui and Zusanli can reduce cerebral ischemia/reperfusion injury,among which moxibustion for 30 minutes has the best effect,and its mechanism may be related to the inhibition of pyroptosis mediated by NLRP3/Caspase-1 pathway.
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Objective To study the effect and mechanism of Anchusa italica Retz on cerebral ischemia-reperfusion inju-ry in rats based on the target network of active compounds in Anchusa italica Retz.Methods The rat model of cerebral ische-mia-reperfusion injury was established by the thread occlusion method.After performing ischemia for 1.5 h and then reperfusion for 24 h,the neurological function of rats was scored and the volume of cerebral infarction was measured by the 2,3,5-triphenyltet-razolium chloride staining method.The molecular network analysis technique of network pharmacology,protein-protein interaction network,gene ontology(GO)enrichment analysis,KEGG signal pathway analysis,and molecular docking was used to study the mechanism of Anchusa italica Retz in the treatment of cerebral ischemia-reperfusion injury.Results The administration of An-chusa italica Retz could significantly improve the neurobehavioral dysfunction caused by cerebral ischemia-reperfusion injury and reduce the pathological injury of brain tissue.Anchusa italica Retz could regulate inflammation,apoptosis,protein phosphorylation,and other biological processes through 143 ischemic stroke-related targets,and interfere with the TNF signal pathway,VEGF signal pathway,HIF-1 signal pathway,and other pathways.Conclusion Network pharmacology and experimental verification had shown that Anchusa italica Retz could effectively reduce brain injury and protect neurological function through multi-target,multi-mechanism,and holistic treatment of cerebral ischemia-reperfusion injury.
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AIM:Using bioinformatics analysis methods to identify the hub genes involved in myocardial isch-emia-reperfusion injury(MIRI).METHODS:Firstly,the rat MIRI related dataset GSE122020,E-MEXP-2098,and E-GEOD-4105 were downloaded from the database.Secondly,differentially expressed genes(DEGs)were screened from each dataset using the linear models for microarray data(limma)package,and robust DEGs were filtered using the robust rank aggregation(RRA)method.In addition,the surrogate variable analysis(SVA)package was used to merge all datas-ets into one,and merged DEGs were screened using the limma package.The common DEGs were obtained by taking the intersection of the two channels of DEGs.Next,the protein-protein interaction(PPI)network of common DEGs was con-structed,and the hub genes were identified using the density-maximizing neighborhood component(DMNC)algorithm.The receiver operating characteristic curve(ROC)was plotted to evaluate the diagnostic performance of the hub gene.Then,the mRNA and protein expression levels of hub genes were detected in the rat MIRI model,and the literature re-view analysis was carried out on the involvement of hub genes in MIRI.Finally,the gene set enrichment analysis(GSEA)was performed on hub gene to further reveal the possible mechanism in mediating MIRI.RESULTS:A total of 143 robust DEGs and 48 merged DEGs were identified.After taking the intersection of the two,48 common DEGs were obtained.In the PPI network of common DEGs,5 hub genes were screened out,namely MYC proto-oncogene bHLH transcription fac-tor(MYC),prostaglandin-endoperoxide synthase 2(PTGS2),heme oxygenase 1(HMOX1),caspase-3(CASP3),and plasminogen activator urokinase receptor(PLAUR).The ROC results showed that the area under the curve values for all hub genes were greater than 0.8.MYC,PTGS2,CASP3,and PLAUR showed high mRNA and protein expression in rat MIRI,while there was no difference in mRNA and protein expression for HMOX1.The literature review revealed that among the 5 hub genes,only PLAUR has not been reported to be involved in MIRI.The GSEA results for PLAUR indicat-ed that its functional enrichment mainly focused on pathways such as NOD-like receptor signaling pathway,P53 signaling pathway,Toll-like receptor signaling pathway,apoptosis,and fatty acid metabolism.CONCLUSION:MYC,PTGS2,CASP3,HMOX1,and PLAUR are involved in the pathological process of MIRI.PLAUR is a potential hub gene that can mediate MIRI by regulating pathways such as NOD like receptor signaling,P53 signaling,Toll like receptor signaling,cell apoptosis,and fatty acid metabolism.The results can provide reference for further investigation into the molecular mechanisms and therapeutic targets of MIRI.
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Objective:To investigate the role of HMGB1-TLR4-NF-κB signaling pathway in cerebral ischemia-reperfusion in-jury and the effect of adenosine preconditioning on the signaling pathway.Methods:Total 80 adult male Sprague-Dawley rats weighing 220~270 g were selected from the Animal Center of Xinxiang Medical University.The rats were randomly divided into F group(sham operation group),I/R group(ischemia reperfusion group)and AP group(adenosine preconditioning group).The MCAO model of rats was established by wire embolization.Quantitative analysis of neural function in successfully modeled rats using animal behavior scor-ing method,the morphological changes of brain cells were observed by HE staining,TTC staining was used to observe cerebral infarc-tion and cerebral infarction volume was calculated;Immunohistochemical staining was used to detect HMGB1,TLR4 and NF-κB pro-tein expression levels in brain tissues of each group.The data were statistically analyzed by one-way ANOVA in SPSS26.0 software.Results:After ischemia reperfusion,the neurological function of I/R group and AP group showed different degrees of impairment,and the neurological function scores of the two groups were significantly higher than that of F group,the difference was statistically signifi-cant(P<0.05),and the neurological function of the AP group was significantly less than that of I/R group,the difference was also sta-tistically significant(P<0.05).TTC staining showed that AP group,I/R group rat cerebral infarction volume was significantly more than F group[(93.670±4.509)mm3,(123.670±7.234)mm3 vs(0.000±0.000)mm3],and AP group rats infarction volume was signifi-cantly reduced than that in I/R group,the difference had statistical significance(P<0.05).Immunohistochemistry showed that HMGB1,TLR4,NF-κB protein in F group with a small amount of expressions in rats,while significantly expressed in AP group and I/R group relatively,and the AP group of each subgroup rat HMGB1,TLR4,NF-κB protein expressions significantly lower than the amount of I/R group,the difference had statistical significance(P<0.05).Conclusion:Adenosine preconditioning can reduce the expressions of HMGB1,TLR4 and NF-κB protein,and then protect the rats with cerebral ischemia-reperfusion injury.
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Objective To explore the effect of lidocaine(LID)on ischemia-reperfusion injury in orthotopic liver transplantation(OLT)rats and to analyze its mechanism of action.Methods Sixty rats were randomly divided into Verteporfin group,high-dose LID(High LID),medium-dose LID(Medium LID),low-dose LID(Low LID),Model and Control groups,on average.The rest of the rats except the control rats were used to establish OLT models.Observe the pathological changes in liver tissue were with hematoxylin-eosin staining.Serum aspartate transaminase(AST),total bilirubin(TBIL),lactate dehydrogenase(LDH)activities and alanine transaminase(ALT)were detected.Measure liver tissue levels of proinflammatory factors tumor necrosis factor-α(TNF-α),interleukin(IL)-6,IL-1β,and IL-10 with enzyme-linked immunosorbent assays.Reactive oxygen species(ROS)was detected by a fluorescence probe.Malondialdehyde(MDA)was detected by the thiobarbituric acid colorimetric method.Superoxide dismutase(SOD)was detected by nitrogen blue tetrazole colorimetry.Glutathione peroxidase(GSH-Px)was detected by a spectrophotometry method.Apoptosis of liver histiocytes was detected by in situ end labeling.Detect the expression of mammalian STE20 like protein kinase(MST1),phosphorylation(p)-MST1,large tumor suppressor factor 1(LATS1),p-LATS1,Yes associated protein(YAP),p-YAP,and apoptosis-related proteins B-cell lymphoma 2(Bcl-2)and Bcl-2 related X protein(Bax)with Western blot.Results Compared with the Control group,liver tissue in Model group rats showed injury,liver cell necrosis,and a large degree of inflammatory cell infiltration.Moreover,the cell apoptosis rate;serum AST,ALT,TBIL,and LDH activities;and liver tissue levels of TNF-α,IL-6,IL-1β,MDA,ROS,and Bax were significantly increased.Furthermore,liver tissue levels of IL-10,SOD,GSH-Px,Bcl-2,p-MST1/MST1,p-LATS1/LATS1,and p-YAP/YAP proteins were significantly reduced(P<0.05).Compared with the Model group,liver tissue injury was reduced in Low LID,Medium LID,and High LID groups.The cell apoptosis rate;serum AST,ALT,TBIL,and LDH activities;and liver tissue levels of TNF-α,IL-6,1L-1β,MDA,ROS,and Bax were significantly reduced.Moreover,liver tissue levels of IL-10,SOD,GSH-Px,Bcl-2,p-MST1/MST1,p-LATS1/LATS1,and p-YAP/YAP proteins were significantly increased(P<0.05).Hippo-YAP signaling pathway inhibitor verteporfin reversed the improving effect of LID on ischemia-reperfusion injury in OLT rats(P<0.05).Conclusions LID may activate the Hippo-YAP pathway,which reduces the inflammatory response,oxidative stress,and liver cell apoptosis,and improves liver ischemia-reperfusion injury in OLT rats.
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Objective To identify and validate co-expressed genes associated with myocardial ischemia/reperfusion injury(MI/RI)and necrotic apoptosis by bioinformatics analysis.Methods Gene expression profile data for MI/RI were obtained by GSE67308 and GSE19875 datasets from the Gene Expression Omnibus(GEO)database.Differential expression analysis was conducted on the GSE67308 dataset to identify differentially expressed genes(DEGs),followed by gene set enrichment analysis and biological pathway analysis.More-over,immune cell infiltration analysis was performed on the GSE67308 dataset.Necrotic apoptosis-related genes were retrieved from the Molecular Signatures Database and the Kyoto Encyclopedia of Genes and Genomes(KEGG).A protein-protein interaction(PPI)network was constructed by overlapping DEGs with these necrotic apoptosis-related genes to identify key genes.Furthermore,the expression pat-terns of these key genes across various cardiac cell types were analyzed using a single-cell sequencing analysis platform,and validation of key gene expression was performed using the GSE19875 dataset.Results A total of 1054 DEGs were identified,comprising 363 upregu-lated and 691 downregulated genes.Gene enrichment analysis revealed that DEGs were primarily associated with processes related to apoptosis,immune responses,and intracellular signaling regulation.Moreover,biological pathway analysis demonstrated that DEGs were predominantly involved in the regulation of signaling pathways such as tumor necrosis factor(TNF)and NF-κB.Immune infiltration anal-ysis indicated a high degree of immune infiltration,particularly with natural killer cells and monocytes,in MI/RI myocardial tissue.PPI network analysis identified Il1b,TNF,Birc3,and Ripk1as crucial genes in the context of necrotic apoptosis.Single-cell sequencing anal-ysis showed the elevated expression of key genes within white blood cells.In comparison to the control group,the MI/RI model group in the GSE19875 dataset exhibited significantly increased expression of Il1b,TNF,Birc3,and Ripk1(P<0.01).Conclusion MI/RI is strongly correlated with the TNF signaling pathway and the NF-κB signaling pathway,both of which play pivotal roles in regulating necrotic apop-tosis.Il1b,TNF,Birc3,and Ripk1emerge as key genes that concurrently regulate both MI/RI and necrotic apoptosis.It is plausible that IL-1b,TNF,Birc3,and Ripk1 may serve as critical regulatory factors in the context of necrotic apoptosis during MI/RI.
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Acute myocardial infarction(AMI)is a common cardiovascular emergency in clinic.Early reperfusion is a typical and effective method for the treatment of AMI.However,the recovery of blood supply after reperfusion therapy will accelerate the damage of ischemic myocardium and cause myocardial ischemia-reperfusion injury(MI/RI).In recent years,studies have found that TCM has the unique advantages of multi-component,multi-channel and multi-target in the intervention of MI/RI.Janus tyrosine kinase/signal transducer and activator of transcription(JAK/STAT)signaling pathway is closely related to MI/RI,which can reduce MI/RI process by regulating inflammation,oxidative stress,cell proliferation,differentiation and apoptosis.This article reviewed the mechanism of JAK/STAT signaling pathway in MI/RI and the research of TCM targeting this pathway,in order to provide references for the prevention and treatment of MI/RI and further drug development.
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Objective:To investigate the myocardial protective effect of extracorporeal cardiac shock wave therapy (CSWT) combined with sulfur hexafluoride microbubble post-conditioning on myocardial ischemia-reperfusion injury (MI/RI) in rats, and to provide theoretical support for clinical treatment of MI/RI.Methods:A total of 32 male SD rats were randomly divided into 4 groups: sham operation group (Sham group), MI/RI group (IR group), CSWT group (IR+ SW group), and CSWT combined with sulfur hexafluoride microbubble treatment group (IR+ SW+ MB group), with 8 rats in each group. Therapeutic intervention was performed in IR+ SW group and IR+ SW+ MB group on the 1st, 3rd and 5th day after modeling. The left ventricular end-diastolic diameter (LVEDD), left ventricular end-systolic diameter (LVESD), left ventricular ejection fraction (LVEF) and left ventricular fractional shortening (LVFS) of the rats were measured by echocardiography before and after treatment. On the 7th day, myocardial fibrosis was assessed by Masson staining, and cardiomyocyte apoptosis was observed by TUNEL staining. The myocardial apoptotic proteins Bcl-2, BAX, Cleaved-Caspase-3 and Cleaved-Caspase-9 in the infarct boundary area were detected by Western blot. The differences of the above indexes among different groups were compared.Results:①There was no significant change in heart rhythm and heart rate among the groups before and after treatment, and there was no significant difference in heart rate ( P>0.05). ②The echocardiographic results after treatment showed that, compared with IR group, LVEDD and LVESD in IR+ SW group and IR+ SW+ MB group decreased in turn, while LVEF and LVFS increased in turn with significant differences between each two groups (all P<0.05). ③Compared with IR group, the degrees of myocardial fibrosis and apoptosis in IR+ SW group and IR+ SW+ MB group were alleviated in turn, and the relief in IR+ SW+ MB group was the most obvious. Quantitative analysis showed that compared with IR group, the proportions of cardiomyocyte apoptosis in IR+ SW group and IR+ SW+ MB group decreased in turn, and there were significant differences between each two groups (all P<0.05). ④The results of Western blot detection showed that compared with IR group, the levels of Bcl-2 in IR+ SW group and IR+ SW+ MB group increased in turn, while the levels of BAX and the activation level of Caspase-3 and Caspase-9 protein decreased in turn. These differences were all statistically significant between each two groups (all P<0.05) except for the activation level of Caspase-3 protein between IR+ SW group and IR+ SW+ MB group ( P>0.05). Conclusions:CSWT combined with sulfur hexafluoride microbubble therapy can improve left ventricular remodeling and left ventricular systolic function by inhibiting cardiomyocyte apoptosis.
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AIM To explore the effects of Buyang Huanwu Decoction on mitochondrial oxidative damage and PKCε-Nampt pathway in rats following cerebral ischemia reperfusion(I/R).METHODS The rats were randomly divided into the sham operation group,the model group,Buyang Huanwu Decoction group(14.3 g/kg)and edaravone group(3 mg/kg).Except those of the sham operation group,SD rats of other groups were induced into models of brain I/R injury by MCAO method,followed by corresponding drug administration 24 hours after operation.After 7 days of administration,the rats had their neurological deficit evaluated by neurological function scoring;thier expression of neuron marker MAP-2 detected by immunofluorescence staining;their neuron damage observed and the oxidative damage evaluated through assessment of their ROS levels and MDA and SOD activities;their changes of mitochondrial membrane potential detected by fluorescent probe JC-1;their ratio of NAD+/NADH detected using modified enzyme circulation method;their expressions of PKCε,p-PKCε and Nampt proteins detected with Western blot;and their positive expressions of p-PKCε and Nampt proteins detected with immunohistochemistry method.RESULTS Compared with the model group,Buyang Huanwu Decoction group shared decreased cerebral infarction volume and neurological function score(P<0.05);increased cerebral fluorescence intensity of MAP-2(P<0.05);reduced neuronal damage,decreased cerebral levels of ROS and MDA(P<0.05);increased SOD activity,mitochondrial membrane potential and NAD+/NADH ratio(P<0.05);and increased protein expressions of p-PKCε and Nampt(P<0.05).CONCLUSION Buyang Huanwu Decoction can improve mitochondrial function and reduce brain I/R injury in rats by activating their PKCε-Nampt signaling pathway.
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AIM To investigate the effects of Zhuangyao Shuanglu Tongnao Formula on neuronal apoptosis in rats with cerebral ischemia-reperfusion injury based on the study of oxidative stress and inflammatory response.METHODS The rats were randomly divided into the sham operation group,the model group,the edaravone group(3.0 mg/kg),the low,medium and high dose groups(9.0,18.0,36.0 g/kg)of Zhuangyao Shuanglu Tongnao Formula,with 18 rats in each group.The middle cerebral artery occlusion/reperfusion was conducted by thread embolism method to simulate cerebral ischemia reperfusion injury in rats followed by 6 days corresponding drugs administration.Subsequently,the rats had their neurological function deficit scored by Zeal Longa scoring method;their sizes of cerebral infarction areas measured by TTC staining;their pathological damage and apoptosis of neurons in hippocampal CA1 area of ischemic penumbra of the brain tissue detected by HE staining and TUNEL staining;their SOD activity and levels of GSH,MDA,IL-6,IL-1β,TNF-α in brain tissue detected by kits;and their protein expressions of Bax,Bcl-2,caspase-3,cleaved-capase-3,TLR4,NF-κB p65,Nrf2,HO-1 in rat brain tissue determined by Western blot.RESULTS Compared with the model group,the groups intervened with edaravone,medium and high dose of Zhuangyao Shuanglu Tongnao Formula displayed improvements in the scores of nerve function defects,the rate of cerebral infarction,the rate of neuronal apoptosis,the levels of IL-6,IL-1β,TNF-α and MDA in the ischemic penumbra of brain tissues,the protein expressions of Bax and TLR4,the ratio of cleaved-capase-3/caspase-3 and p-NF-κB p65/NF-κB p65(P<0.05),the levels of GSH,the activity of SOD and the protein expressions of Bcl-2,Nrf2 and HO-1(P<0.05).CONCLUSION Being an inhibitor of oxidative stress and inflammatory response,Zhuangyao Shuanglu Tongnao Formula can alleviate brain injury in rats with cerebral ischemia reperfusion injury through the inhibition of neuronal apoptosis and improvement of neural function mediated by the inhibition of TLR4/NF-κB signal pathway and activation of Nrf2/HO-1 signal pathway.
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ObjectiveTo investigate the effect and mechanism of Taohong Siwutang (TSD) on myocardial ischemia reperfusion injury (MIRI) in ovariectomized (OVX) female mice. MethodAfter the OVX model of female mice was established, the estradiol (E2) level was detected by enzyme-linked immunosorbent assay (ELISA) to verify the model. Sixty OVX mice were randomly divided into six groups: Sham operation group, model group, low, medium, and high dose groups (9, 18, 36 g·kg-1) of TSD, and nuclear factor E2-related factor 2 (Nrf2) inhibitor group, with 10 mice in each group. The MIRI model was verified by a laser speckle flowmeter. The pathological changes in myocardial tissue were detected by 2,3, 5-triphenyltetrazolium chloride (TTC) and hematoxylin-eosin (HE) staining. Serum creatine kinase isoenzyme (CK-MB), cardiac troponin Ⅰ (CTnⅠ), malondialdehyde (MDA), superoxide dismutase (SOD), interleukin-6 (IL-6), and interleukin-10 (IL-10) levels were detected by ELISA. The expression of Nrf2 and heme oxygenase-1 (HO-1) were observed by immunofluorescence staining. The expressions of Nrf2, HO-1, apoptotic B-cell lymphomato-2 (Bcl-2), Bcl-2 associated X protein (Bax), inflammatory cytokines interleukin-18 (IL-18), and interleukin-1β (IL-1β) were detected by Western blot. ResultCompared with the sham operation group, the serum levels of CK-MB, CTnⅠ, MDA, and IL-6 in the model group were increased (P<0.01), and the levels of SOD and IL-10 were decreased (P<0.01). The damage scores of TTC and HE staining in myocardial tissue were increased (P<0.01). The expressions of Nrf2 and HO-1 in myocardial tissue by immunofluorescence were decreased (P<0.01), and the protein expressions of Nrf2, HO-1, and Bcl-2 in myocardial tissue were decreased. The protein expressions of Bax, IL-18, and IL-1β were increased (P<0.01). Compared with the model group, serum levels of CK-MB, CTnⅠ, MDA, and IL-6 of TSD groups were significantly decreased (P<0.05, P<0.01), and SOD and IL-10 were significantly increased (P<0.05, P<0.01). TTC staining and HE staining damage scores of myocardial tissue were significantly decreased (P<0.01). The expressions of Nrf2 and HO-1 in myocardial tissue by immunofluorescence were increased (P<0.01). The protein expressions of Nrf2, HO-1, and Bcl-2 were significantly increased (P<0.05, P<0.01), and those of Bax, IL-18, and IL-1β were significantly decreased (P<0.05, P<0.01). The effect of the high dose group of TSD was the most significant. The serum levels of CK-MB, CTnⅠ, MDA, and IL-6 in the Nrf2 inhibitor group were significantly increased (P<0.05, P<0.01), and the levels of SOD and IL-10 were significantly decreased (P<0.05, P<0.01). The damage scores of TTC and HE staining in myocardial tissue were significantly increased (P<0.01). The expressions of Nrf2 and HO-1 in myocardial tissue by immunofluorescence were significantly decreased (P<0.01). The protein expressions of Nrf2, HO-1, and Bcl-2 in myocardial tissue were significantly decreased, and those of Bax, IL-18, and IL-1β were significantly increased (P<0.01). ConclusionTSD can alleviate MIRI in OVX mice, reduce oxidative stress response and the release of inflammatory factors, and inhibit apoptosis, playing a protective role in OVX mice with MIRI, which may be related to the activation of Nrf2/HO-1 signaling pathway.
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ObjectiveAcute myocardial infarction (AMI) is a highly prevalent and deadly disease globally, with its incidence continuing to rise in recent years. Timely reperfusion therapy is crucial for improving the prognosis of AMI patients. However, myocardial reperfusion can lead to irreversible myocardial ischemia/reperfusion (MI/R) injury, which is associated with adverse cardiovascular outcomes following AMI. Studies have shown that microRNAs (miRNAs) are abnormally expressed during MI/R injury and play an important role in the fate of cardiomyocytes. Effective preventive and therapeutic strategies against MI/R injury remain lacking in clinical practice, necessitating elucidation of the molecular mechanisms underlying MI/R onset and progression. This study investigated the role of microRNA-878 (miR-878) in the regulation of mitochondria-mediated apoptosis in MI/R injury. MethodsThe H9c2 cells were flushed with a gas mixture containing 1% O2, 5% CO2 and 94% N2 for 3 h. Then the cells were incubated in complete culture medium under 5% CO2 and 95% air for 6 h to mimic in vivo hypoxia/reoxygenation (H/R) injury. Cell viability were detected by CCK-8 assay. The concentrations of lactate dehydrogenase (LDH) were then measured.The level of apoptosis was analyzed by flow cytometry. The morphology of mitochondria was analyzed by immunofluorescence and laser confocal microscopy. The levels of mitochondrial reactive oxygen species (mtROS) were detected by immunofluorescence. Dual luciferase reporter gene assay was used to study the binding site of miR-878 and Pim1. RNA immunoprecipitation (RIP) assay was used to verify the binding relationship between miR-878 and Pim1. The gene expression levels were detected by real-time fluorescent quantitative PCR (RT-qPCR) and Western blot. ResultsThe study found that compared with the control group, the expression of miR-878 in H/R-treated H9c2 cells was significantly increased ((1.00±0.25) vs (9.70±2.63), P<0.01). In H/R-induced cells, transfection of miR-878 inhibitor significantly increased cell viability ((46.67±3.00) vs (74.62±4.08), P<0.000 1), and decreased LDH release ((358.58±41.71) vs (179.09±15.59), P<0.000 1) and cell apoptosis rate ((43.41±0.72) vs (27.42±4.48), P<0.01). At the same time, downregulation of miR-878 expression significantly inhibited DRP1-mediated mitochondrial overdivision and mtROS production ((6.60±0.57) vs (4.32±0.91), P<0.000 1). The mechanism study showed that miR-878 could target and bind Pim1 and inhibit the expression level of Pim1 ((1.00±0.13) vs (0.38±0.03), P<0.01). Rescue experiments confirmed that down-regulation of Pim1 expression significantly reversed the anti-injury effect of miR-878 inhibitor in H9c2 cells (P<0.01), promoted mitochondrial overdivision and mtROS production ((1.00±0.12) vs (2.41±0.12), P<0.01), and decreased the expression level of p-DRP1 ((1.00±0.15) vs (0.59±0.06), P<0.05). ConclusionThe present study demonstrates that miR-878 expression is upregulated in H9c2 cardiomyocytes subjected to H/R injury. Inhibition of miR-878 expression alleviates H/R-induced cardiomyocyte damage. Notably, downregulation of miR-878 significantly inhibits DRP1-mediated mitochondrial fission and mitigates mtROS production. Mechanistically, miR-878 targets and binds to the 3'-UTR of the Pim1 gene, thereby suppressing Pim1 protein expression. Collectively, these findings suggest that under H/R conditions, miR-878 promotes excessive mitochondrial fragmentation through DRP1 activation by targeting Pim1, ultimately contributing to cardiomyocyte injury. Modulation of the miR-878/Pim1 axis may represent a potential therapeutic strategy for mitigating MI/R-induced cardiac damage.
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ObjectiveTo investigate the mechanism of modified Shenhong Tongluo prescription on cell apoptosis in rats with myocardial ischemia-reperfusion injury (MIRI). MethodSixty Sprague-Dawley (SD) rats were randomly divided into a blank group, a model group, low-, medium-, and high-dose groups of modified Shenhong Tongluo prescription, and a simvastatin group. Except for the blank group, a rat model of MIRI was prepared by ligating the left anterior descending coronary artery. Starting from the first day after successful modeling, the blank group (1.0 mL·kg-1 physiological saline), model group (1.0 mL·kg-1 physiological saline), low-, medium-, and high-dose groups of modified Shenhong Tongluo prescription (1.031, 2.063, and 4.126 g·kg-1 Shenhong Tongluo prescriptiona standard concentrate), and simvastatin group (0.71 mg·kg-1 simvastatin) were orally administered once daily for 2 weeks. Hematoxylin-eosin (HE) staining was used to observe the pathological changes of cardiomyocytes. Enzyme-linked immunosorbent assay (ELISA) was used to detect the levels of serum creatine kinase isoenzyme (CK-MB), interleukin-6 (IL-6), and tumor necrosis factor-α (TNF-α). TdT-mediated dUTP nick-end labeling(TUNEL) staining was used to detect the apoptosis rate of rat cardiomyocytes. Western blot was used to detect the expression levels of apoptosis-related proteins B-cell lymphoma-2 (Bcl-2), Bcl-2-associated X protein (Bax), and caspase-3. ResultCompared with the blank group, in the model group, HE staining showed disturbed arrangement of cardiomyocytes, incomplete fibers, focal necrosis of cardiomyocytes, and inflammatory cell infiltration; serum CK-MB, IL-6, and TNF-α levels were significantly increased (P<0.05); apoptosis rate of cardiomyocytes was significantly increased (P<0.01), with significantly increased expression levels of Bax and Caspase-3 proteins, and significantly decreased Bcl-2 expression (P<0.05). Compared with the model group, the low-, medium-, and high-dose groups of modified Shenhong Tongluo prescription significantly reduced CK-MB, IL-6, and TNF-α levels (P<0.05), significantly downregulated cardiomyocyte apoptosis rate (P<0.05), significantly decreased Bax and Caspase-3 proteins, and significantly increased Bcl-2 expression levels (P<0.01). In the modified Shenhong Tongluo prescription groups, the expression levels of Bax and Caspase-3 proteins significantly decreased with increasing dosage, while the expression level of Bcl-2 significantly increased with increasing dosage of modified Shenhong Tongluo prescription (P<0.05). ConclusionShenhong Tongluo prescription can alleviate myocardial tissue pathological damage and reduce myocardial cell apoptosis, possibly by inhibiting Caspase-3 and Bax expression and promoting Bcl-2 expression.
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Liver transplantation is the optimal treatment for end-stage liver disease and hepatocellular carcinoma, which can significantly improve clinical prognosis and quality of life of patients. However, multiple challenges, such as rejection, immune tolerance, shortage of donor liver, preservation of donor liver, ischemia-reperfusion injury and postoperative complications, <i>etc.</i>, limit the efficacy of liver transplantation in clinical practice. Research teams in China have made significant contributions to the basic research related to liver transplantation by making continuous efforts and combining the development of emerging technologies, interdisciplinary integration and other emerging fields. In this article, the frontier progress in the basic research of liver transplantation in 2023 was reviewed, highlighting the progress made by Chinese research teams in the basic research of liver transplantation, aiming to provide reference for promoting the integration of Chinese characteristics into the research of liver transplantation, accelerate the integration of Chinese liver transplantation research with international community, and promote further advancement of liver transplantation in China.
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As a mature organ transplantation, liver transplantation has become the optimal treatment for end-stage liver disease, which can improve the quality of life of recipients. However, liver transplantation still faces multiple challenges, such as rejection, infection, biliary complications, delayed graft function, ischemia-reperfusion injury, recurrence of hepatocellular carcinoma after liver transplantation, kidney-related diseases after transplantation, and donor shortage, <i>etc.</i>, which remain to be improved and urgently resolved. With persistent attempts and experience accumulated by Chinese experts and scholars, these problems related to liver transplantation have been gradually resolved year by year. In 2023, liver transplantation teams in China have achieved a series of significant progresses in the field of clinical research. In this article, clinical frontiers and novel technological progresses in the field of liver transplantation in 2023 were reviewed, and the achievements of clinical liver transplantation in China in 2023 were summarized, aiming to provide novel ideas for promoting further development of liver transplantation in China.