金丝桃素
缝隙连接
卡宾诺酮
连接蛋白
抗抑郁药
神经科学
贯叶连翘
医学
药理学
细胞内
生物
细胞生物学
海马体
作者
Huiqin Wang,Xueying Yang,Huaqing Lai,Yang Sun,Yan Xu,Qidi Ai,Meiyu Lin,Songwei Yang,Yantao Yang,Shifeng Chu,Zhenzhen Wang,Nai‐Hong Chen
标识
DOI:10.1016/j.biopha.2023.115545
摘要
Hypericin is widely utilized for its precise antidepressant properties, but its exact antidepressant mechanism remains unclear. Gap junctions, which were predominantly expressed in astrocytes in the central nervous system, are concerned with the pathogenesis of depression. However, the role of hypericin in gap junctional dysfunction in depression has rarely been investigated. Here, we found that gap junctions were ultra-structurally broadened in the chronic unpredictable stress (CUS) rat model of depression, while hypericin repaired the dysfunction of gap junctions. Suppression of gap junctions by bilateral injection of carbenoxolone (CBX) in the prefrontal cortex of rats significantly inhibited the restoration of gap junctional dysfunction in depression by hypericin. Meanwhile, hypericin failed to show antidepressant benefits. Furthermore, in corticosterone (CORT)-stimulated primary astrocytes derived from neonatal rats, hypericin dramatically reversed the phosphorylation of connexin 43 (Cx43), normalizing the expression of Cx43 and thereby ameliorating gap junctional dysfunction. Comparatively, CBX inhibited the remission of hypericin on gap junctional intercellular communication function. Gap junctional function might be a novel therapeutic target for hypericin in the treatment of depression and provide potential novel insights into the antidepressant mechanism of other herbal ingredients.
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