Luteolin Improves BBB Integrity Following Ischemic Stroke Injury by Downregulating the Expression of LRP1 and MMP9

神经保护 埃文斯蓝 药理学 木犀草素 标记法 细胞凋亡 缺血 医学 神经科学 冲程(发动机) 莫里斯水上航行任务 脑缺血 化学 血脑屏障 再灌注损伤 流式细胞术 水通道蛋白4 缺血预处理 生物 麻醉 小发夹RNA
作者
Jin Li,Jiao‐yan Yu,Ting Sun,Ming‐lei Fan,Qing‐Qing Liu,Xi Lei Li,Ya‐ya Du,Meng‐jia Zhang,Bin Wang,Qi Yang
出处
期刊:Phytotherapy Research [Wiley]
卷期号:40 (8): 4898-4912 被引量:1
标识
DOI:10.1002/ptr.70121
摘要

Ischemic stroke is a prevalent neurological disorder often resulting in brain tissue injury and blood-brain barrier (BBB) damage. Luteolin (LUT), a natural polyphenolic compound in grape skin, wine, and other plants, has neuroprotective properties against ischemic stroke. However, it remains unclear whether its protective effect involves alterations in BBB integrity. This study aimed to examine the BBB-protective impact of LUT in a photothrombotic (PT) mouse model and oxygen-glucose deprivation (OGD) cell model and investigate its underlying mechanism. First, we used neurofunctional scoring, 2,3,5-triphenyltetrazolium chloride staining, Nissl staining, and terminal deoxynucleotidyl transferase dUTP nick end labeling (TUNEL) to evaluate the neuroprotective effects of LUT in ischemic stroke. Furthermore, we assessed the impact of LUT on BBB permeability using Evans Blue staining, brain water content, transendothelial electrical resistance, FITC, and flow cytometry techniques. We also examined the expression of tight junction (TJ) proteins related to BBB integrity using Western blotting. Finally, we validated the potential mechanism of action of LUT using short hairpin RNA (shRNA) technology. LUT alleviated the cerebral infarct area and neuronal apoptosis in the PT mouse model, reduced brain water content and Evans Blue leakage, decreased bEnd.3 cell apoptosis in the OGD model, increased transmembrane resistance, and reduced FITC leakage. LUT also counteracted the degradation of TJ proteins and decreased the expression of MMP9. Furthermore, the improvement was weakened when LRP1 was interfered with using shRNA. Our study suggests that LUT has the potential to improve BBB damage and exert neuroprotective effects following ischemic stroke. The mechanism of action may involve the inhibition of LRP1 and subsequent reduction in MMP9 expression.
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