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The sonic hedgehog pathway mediates Tongxinluo capsule-induced protection against blood-brain barrier disruption after ischaemic stroke in mice

机译:Sonic Hedgehog途径介导通新络胶囊诱导的小鼠缺血性卒中后血脑屏障中断的保护

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Tongxinluo capsule (TXL), a Chinese prescription, has been extensively used for treating ischaemic cerebrovascular diseases in China. Studies have demonstrated that TXL protects the blood-brain barrier (BBB) after cerebral ischaemia. However, the underlying protective mechanisms are not fully elucidated. Enlightened by the critical role of sonic hedgehog (Shh) pathway in promoting BBB integrity through up-regulating tight junction (TJ) proteins, we examined whether the Shh pathway could mediate TXL-induced up-regulation of TJ proteins and subsequent protection against BBB disruption after stroke. Ischaemic stroke was induced in adult male C57BL/6J mice by permanent middle cerebral artery occlusion (pMCAO). The mice were orally administered TXL (3.0 g/kg) at 1, 3 and 21 hours after stroke. Meanwhile, cyclopamine, a specific Shh pathway inhibitor, was intraperitoneally injected at 1 and 21 hours after stroke. The following parameters were measured at 6 and 24 hours after pMCAO: BBB permeability; TJ proteins including occludin, claudin-5 and zonula occludens-1 (ZO-1); and Shh signalling molecules such as Shh, Patched, Smoothened (Smo) and Gli-1. Our results showed that TXL protected against BBB disruption at 6 and 24 hours after pMCAO, and cyclopamine partly reversed the protective effect of TXL on BBB. Meanwhile, cyclopamine blocked the effect of TXL-up-regulated expression of occludin, claudin-5 and ZO-1. Moreover, TXL up-regulated the expression of Shh derived from astrocytes, Patched, Smo and Gli-1, and thus activated the Shh pathway. And cyclopamine inhibited TXL-induced activation of the Shh pathway. Thus, our study demonstrates that the Shh pathway mediates TXL-induced protection against BBB disruption after ischaemic stroke.
机译:中国处方的通链络胶囊(TXL)广泛用于治疗中国缺血性脑血管疾病。研究表明,TX1保护脑缺血后血脑屏障(BBB)。然而,潜在的保护机制没有完全阐明。由Sonic Hedgehog(SHH)途径通过Up-Consemating紧密接线(TJ)蛋白来推广BBB完整性的关键作用,我们检查了SHH途径是否可以介导TXL诱导的TJ蛋白的上调和随后对BBB中断的保护中风后。通过永久性脑动脉闭塞(PMCAO)在成年雄性C57BL / 6J小鼠中诱导缺血性脑卒中。在中风后1,3和21小时口服TX1(3.0g / kg)的小鼠。同时,卒中后1和21小时,Cyclopamine腹膜内注射腹膜内注射。在PMCAO后6和24小时测量以下参数:BBB渗透率; TJ蛋白,包括Occludin,Claudin-5和Zonula Occludens-1(ZO-1);和SHH信号传导分子,如SHH,修补,平滑(SMO)和GLI-1。我们的研究结果表明,PMCAO后6和24小时的TXL免受BBB破坏,环丙氨部分部分地逆转了TXL对BBB的保护作用。同时,环丙氨酸阻断了TXL-上调表达occludin,Claudin-5和ZO-1的影响。此外,TX1上调SHH衍生的SHH的表达,浸没,SMO和GLI-1,因此活化了SHH途径。环丙氨酸抑制TXL诱导的SHH途径的活化。因此,我们的研究表明,在缺血性卒中后,SHH途径介导TXL诱导的免受BBB破坏的保护。

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