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Published on: June 7, 2022
Oroxylin A Attenuates Homocysteine-Induced Blood-Brain Barrier (BBB) Dysfunction by Reducing Endothelial Permeability
Yilu Bao1, Baiyang Sheng2, Ping Lv2
1Department of Culinary, Shunde Polytechic, No.1 Desheng East Road, Daliang, Shunde District, Foshan City, Guangdong Province 528300, China.
Insights
Oroxylin A (OA) protects the blood-brain barrier (BBB) from homocysteine (Hcy) damage by activating the CREB/Claudin-5 pathway. This finding suggests OA
Area of Science:
- Neuroscience
- Pharmacology
- Biochemistry
Background:
- Elevated homocysteine (Hcy) levels are linked to blood-brain barrier (BBB) dysfunction in neurological diseases.
- Oroxylin A (OA), a flavonoid, influences brain functions, but its role in Hcy-related BBB issues is unclear.
Purpose of the Study:
- To investigate the role and molecular mechanism of Oroxylin A (OA) in homocysteine (Hcy)-induced blood-brain barrier (BBB) dysfunction.
Main Methods:
- In vivo studies in Hcy-challenged mice and in vitro experiments using bEnd.3 brain microvascular endothelial cells.
- Assessed tight junction protein Claudin-5 expression, endothelial permeability, and trans-endothelial electrical resistance (TEER).
- Investigated the involvement of the CREB/Claudin-5 signaling pathway and the PKA/CREB inhibitor H89.
Main Results:
- Hcy challenge decreased Claudin-5 expression and increased BBB permeability in vivo and in vitro.
- OA administration reversed these Hcy-induced effects, restoring Claudin-5 levels and barrier integrity.
- OA treatment reactivated CREB phosphorylation, and this effect was blocked by the PKA/CREB inhibitor H89.
Conclusions:
- Oroxylin A (OA) protects against Hcy-induced BBB dysfunction by preserving endothelial barrier integrity.
- The protective mechanism involves the activation of the CREB/Claudin-5 signaling pathway.
- OA shows potential therapeutic value for neurological disorders associated with BBB dysfunction.
Abstract:
Recent reports have indicated that elevated levels of homocysteine (Hcy) are closely linked to blood-brain barrier (BBB) dysfunction in neurological disorders. Oroxylin A (OA) is a key bioactive flavonoid that has been reported to regulate brain functions. However, the role of OA in Hcy-related BBB dysfunction is less reported. In this study, we aimed to elucidate the role and molecular mechanism of OA in Hcy-mediated BBB dysfunction using both in vivo and in vitro investigations. Our findings indicate that the expression of the tight junction (TJ) protein Claudin-5 declined, and the diffusion of sodium fluorescein elevated in brains of Hcy-challenged mice. These effects were notably rescued by administration of OA. In Hcy-challenged bEnd.3 brain microvascular endothelial cells, increased endothelial permeability, reduced trans-endothelial electrical resistance (TEER), and downregulated Claudin-5 were observed. These effects were significantly reversed by 25 and 50 μM OA. Interestingly, OA treatment restored the dephosphorylation of CREB at Ser133 induced by Hcy. However, the addition of the protein kinase A/cAMP-response element binding protein (PKA/CREB) inhibitor H89 counteracted the protective effects of OA on inhibiting endothelial permeability and promoting Claudin-5 expression. Together, we demonstrate that OA protects against Hcy-induced BBB dysfunction by maintaining the integrity of endothelial barriers. This protective effect is achieved through the activation of the CREB/Claudin-5 signaling pathway, highlighting the potential therapeutic value of OA in addressing BBB-related neurological disorders.
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