{"title":"Tianma Gouteng decoction-derived nanoparticles ameliorate blood-brain barrier permeability after ischemic stroke via regulating lncRNA OIP5-AS1 and S1PR1/ERK/MEK signaling axis","authors":"Lu-an Weng, Luojun Zheng, Dengke Meng, Xin Zhang, Diwen Shou","doi":"10.1177/14703203251386327","DOIUrl":null,"url":null,"abstract":"Background Increasing evidence suggests that herbal-derived exosome-like nanoparticles (ELNs) can easily cross biological barriers such as the blood-brain barrier (BBB). However, current understanding of ELNs application in ischemic stroke therapy is still in its infancy. Method We extracted nanoparticles (TGD-NPs) from Tianma Gouteng decoction (TGD) and characterized their morphology and main active compounds. Subsequently, the potential and functional mechanism of TGD-NPs in maintaining the integrity of the BBB were evaluated in middle cerebral artery occlusion (MCAO)-induced ischemic stroke model and oxygen-glucose deprivation/reperfusion (OGD/R)-stimulated cell model. Result We successfully extracted NPs, which retains the main bioactive compounds of TGD: baicalin, emodin, gastrodin, and stachydrine. Functional studies indicated that in mouse MCAO model, TGD-NPs intervention was more effective than TGD preparations in maintaining the integrity of the BBB, reducing the infarct area, and improving the neurological function. Meanwhile, TGD-NPs treatment attenuated the decrease in cell viability caused by OGD/R, and it significantly enhanced expression of tight junction proteins (Occludin and ZO-1). Mechanistic exploration revealed that TGD-NPs markedly upregulated lncRNA OIP5-AS1 expression, and its beneficial effect was attributed to the activation of the S1PR1-ERK1/2-MEK1/2 signaling axis. Conclusion TGD-NPs are positive in maintaining BBB integrity and neurological function after ischemic stroke.","PeriodicalId":17330,"journal":{"name":"Journal of the Renin-Angiotensin-Aldosterone System","volume":"26 1","pages":""},"PeriodicalIF":10.6000,"publicationDate":"2025-07-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"2","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Journal of the Renin-Angiotensin-Aldosterone System","FirstCategoryId":"0","ListUrlMain":"https://doi.org/10.1177/14703203251386327","RegionNum":4,"RegionCategory":"医学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q3","JCRName":"PERIPHERAL VASCULAR DISEASE","Score":null,"Total":0}
引用次数: 2
Abstract
Background Increasing evidence suggests that herbal-derived exosome-like nanoparticles (ELNs) can easily cross biological barriers such as the blood-brain barrier (BBB). However, current understanding of ELNs application in ischemic stroke therapy is still in its infancy. Method We extracted nanoparticles (TGD-NPs) from Tianma Gouteng decoction (TGD) and characterized their morphology and main active compounds. Subsequently, the potential and functional mechanism of TGD-NPs in maintaining the integrity of the BBB were evaluated in middle cerebral artery occlusion (MCAO)-induced ischemic stroke model and oxygen-glucose deprivation/reperfusion (OGD/R)-stimulated cell model. Result We successfully extracted NPs, which retains the main bioactive compounds of TGD: baicalin, emodin, gastrodin, and stachydrine. Functional studies indicated that in mouse MCAO model, TGD-NPs intervention was more effective than TGD preparations in maintaining the integrity of the BBB, reducing the infarct area, and improving the neurological function. Meanwhile, TGD-NPs treatment attenuated the decrease in cell viability caused by OGD/R, and it significantly enhanced expression of tight junction proteins (Occludin and ZO-1). Mechanistic exploration revealed that TGD-NPs markedly upregulated lncRNA OIP5-AS1 expression, and its beneficial effect was attributed to the activation of the S1PR1-ERK1/2-MEK1/2 signaling axis. Conclusion TGD-NPs are positive in maintaining BBB integrity and neurological function after ischemic stroke.
期刊介绍:
JRAAS is a peer-reviewed, open access journal, serving as a resource for biomedical professionals, primarily with an active interest in the renin-angiotensin-aldosterone system in humans and other mammals. It publishes original research and reviews on the normal and abnormal function of this system and its pharmacology and therapeutics, mostly in a cardiovascular context but including research in all areas where this system is present, including the brain, lungs and gastro-intestinal tract.