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Microglial intervention in ischemic stroke:Roles and intervention strategies 被引量:4
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作者 Cuiling Ji Lixinbei Sheng +4 位作者 Kaijun Han Ping Yuan Wei Li Lu Chen Yongyue Gao 《Neural Regeneration Research》 2026年第2期443-454,共12页
Ischemic stroke is a major cause of neurological deficits and high disability rate.As the primary immune cells of the central nervous system,microglia play dual roles in neuroinflammation and tissue repair following a... Ischemic stroke is a major cause of neurological deficits and high disability rate.As the primary immune cells of the central nervous system,microglia play dual roles in neuroinflammation and tissue repair following a stroke.Their dynamic activation and polarization states are key factors that influence the disease process and treatment outcomes.This review article investigates the role of microglia in ischemic stroke and explores potential intervention strategies.Microglia exhibit a dynamic functional state,transitioning between pro-inflammatory(M1)and anti-inflammatory(M2)phenotypes.This duality is crucial in ischemic stroke,as it maintains a balance between neuroinflammation and tissue repair.Activated microglia contribute to neuroinflammation through cytokine release and disruption of the blood-brain barrier,while simultaneously promoting tissue repair through anti-inflammatory responses and regeneration.Key pathways influencing microglial activation include Toll-like receptor 4/nuclear factor kappa B,mitogen-activated protein kinases,Janus kinase/signal transducer and activator of transcription,and phosphoinositide 3-kinase/protein kinase B/mammalian target of rapamycin pathways.These pathways are targets for various experimental therapies aimed at promoting M2 polarization and mitigating damage.Potential therapeutic agents include natural compounds found in drugs such as minocycline,as well as traditional Chinese medicines.Drugs that target these regulatory mechanisms,such as small molecule inhibitors and components of traditional Chinese medicines,along with emerging technologies such as single-cell RNA sequencing and spatial transcriptomics,offer new therapeutic strategies and clinical translational potential for ischemic stroke. 展开更多
关键词 blood-brain barrier ischemic stroke MICROGLIA nerve regeneration NEUROINFLAMMATION NEUROPROTECTION oxidative stress polarization signaling pathways therapeutic strategies
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Electroacupuncture for the treatment of ischemic stroke:A preclinical meta-analysis and systematic review 被引量:1
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作者 Guohui Yang Chong Guan +7 位作者 Meixi Liu Yi Lin Ying Xing Yashuo Feng Haozheng Li Yi Wu Nianhong Wang Lu Luo 《Neural Regeneration Research》 2026年第3期1191-1210,共20页
Stroke remains a leading cause of death and disability worldwide,and electroacupuncture has a long history of use in stroke treatment.This meta-analysis and systematic review aimed to evaluate the efficacy of electroa... Stroke remains a leading cause of death and disability worldwide,and electroacupuncture has a long history of use in stroke treatment.This meta-analysis and systematic review aimed to evaluate the efficacy of electroacupuncture and explore its potential mechanisms in animal models of ischemic stroke.The PubMed,EMBASE,Web of Science,CENTRAL,and CINAHL databases were comprehensively searched up to May 1,2024.This review included articles on preclinical investigations of the efficacy and mechanisms of electroacupuncture in treating ischemic stroke.Data from 70 eligible studies were analyzed in Stata 18.0,using a random-effects model to calculate the standardized mean difference(Hedge’s g).The risk of bias was assessed using RevMan 5.4 software,and the quality of evidence was rated according to the Grading of Recommendations,Assessment,Development,and Evaluation(GRADE)system.Subgroup analyses were conducted to test the consistency of the results and sensitivity analyses were used to assess their robustness.The quality assessment revealed that most studies adequately handled incomplete data and selective reporting.However,several methodological limitations were identified:only 4 studies demonstrated a low risk of allocation concealment,26 achieved a low risk of outcome assessment bias,and 9 had a high risk of randomization bias.Additionally,there was an unclear risk regarding participant blinding and other methodological aspects.The GRADE assessment rated 12 outcomes as moderate quality and 6 as low quality.The mechanisms of electroacupuncture treatment for ischemic stroke can be categorized as five primary pathways:(1)Electroacupuncture significantly reduced infarct volume and apoptotic cell death(P<0.01)in ischemic stroke models;(2)electroacupuncture significantly decreased the levels of pro-inflammatory factors(P<0.01)while increasing the levels of anti-inflammatory factors(P=0.02);(3)electroacupuncture reduced the levels of oxidative stress indicators(P<0.01)and enhanced the expression of antioxidant enzymes(P<0.01);(4)electroacupuncture significantly promoted nerve regeneration(P<0.01);and(5)electroacupuncture influenced blood flow remodeling(P<0.01)and angiogenesis(P<0.01).Subgroup analyses indicated that electroacupuncture was most effective in the transient middle cerebral artery occlusion model(P<0.01)and in post-middle cerebral artery occlusion intervention(P<0.01).Dispersive waves were found to outperform continuous waves with respect to neuroprotection and anti-inflammatory effects(P<0.01),while scalp acupoints demonstrated greater efficacy than body acupoints(P<0.01).The heterogeneity among the included studies was minimal,and sensitivity analyses indicated stable results.Their methodological quality was generally satisfactory.In conclusion,electroacupuncture is effective in treating cerebral ischemia by modulating cell apoptosis,oxidative stress,inflammation,stroke-induced nerve regeneration,blood flow remodeling,and angiogenesis.The efficacy of electroacupuncture may be influenced by factors such as the middle cerebral artery occlusion model,the timing of intervention onset,waveform,and acupoint selection.Despite the moderate to low quality of evidence,these findings suggest that electroacupuncture has clinical potential for improving outcomes in ischemic stroke. 展开更多
关键词 apoptosis ANGIOGENESIS ELECTROACUPUNCTURE ischemic stroke inflammation metaanalysis nerve regeneration oxidative stress randomized controlled trial systematic review
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Melatonin alleviates neuroinflammation in ischemic stroke by regulating cyclic GMP-AMP synthase-mediated microglial pyroptosis signaling
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作者 Qian Li Lin Feng +7 位作者 Yu Tian Erliang Guo Yiran Li Jingyan Niu Haodong Pan Chun Dang Yaoheng Lu Lihua Wang 《Neural Regeneration Research》 2026年第6期2380-2388,共9页
Inflammation plays a key role in driving the secondary brain injury that follows ischemic stroke.Melatonin is an endogenous neuroendocrine hormone that regulates mitochondrial homeostasis.However,the role and mechanis... Inflammation plays a key role in driving the secondary brain injury that follows ischemic stroke.Melatonin is an endogenous neuroendocrine hormone that regulates mitochondrial homeostasis.However,the role and mechanisms by which melatonin regulates microglial pyroptosis and the inflammatory cascade through double-stranded DNA(dsDNA)-sensing cyclic GMP-AMP synthase(cGAS)signaling warrant further study.Using middle cerebral artery occlusion mice,we investigated the effects of melatonin on cGAS-mediated pyroptosis and neuroinflammation.Middle cerebral artery occlusion model mice exhibited significantly increased DNA damage and cytoplasmic dsDNA release,as reflected byγH2AX staining,as well as heightened activation of the cytosolic dsDNA-sensing cGAS-STING pathway,both of which were notably suppressed by melatonin treatment.Melatonin also mitigated NOD-like receptor family pyrin domain-containing protein 3(NLRP3)inflammasome activation and nuclear factor(NF)-κB/gasdermin D-mediated pyroptosis in microglia following ischemic stroke,while exhibiting the capacity to attenuate the immune response to ischemia in mice.This led to reduced infiltration of peripheral neutrophils and monocytes/macrophages in the ischemic brain.Specifically,melatonin administration resulted in reductions in the numbers of ionized calcium-binding adapter molecule 1-positive cells and production of interleukin-6 and tumor necrosis factor-αby microglia.Regarding neurological outcomes,melatonin significantly reduced cerebral infarct volume and ameliorated neurological deficits in mice.Notably,the neuroprotective effect of melatonin was correlated with the inhibition of cGAS activity.We also developed and tested melatonin co-loaded macrophage membrane-biomimetic reactive oxygen species-responsive nanoparticles(Mф-MLT@FNGs),which exhibited therapeutic properties in middle cerebral artery occlusion mice.Our findings suggest that melatonin acts on microglial pyroptosis to inhibit neuroinflammation and reshape the immune microenvironment through regulation of the cGAS-STING-NF-κB signaling pathway.By doing so,melatonin rescues damaged brain tissue and protects neurological function,highlighting its potential as a neuroprotective treatment for ischemic stroke. 展开更多
关键词 cGAS immune injury inflammation ischemic stroke MELATONIN PYROPTOSIS STING microglia
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Drug delivery strategies for neuroprotective therapy in ischemic stroke:Application of nanotechnology
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作者 Zhan Jiang Qi Chen Huanghao Yang 《Neural Regeneration Research》 2026年第5期1793-1808,共16页
The mechanisms underlying the pathophysiology of ischemic stroke are complex and multifactorial and include excitotoxicity,oxidative stress,inflammatory responses,and blood–brain barrier disruption.While vascular rec... The mechanisms underlying the pathophysiology of ischemic stroke are complex and multifactorial and include excitotoxicity,oxidative stress,inflammatory responses,and blood–brain barrier disruption.While vascular recanalization treatments such as thrombolysis and mechanical thrombectomy have achieved some success,reperfusion injury remains a significant contributor to the exacerbation of brain injury.This emphasizes the need for developing neuroprotective strategies to mitigate this type of injury.The purpose of this review was to examine the application of nanotechnology in the treatment of ischemic stroke,covering research progress in nanoparticlebased drug delivery,targeted therapy,and antioxidant and anti-inflammatory applications.Nanobased drug delivery systems offer several advantages compared to traditional therapies,including enhanced blood–brain barrier penetration,prolonged drug circulation time,improved drug stability,and targeted delivery.For example,inorganic nanoparticles,such as those based on CeO_(2),have been widely studied for their strong antioxidant capabilities.Biomimetic nanoparticles,such as those coated with cell membranes,have garnered significant attention owing to their excellent biocompatibility and targeting abilities.Nanoparticles can be used to deliver a wide range of neuroprotective agents,such as antioxidants(e.g.,edaravone),anti-inflammatory drugs(e.g.,curcumin),and neurotrophic factors.Nanotechnology significantly enhances the efficacy of these drugs while minimizing adverse reactions.Although nanotechnology has demonstrated great potential in animal studies,its clinical application still faces several challenges,including the long-term safety of nanoparticles,the feasibility of large-scale production,quality control,and the ability to predict therapeutic effects in humans.In summary,nanotechnology holds significant promise for the treatment of ischemic stroke.Future research should focus on further exploring the mechanisms of action of nanoparticles,developing multifunctional nanoparticles,and validating their safety and efficacy through rigorous clinical trials.Moreover,interdisciplinary collaboration is essential for advancing the use of nanotechnology in stroke treatment. 展开更多
关键词 drug delivery EXCITOTOXICITY ischemic stroke ISCHEMIA-REPERFUSION nanoparticles nerve regeneration NEUROINFLAMMATION NEUROPROTECTION oxidative stress PATHOPHYSIOLOGY
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Advances in metabolomics of biomarkers for ischemic stroke:From bench to clinic
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作者 Jiaxin Sun Chenxin Xiao +5 位作者 Jingyuan Zhang Feng Lin Yue Xu Yanyu Li Lei Zhang Wenli Chen 《Neural Regeneration Research》 2026年第8期3588-3597,共10页
Ischemic stroke,a neurological impairment caused by cerebral vascular occlusion,accounts for 87%of the cases of stroke.Recent studies have shown that changes in the abundance of metabolites can directly reveal the cel... Ischemic stroke,a neurological impairment caused by cerebral vascular occlusion,accounts for 87%of the cases of stroke.Recent studies have shown that changes in the abundance of metabolites can directly reveal the cellular phenotypes and identify the clinical implications of stroke diagnosis and therapy.However,systematic research to clarify the relationship between biomarkers and the mechanisms of ischemic stroke remains limited.In this study,we reviewed articles on ischemic stroke metabolites from 2005 to 2024,identified metabolites showing significant changes,and constructed a metabolite database based on the findings from 128 studies.The database included 125 differential metabolites detected in a middle cerebral artery occlusion mouse model,246 detected in an middle cerebral artery occlusion rat model,and 764 identified in ischemic stroke patient samples.Differential metabolites from various samples were then screened and classified into positive and negative categories based on their correlation with stroke prognoses.Based on this analysis,three positive metabolites and two negative metabolites were identified.Glutamic acid,glycerol,and 1-octadecanoyl-sn-glycero-3-phosphocholine(LysoPC(18:0))were further recognized as potential biomarkers.Imbalances in metabolic pathways such as alanine,aspartate,and glutamate metabolism as well as the citrate cycle(tricarboxylic acid cycle)were analyzed.These imbalances may influence the pathogenesis of ischemic stroke by altering biological processes such as excitotoxicity,oxidative stress,inflammation,and energy metabolism.The identification and analysis of these potential biomarkers may provide valuable targets and strategies for prediction,diagnosis,and prognostic assessment of ischemic stroke. 展开更多
关键词 biomarker energy metabolism EXCITOTOXICITY glutamic acid GLYCEROL ischemic stroke metabolomics oxidative stress patient RODENT
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Tryptophan metabolism and ischemic stroke:An intricate balance
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作者 Chongjie Yao Dong Xie +6 位作者 Yuchen Zhang Yuanhao Shen Pingping Sun Zhao Ma Jin Li Jiming Tao Min Fang 《Neural Regeneration Research》 2026年第2期466-477,共12页
Ischemic stroke,which is characterized by hypoxia and ischemia,triggers a cascade of injury responses,including neurotoxicity,inflammation,oxidative stress,disruption of the blood-brain barrier,and neuronal death.In t... Ischemic stroke,which is characterized by hypoxia and ischemia,triggers a cascade of injury responses,including neurotoxicity,inflammation,oxidative stress,disruption of the blood-brain barrier,and neuronal death.In this context,tryptophan metabolites and enzymes,which are synthesized through the kynurenine and 5-hydroxytryptamine pathways,play dual roles.The delicate balance between neurotoxic and neuroprotective substances is a crucial factor influencing the progression of ischemic stroke.Neuroprotective metabolites,such as kynurenic acid,exert their effects through various mechanisms,including competitive blockade of N-methyl-D-aspartate receptors,modulation ofα7 nicotinic acetylcholine receptors,and scavenging of reactive oxygen species.In contrast,neurotoxic substances such as quinolinic acid can hinder the development of vascular glucose transporter proteins,induce neurotoxicity mediated by reactive oxygen species,and disrupt mitochondrial function.Additionally,the enzymes involved in tryptophan metabolism play major roles in these processes.Indoleamine 2,3-dioxygenase in the kynurenine pathway and tryptophan hydroxylase in the 5-hydroxytryptamine pathway influence neuroinflammation and brain homeostasis.Consequently,the metabolites generated through tryptophan metabolism have substantial effects on the development and progression of ischemic stroke.Stroke treatment aims to restore the balance of various metabolite levels;however,precise regulation of tryptophan metabolism within the central nervous system remains a major challenge for the treatment of ischemic stroke.Therefore,this review aimed to elucidate the complex interactions between tryptophan metabolites and enzymes in ischemic stroke and develop targeted therapies that can restore the delicate balance between neurotoxicity and neuroprotection. 展开更多
关键词 5-HYDROXYTRYPTAMINE cerebral ischemia ischemic stroke KYNURENINE neuroprotection NEUROTOXICITY post-stroke cognitive impairment post-stroke depression SEROTONIN tryptophan metabolism
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Macrophages-derived NRG-1 promotes angiogenesis after ischemic stroke via the Akt-mTOR pathway
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作者 Jie Chen Bo Wang +4 位作者 Danyang Fan Xi Chen Lenv Gao Yun Luo Zhenhua Zhou 《Neural Regeneration Research》 2026年第7期3007-3016,共10页
Acute ischemic stroke remains a significant health concern owing to the limited efficacy of current therapeutic options.In recent years,Neuregulin-1 has exhibited promising neuroprotective effects in cerebral ischemia... Acute ischemic stroke remains a significant health concern owing to the limited efficacy of current therapeutic options.In recent years,Neuregulin-1 has exhibited promising neuroprotective effects in cerebral ischemia.However,the sources and functions of Neuregulin-1 have not yet been fully understood,which hinders its translation and broad application.Here,we collected paired clot and peripheral blood samples from patients with acute ischemic stroke to determine the sources of Neuregulin-1.In addition,we established an in vivo transient middle cerebral artery occlusion mouse model to investigate the therapeutic effects of Neuregulin-1 and its underlying molecular biological mechanisms.We observed a significant elevation in serum Neuregulin-1 levels among patients with acute ischemic stroke that correlated with severity of neurological impairment and clinical outcome.Using single-cell sequencing,we identified Neuregulin-1-positive macrophages among peripheral blood mononuclear cells that produced Neuregulin-1 post-ischemia.In addition,Neuregulin-1 promoted repair of the infarcted area,alleviating neuronal and myelin damage and improving overall behavioral recovery in mice.We found that Neuregulin-1 may exert these neuroprotective effects by promoting angiogenesis in the infarct area,and that this effect is mediated by Akt/mTOR/VEGF-dependent signaling.Our findings suggest that peripheral macrophages are a source of Neuregulin-1 post-stroke.Neuregulin-1 exerts its neuroprotective effects by promoting angiogenesis via Akt/mTOR/VEGF-dependent signaling,showing promising clinical translation potential. 展开更多
关键词 acute ischemic stroke ANGIOGENESIS CLOT ERBB4 fluorescence-activated cell sorting immune cell inflammation macrophages NEUREGULIN-1 NEUROPROTECTION
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LncRNA regulation in ischemic stroke and their application prospects
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作者 Qianqian Chen Xiangyi Xu +1 位作者 Shun Li Tianqing Xiong 《Neural Regeneration Research》 2026年第3期1058-1073,共16页
Ischemic stroke is a serious medical event that cannot be predicted in advance and can have longlasting effects on patients,families,and communities.A deeper understanding of the changes in gene expression and the fun... Ischemic stroke is a serious medical event that cannot be predicted in advance and can have longlasting effects on patients,families,and communities.A deeper understanding of the changes in gene expression and the fundamental molecular mechanisms involved could help address this critical issue.In recent years,research into regulatory long non-coding(lnc)RNAs,a diverse group of RNA molecules with regulatory functions,has emerged as a promising direction in the study of cerebral infarction.This review paper aims to provide a comprehensive exploration of the roles of regulatory lncRNAs in cerebral infarction,as well as potential strategies for their application in clinical settings.LncRNAs have the potential to act as“sponges”that attract specific microRNAs,thereby regulating the expression of microRNA target genes.These interactions influence various aspects of ischemic stroke,including reperfusion-induced damage,cell death,immune responses,autophagy,angiogenesis,and the generation of reactive oxygen species.We highlight several regulatory lncRNAs that have been utilized in animal model treatments,including lncRNA NKILA,lncRNA Meg8,and lncRNA H19.Additionally,we discuss lncRNAs that have been used as biomarkers for the diagnosis and prognosis of cerebral infarction,such as lncRNA FOXO3,lncRNA XIST,and lncRNA RMST.The lncRNAs hold potential for genetic-level treatments in patients.However,numerous challenges,including inefficiency,low targeting accuracy,and side effects observed in preliminary studies,indicate the need for thorough investigation.The application of lncRNAs in ischemic stroke presents challenges that require careful and extensive validation. 展开更多
关键词 adeno-associated virus ANGIOGENESIS AUTOPHAGY gene therapy ischemic stroke long non-coding RNAs NEUROINFLAMMATION oxidative stress pathophysiological mechanism stroke
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Adeno-associated virus-mediated inhibition of ROCK2 promotes synaptogenesis and neurogenesis in rats after ischemic stroke
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作者 Liuliu Shi Ting Zhu +3 位作者 Chengyan Ge Yongkun Yang Qi Wan Shifang Li 《Neural Regeneration Research》 2026年第6期2407-2414,共8页
Neurite outgrowth and synaptogenesis are critical steps for functional recovery following ischemic stroke.Damaged axons of the central nervous system in adult mammals exhibit limited regenerative capacity,resulting in... Neurite outgrowth and synaptogenesis are critical steps for functional recovery following ischemic stroke.Damaged axons of the central nervous system in adult mammals exhibit limited regenerative capacity,resulting in enduring neurological deficits.Recent findings from our research indicate that inhibition of Rho-associated kinase(ROCK)2 facilitates neuroprotection in different models of central nervous system diseases.In addition,our prior studies have demonstrated that axonal protection enhances the regeneration of injured axons.However,it remains unclear whether the axonal protection mediated by ROCK2 inhibition also facilitates synaptogenesis.In this study,we aimed to investigate the effects of inhibiting ROCK2 expression on synaptogenesis and neurogenesis in ischemic stroke using an shRNA-expressing adeno-associated virus(AAV)vector(AAV-sh.ROCK2).We demonstrated that AAV-sh.ROCK2 increased neurite outgrowth and facilitated synaptogenesis in vivo.Furthermore,AAV-sh.ROCK2 increased neuronal survival and promoted neurogenesis following middle cerebral artery occlusion surgery as well as long-term motor functional recovery after ischemia/reperfusion injury.Notably,AAV-sh.ROCK2 also stimulated serotonergic and dopaminergic axon sprouting after ischemia/reperfusion injury.Mechanistically,AAV-sh.ROCK2 activity resulted in increased anti-collapsin response mediator protein 2 activation and reductions in RhoA and ROCK2 expression.Our study identified ROCK2 as a critical regulator of synaptogenesis and neurogenesis,highlighting it as a promising target to facilitate neuroprotection and regeneration in ischemic stroke. 展开更多
关键词 adeno-associated virus axonal regeneration gene therapy ischemic stroke NEUROGENESIS neurological recovery neuronal survival NEUROPLASTICITY Rho-associated kinase 2 SYNAPTOGENESIS
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Melatonin as a Neuroprotective Agent in Ischemic Stroke:Mechanistic Insights Centralizing Mitochondria as a Potential Therapeutic Target
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作者 Mayuri Shukla Soraya Boonmag +1 位作者 Parichart Boontem Piyarat Govitrapong 《BIOCELL》 2026年第1期46-80,共35页
Ischemic stroke is one of the major causes of long-term disability and mortality worldwide.It results from an interruption in the cerebral blood flow,triggering a cascade of detrimental events like oxidative stress,mi... Ischemic stroke is one of the major causes of long-term disability and mortality worldwide.It results from an interruption in the cerebral blood flow,triggering a cascade of detrimental events like oxidative stress,mitochondrial dysfunction,neuroinflammation,excitotoxicity,and apoptosis,causing neuronal injury and cellular death.Melatonin,a pleiotropic indoleamine produced by the pineal gland,has multifaceted neuroprotective effects on stroke pathophysiology.Interestingly,the serum melatonin levels are associated with peroxidation and antioxidant status,along with mortality score in patients with severe middle cerebral artery infarction.Melatonin exhibits strong antioxidant,anti-inflammatory,and anti-apoptotic properties and preserves mitochondrial function and homeostasis.Several preclinical studies have shown that melatonin administration conserves blood-brain barrier integrity,reduces infarct size,and edema.These mechanisms contribute to minimizing tissue damage and improving the neurological outcomes following ischemic events.Therefore,the present review evaluates evidence from experimental studies furthered with limited clinical investigations and explores the mechanistic pathways ofmelatonin functions to establish its therapeutic potential in stroke management. 展开更多
关键词 ischemic stroke NEUROINFLAMMATION NEURODEGENERATION mitochondrial dysfunction MELATONIN NEUROPROTECTION
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Physical exercise promotes white matter repair after ischemic stroke
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作者 Yating Mu Xiaofeng Yang +8 位作者 Yifeng Feng Liying Zhang Jinghui Xu Mingyue Li Rui Wu Shiying Li Xiaofei He Zejie Zuo Xiquan Hu 《Neural Regeneration Research》 2026年第6期2397-2406,共10页
White matter injury is a key factor impacting stroke recovery.Physical exercise can promote white matter repair.Immune cells,especially regulatory T(Treg)cells,contribute to strengthening white matter integrity,yet li... White matter injury is a key factor impacting stroke recovery.Physical exercise can promote white matter repair.Immune cells,especially regulatory T(Treg)cells,contribute to strengthening white matter integrity,yet little is known about the underlying mechanism.To examine this,we established a transient middle cerebral artery occlusion male mouse model.We found that physical exercise elevated brain Treg cells,thereby enhancing neurological recovery,reducing neuroinflammation,promoting myelin debris clearance,and accelerating white matter repair.Depletion of Treg cells caused a decrease in these positive effects of physical exercise.Mechanistically,the rise in osteopontin triggered by physical exercise is dampened when Treg cells are depleted.In addition,Treg-conditioned medium reduced oxygen-glucose deprivation/re-oxygenation-induced microglial inflammation and enhanced phagocytosis,which could be blocked by osteopontin antibodies.Importantly,although Treg infusion could mimic the protective effects of physical exercise,osteopontin blockade partially countered the effects of physical exercise and Treg cells.Finally,our sequencing data revealed a marked upregulation of C-X-C motif chemokine ligand 12(CXCL12)mRNA expression subsequent to physical exercise,which was confirmed at the protein level.Stimulation of Treg cells with stroke brain lysates increased C-X-C motif chemokine receptor 4(CXCR4)expression,indicating a potential role for the CXCL12-CXCR4 axis in recruiting Treg cells.These findings suggest that physical exercise promotes white matter repair after ischemic stroke by Treg cells. 展开更多
关键词 CXCL12 ischemic stroke MICROGLIA NEUROINFLAMMATION OSTEOPONTIN PHAGOCYTOSIS physical exercise transient middle cerebral artery occlusion Treg cells white matter injury
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Therapeutic mechanisms of umbilical cord mesenchymal stem cell-derived exosomes in ischemic stroke:A transcriptomic and metabolomic study
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作者 Baoxi Shen Jing Chen +2 位作者 Ning Liu Jingyi Hou Yiwu Dai 《Neural Regeneration Research》 2026年第6期2632-2642,共11页
Ischemic stroke remains a leading cause of disability and death,with mesenchymal stem cell-derived exosomes emerging as a promising therapeutic avenue.However,the optimal timing and underlying therapeutic mechanisms o... Ischemic stroke remains a leading cause of disability and death,with mesenchymal stem cell-derived exosomes emerging as a promising therapeutic avenue.However,the optimal timing and underlying therapeutic mechanisms of exosome treatment require further elucidation.In this study,we used a murine model of middle cerebral artery occlusion to investigate the therapeutic efficacy of human umbilical cord mesenchymal stem cell-derived exosomes administered intravenously at an early(6 hours)or delayed(3 days)time point post-ischemia.Compared with delayed treatment,early administration of exosomes resulted in significantly superior efficacy,as evidenced by improved neurological function scores and reduced infarct volumes.Transcriptomic analysis of brain tissues from mice receiving early exosome treatment revealed marked downregulation of inflammation-related genes,including Ccl2,Ccl5,Cxcl10,Il-1β,Il-6,Itgam,Itgax,and Tnf-α.Metabolomic profiling of these brain tissues further identified modulation of key metabolites,including trimethylamine N-oxide,glutathione,1-stearoyl-rac-glycerol,and phosphatidylcholine,suggesting that alteration of metabolic pathways contributes to the therapeutic effect.Integrated transcriptomic and metabolomic analysis pinpointed significant modulation of pathways involving metabolism of eicosapentaenoic acid,lysine,propanoate,and tyrosine.These findings suggest that umbilical cord mesenchymal stem cell-derived exosomes,particularly when administered early post-ischemia,exert their neuroprotective effects by broadly suppressing inflammatory pathways and modulating key metabolic processes in the ischemic brain,highlighting their potential as a therapeutic intervention for ischemic stroke. 展开更多
关键词 EXOSOMES ischemic stroke mesenchymal stem cells metabolomics middle cerebral artery occlusion stroke TRANSCRIPTOMICS
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Enhanced neurogenesis after ischemic stroke:The interplay between endogenous and exogenous stem cells
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作者 Ruxu Geng Yuhe Wang +2 位作者 Renzhi Wang Jun Wu Xinjie Bao 《Neural Regeneration Research》 2026年第1期212-223,共12页
Ischemic stroke is a significant global health crisis,frequently resulting in disability or death,with limited therapeutic interventions available.Although various intrinsic reparative processes are initiated within t... Ischemic stroke is a significant global health crisis,frequently resulting in disability or death,with limited therapeutic interventions available.Although various intrinsic reparative processes are initiated within the ischemic brain,these mechanisms are often insufficient to restore neuronal functionality.This has led to intensive investigation into the use of exogenous stem cells as a potential therapeutic option.This comprehensive review outlines the ontogeny and mechanisms of activation of endogenous neural stem cells within the adult brain following ischemic events,with focus on the impact of stem cell-based therapies on neural stem cells.Exogenous stem cells have been shown to enhance the proliferation of endogenous neural stem cells via direct cell-tocell contact and through the secretion of growth factors and exosomes.Additionally,implanted stem cells may recruit host stem cells from their niches to the infarct area by establishing so-called“biobridges.”Furthermore,xenogeneic and allogeneic stem cells can modify the microenvironment of the infarcted brain tissue through immunomodulatory and angiogenic effects,thereby supporting endogenous neuroregeneration.Given the convergence of regulatory pathways between exogenous and endogenous stem cells and the necessity for a supportive microenvironment,we discuss three strategies to simultaneously enhance the therapeutic efficacy of both cell types.These approaches include:(1)co-administration of various growth factors and pharmacological agents alongside stem cell transplantation to reduce stem cell apoptosis;(2)synergistic administration of stem cells and their exosomes to amplify paracrine effects;and(3)integration of stem cells within hydrogels,which provide a protective scaffold for the implanted cells while facilitating the regeneration of neural tissue and the reconstitution of neural circuits.This comprehensive review highlights the interactions and shared regulatory mechanisms between endogenous neural stem cells and exogenously implanted stem cells and may offer new insights for improving the efficacy of stem cell-based therapies in the treatment of ischemic stroke. 展开更多
关键词 brain-derived neurotrophic factor endogenous neuroregeneration exosomes hydrogels ischemic stroke mesenchymal stem cells neural stem cells NEUROGENESIS stem cell transplantation
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Decoding monocyte signatures in ischemic stroke:A multi-scale transcriptomic approach
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作者 Yanyi Peng Bo Xiao Mengqi Zhang 《Neural Regeneration Research》 2026年第7期3209-3224,共16页
Monocytes play a crucial role in post-stroke immune infiltration,yet the intricate immune regulatory networks they orchestrate in ischemic stroke remain poorly understood.This knowledge gap has hindered the developmen... Monocytes play a crucial role in post-stroke immune infiltration,yet the intricate immune regulatory networks they orchestrate in ischemic stroke remain poorly understood.This knowledge gap has hindered the development of targeted monocyte-based therapies for stroke.Here,we used a multi-omics approach combining single-cell and bulk transcriptomics.CellChat analysis revealed intercellular communication networks,while key genes were identified and predictive models built through Lasso regression.Immune cell infiltration dynamics were quantified using single-sample gene set enrichment analysis.Gene set enrichment analysis and gene set variation analysis identified disease-regulated pathways of core genes.MicroRNA networks and transcription factors were investigated using mircode and RcisTarget.Experimental validation was performed using oxygen-glucose deprivation and transient middle cerebral artery occlusion models,focusing on the influence of abhydrolase domain-containing protein 2 on monocyte function.We observed significantly elevated monocyte content in stroke brain tissue samples,and identified key monocyte genes associated with immune inflammation,chemokine signaling,and cell receptor function.A robust seven-gene predictive model for ischemic stroke was developed.CD274 strongly correlated with these seven genes,suggesting a potential immunomodulatory axis.In vivo transient middle cerebral artery occlusion experiments validated the predictive value of key genes.In vitro studies demonstrated that abhydrolase domain-containing protein 2 overexpression enhanced monocyte proliferation and phagocytic activity post-oxygen-glucose deprivation while reducing reactive oxygen species generation.In conclusion,this study maps post-stroke monocyte communication networks,identifies key signaling pathways,identifies regulatory mechanisms,and validates the functional importance of key genes,particularly abhydrolase domain-containing protein 2.These findings provide a foundation for developing targeted immunomodulatory therapies and precision diagnostics in ischemic stroke management. 展开更多
关键词 abhydrolase domain-containing protein 2 bulk-RNA sequencing CellChat diagnosis model gene signature ischemic stroke MONOCYTES PHAGOCYTOSIS reactive oxygen species single-cell transcriptomics
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Intermittent theta-burst stimulation promotes neurovascular unit remodeling after ischemic stroke in a mouse model
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作者 Jingjun Zhang Ming Ding +11 位作者 Lu Luo Dan Huang Siyue Li Shuying Chen Yunhui Fan Li Liu Hongyu Xie Gang Liu Kewei Yu Junfa Wu Xiao Xiao Yi Wu 《Neural Regeneration Research》 2026年第8期3598-3608,共11页
The neurovascular unit plays a critical role in maintaining brain structure,function,and homeostasis.Following ischemic stroke,dysfunction and dysregulation of this unit contribute to nerve-blood vessel uncoupling.Int... The neurovascular unit plays a critical role in maintaining brain structure,function,and homeostasis.Following ischemic stroke,dysfunction and dysregulation of this unit contribute to nerve-blood vessel uncoupling.Intermittent theta-burst stimulation is a repetitive transcranial magnetic stimulation that operates within the theta wave range and can either promote or inhibit cortical excitability.Previous studies have shown that intermittent theta wave stimulation has neuroprotective effects,but the underlying mechanisms remain unclear.In this study,mice subjected to middle cerebral artery occlusion/reperfusion were treated with intermittent theta-burst stimulation.The results showed that intermittent theta-burst stimulation significantly improved neurological function and motor recovery,reduced apoptosis in the peri-infarct region,and activated the PI3K/AKT/GSK3β/β-catenin signaling pathway.Additionally,intermittent theta-burst stimulation suppressed inflammation through the PI3K/AKT/GSK3βand NF-κB pathways.Notably,intermittent theta-burst stimulation strengthened A2 astrocyte-blood vessel coupling,and the effects of intermittent theta-burst stimulation were reversed by the PI3K inhibitor LY294002.These findings demonstrate that intermittent theta-burst stimulation promotes neurovascular unit remodeling and improves neurological outcomes by modulating microglia and astrocytes via the PI3K/AKT/GSK3βand NF-κB signaling pathways. 展开更多
关键词 ASTROCYTE blood-brain barrier glycogen synthase kinase 3 beta intermittent theta-burst stimulation ischemic stroke microglia neural protection neuroinflammation neurovascular unit vascular protection
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Fibrotic scar formation after cerebral ischemic stroke:Targeting the Sonic hedgehog signaling pathway for scar reduction
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作者 Jun Wen Hao Tang +14 位作者 Mingfen Tian Ling Wang Qinghuan Yang Yong Zhao Xuemei Li Yu Ren Jiani Wang Li Zhou Yongjun Tan Haiyun Wu Xinrui Cai Yilin Wang Hui Cao Jianfeng Xu Qin Yang 《Neural Regeneration Research》 2026年第2期756-768,共13页
Recent studies have shown that fibrotic scar formation following cerebral ischemic injury has varying effects depending on the microenvironment.However,little is known about how fibrosis is induced and regulated after... Recent studies have shown that fibrotic scar formation following cerebral ischemic injury has varying effects depending on the microenvironment.However,little is known about how fibrosis is induced and regulated after cerebral ischemic injury.Sonic hedgehog signaling participates in fibrosis in the heart,liver,lung,and kidney.Whether Shh signaling modulates fibrotic scar formation after cerebral ischemic stroke and the underlying mechanisms are unclear.In this study,we found that Sonic Hedgehog expression was upregulated in patients with acute ischemic stroke and in a middle cerebral artery occlusion/reperfusion injury rat model.Both Sonic hedgehog and Mitofusin 2 showed increased expression in the middle cerebral artery occlusion rat model and in vitro fibrosis cell model induced by transforming growth factor-beta 1.Activation of the Sonic hedgehog signaling pathway enhanced the expression of phosphorylated Smad 3 and Mitofusin 2 proteins,promoted the formation of fibrotic scars,protected synapses or promoted synaptogenesis,alleviated neurological deficits following middle cerebral artery occlusion/reperfusion injury,reduced cell apoptosis,facilitated the transformation of meninges fibroblasts into myofibroblasts,and enhanced the proliferation and migration of meninges fibroblasts.The Smad3 phosphorylation inhibitor SIS3 reversed the effects induced by Sonic hedgehog signaling pathway activation.Bioinformatics analysis revealed significant correlations between Sonic hedgehog and Smad3,between Sonic hedgehog and Mitofusin 2,and between Smad3 and Mitofusin 2.These findings suggest that Sonic hedgehog signaling may influence Mitofusin 2 expression by regulating Smad3 phosphorylation,thereby modulating the formation of early fibrotic scars following cerebral ischemic stroke and affecting prognosis.The Sonic Hedgehog signaling pathway may serve as a new therapeutic target for stroke treatment. 展开更多
关键词 central nervous system FIBROBLASTS fibrosis ischemic stroke Mitofusin 2 middle cerebral artery occlusion/reperfusion P-Smad3 Sonic Hedgehog SMAD3 TOM20
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Tropism-shifted AAV-PHP.eB-mediated bFGF gene therapy promotes varied neurorestoration after ischemic stroke in mice
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作者 Rubing Shi Jing Ye +10 位作者 Ze Liu Cheng Wang Shengju Wu Hui Shen Qian Suo Wanlu Li Xiaosong He Zhijun Zhang Yaohui Tang Guo-Yuan Yang Yongting Wang 《Neural Regeneration Research》 2026年第2期704-714,共11页
AAV-PHP.eB is an artificial adeno-associated virus(AAV)that crosses the blood-brain barrier and targets neurons more efficiently than other AAVs when administered systematically.While AAV-PHP.eB has been used in vario... AAV-PHP.eB is an artificial adeno-associated virus(AAV)that crosses the blood-brain barrier and targets neurons more efficiently than other AAVs when administered systematically.While AAV-PHP.eB has been used in various disease models,its cellular tropism in cerebrovascular diseases remains unclear.In the present study,we aimed to elucidate the tropism of AAV-PHP.eB for different cell types in the brain in a mouse model of ischemic stroke and evaluate its effectiveness in mediating basic fibroblast growth factor(bFGF)gene therapy.Mice were injected intravenously with AAV-PHP.eB either 14 days prior to(pre-stroke)or 1 day following(post-stroke)transient middle cerebral artery occlusion.Notably,we observed a shift in tropism from neurons to endothelial cells with post-stroke administration of AAV-PHP.eB-mNeonGreen(mNG).This endothelial cell tropism correlated strongly with expression of the endothelial membrane receptor lymphocyte antigen 6 family member A(Ly6A).Furthermore,AAV-PHP.eB-mediated overexpression of bFGF markedly improved neurobehavioral outcomes and promoted long-term neurogenesis and angiogenesis post-ischemic stroke.Our findings underscore the significance of considering potential tropism shifts when utilizing AAV-PHP.eB-mediated gene therapy in neurological diseases and suggest a promising new strategy for bFGF gene therapy in stroke treatment. 展开更多
关键词 AAV-PHP.eB angiogenesis basic fibroblast growth factor gene therapy ischemic stroke Ly6A neurogenesis neurological function transient middle cerebral artery occlusion TROPISM
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Preclinical safety and efficacy evaluation of the intrathecal transplantation of GMP-grade human umbilical cord mesenchymal stem cells for ischemic stroke
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作者 Zejia Huang Jiaohua Jiang +6 位作者 Qingxia Peng Mengzhi Jin Yakun Dong Xuejia Li Ermei Luo Haijia Chen Yidong Wang 《Neural Regeneration Research》 2026年第3期1172-1182,共11页
Intrathecal administration of human umbilical cord mesenchymal stem cells may be a promising approach for the treatment of stroke,but its safety,effectiveness,and mechanism remain to be elucidated.In this study,good m... Intrathecal administration of human umbilical cord mesenchymal stem cells may be a promising approach for the treatment of stroke,but its safety,effectiveness,and mechanism remain to be elucidated.In this study,good manufacturing practice-grade human umbilical cord mesenchymal stem cells(5×105 and 1×106 cells)and saline were administered by cerebellomedullary cistern injection 72 hours after stroke induced by middle cerebral artery occlusion in rats.The results showed(1)no significant difference in mortality or general conditions among the three groups.There was no abnormal differentiation or tumor formation in various organs of rats in any group.(2)Compared with saline-treated animals,those treated with human umbilical cord mesenchymal stem cells showed significant functional recovery and reduced infarct volume,with no significant differences between different human umbilical cord mesenchymal stem cell doses.(3)Human umbilical cord mesenchymal stem cells were found in the ischemic brain after 14 and 28 days of follow-up,and the number of positive cells significantly decreased over time.(4)Neuronal nuclei expression in the human umbilical cord mesenchymal stem cell group was greater than that in the saline group,while glial fibrillary acidic protein and ionized calcium binding adaptor molecule 1 expression levels decreased.(5)Human umbilical cord mesenchymal stem cell treatment increased the number of CD31+microvessels and doublecortin-positive cells after ischemic stroke.Human umbilical cord mesenchymal stem cells also upregulated the expression of CD31+/Ki67+.(6)At 14 days after intrathecal administration,brain-derived neurotrophic factor expression in the peri-infarct area and the concentrations of brain-derived neurotrophic factor in the cerebrospinal fluid in both human umbilical cord mesenchymal stem cell groups were significantly greater than those in the saline group and persisted until the 28th day.Taken together,these results indicate that the intrathecal administration of human umbilical cord mesenchymal stem cells via cerebellomedullary cistern injection is safe and effective for the treatment of ischemic stroke in rats.The mechanisms may include alleviating the local inflammatory response in the peri-infarct region,promoting neurogenesis and angiogenesis,and enhancing the production of neurotrophic factors. 展开更多
关键词 ANGIOGENESIS brain-derived neurotrophic factor efficacy human umbilical cord mesenchymal stem cells intrathecal transplantation ischemic stroke neural cell NEUROGENESIS safety
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Synergistic anti-inflammatory effect of cascade nanozymes for neural recovery in ischemic stroke
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作者 Chenchen Xie Jun Liao +10 位作者 Yi Li Yunan Zhang Zhicheng Xiao Yun Wang Ting Chen Liyan Xiong Tao Pang Xiangao Jiang Feng Zhang Chuan Zhang Tingfang Wang 《Chinese Chemical Letters》 2026年第1期450-455,共6页
Overproduction of reactive oxygen species(ROS) following ischemic injury triggers an inflammatory response,significantly impeding neurological functional recovery.Nanozymes with potent antioxidative and anti-inflammat... Overproduction of reactive oxygen species(ROS) following ischemic injury triggers an inflammatory response,significantly impeding neurological functional recovery.Nanozymes with potent antioxidative and anti-inflammatory effects thus offer great potential for ischemic stroke treatment.In this study,we developed an ischemia-homing nanozyme by combining melatonin(MT)-loaded honeycomb manganese dioxide(MnO_(2)) nanoflowers with M2-type microglia membranes to rescue the ischemic penumbra.The surface-engineered M2-type microglia membranes provided intrinsic ischemia-homing and blood-brain barrier(BBB)-crossing properties to the biomimetic nanozymes.This nanozyme can not only transforms harmfulsuperoxide anion radicals(^(·)O^(2-)) and hydrogen peroxide(H_(2)O_(2)) into harmless water and oxygen but also scavenges highly toxic hydroxyl radicals(^(·)OH),dramatically lowering intracellular ROS levels.More importantly,the biomimetic nanoparticles reduce cerebral infarct areas and provide significant neuroprotection against ischemic stroke by lowering oxidative stress,inhibiting cell apoptosis,and decreasing inflammation.This study may offer a viable approach for the use of nanozymes in treating ischemic stroke. 展开更多
关键词 ischemic stroke Nanozymes Reactive oxygen species Blood-brain barrier NEUROPROTECTION
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Interventional Room Nursing for Patients with Ischemic Stroke Treated with Tirofiban Combined with Direct Thrombectomy
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作者 Yayun Xiong 《Journal of Clinical and Nursing Research》 2026年第1期214-220,共7页
Objective:To explore the interventional room nursing and its application effects in patients with ischemic stroke treated with tirofiban combined with direct thrombectomy.Methods:A total of 61 patients with ischemic s... Objective:To explore the interventional room nursing and its application effects in patients with ischemic stroke treated with tirofiban combined with direct thrombectomy.Methods:A total of 61 patients with ischemic stroke admitted to our hospital from June 2024 to June 2025 were selected and divided into two groups using the red and blue ball method:the control group(n=30,receiving routine interventional room nursing)and the observation group(n=31,receiving additional tirofiban medication-specific nursing+individualized interventional nursing on the basis of routine nursing).The cerebral hemodynamic indicators,adverse reactions,effectiveness of complication nursing,and nursing satisfaction were compared between the two groups.Results:After 7 days of treatment,the observation group had lower cerebrovascular peripheral resistance and higher mean blood flow velocity and mean blood flow volume compared to the control group(all p<0.05).The observation group had a higher effectiveness rate of complication nursing than the control group,with a statistically significant difference(p<0.05).The nursing satisfaction in the observation group(96.77%)was higher than that in the control group(80.00%),with a statistically significant difference(χ^(2)=4.223,p=0.040<0.05).Conclusion:Tirofiban combined with direct thrombectomy can significantly improve cerebral hemodynamics,enhance the effectiveness of complication nursing,and increase patient satisfaction in patients with ischemic stroke. 展开更多
关键词 Tirofiban Direct thrombectomy ischemic stroke Interventional room nursing Nursing coordination
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