卡宾诺酮
连接蛋白
抗抑郁药
缝隙连接
药理学
皮质酮
体内
人参皂苷Rg1
前额叶皮质
化学
体外
神经科学
内分泌学
内科学
医学
生物
人参皂甙
海马体
生物化学
病理
人参
细胞内
生物技术
认知
替代医学
激素
作者
Cong‐Yuan Xia,Zhen‐Zhen Wang,Huiqin Wang,Siyu Ren,Yuxia Lou,Can Jin,Tiange Qu,Sitong Feng,Yi Zhang,Shifeng Chu,Nai‐Hong Chen
标识
DOI:10.1016/j.neuropharm.2020.108041
摘要
Our previous studies have shown that ginsenoside Rg1 (Rg1) exerts antidepressant-like effects in animal models of depression, accompanied by an improvement of astrocytic gap junction functions. However, whether connexin 43 (Cx43), the major connexin forming gap junctions between astrocytes, is the key regulator of Rg1-induced antidepressant-like effects is still unknown. In this study, we examine in vitro and in vivo the involvement of Cx43 in the antidepressant effects of Rg1. Corticosterone was used to establish an in vitro rat model of depression. Treatment with Rg1 1 h prior to corticosterone significantly improved the cell viability of astrocytes, which was significantly inhibited by carbenoxolone, a widely used gap junction inhibitor. Moreover, Rg1 treatment significantly ameliorated antidepressant-sensitive behaviours induced by infusion of carbenoxolone or Gap26, a selective inhibitor of Cx43, into the prefrontal cortex of the animals. Rg1 treatment increased the expression of Cx43 compared with Gap26 group. According to these results, the antidepressant-like effects of Rg1 were mainly mediated by Cx43-formed gap junctions.
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