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首页> 外文期刊>European Journal of Pharmacology: An International Journal >Daidzein relaxes rat cerebral basilar artery via activation of large-conductance Ca2+-activated K+ channels in vascular smooth muscle cells.
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Daidzein relaxes rat cerebral basilar artery via activation of large-conductance Ca2+-activated K+ channels in vascular smooth muscle cells.

机译:大豆苷元通过激活血管平滑肌细胞中大电导的Ca2 +激活的K +通道来松弛大鼠脑基底动脉。

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摘要

Daidzein, a phytoestrogen, has been reported to produce vasodilation via inhibition of Ca(2+) inflow. However, the involvement of large-conductance Ca(2+)-activated K(+) (BK(Ca)) channels in the effect of daidzein is debated. Therefore, the present study was designed to investigate the effect of daidzein on the rat cerebral basilar artery and the underlying molecular mechanisms. Isolated cerebral basilar artery rings and single vascular smooth muscle cells (VSMCs) were used for vascular reactivity and electrophysiology measurements, to investigate the effect of daidzein on BK(Ca) channels in cerebral basilar artery smooth muscle. In addition, the human BK(Ca) channel alpha-subunit gene (hslo) was transfected into HEK293 cells, to directly assess whether daidzein activates BK(Ca) channels. The results showed that daidzein produced a concentration-dependent but endothelium-independent relaxation in rat cerebral basilar arteries. Paxilline, a selective BK(Ca) channel blocker, significantly inhibited the daidzein-induced vasodilation, whereas NS1619, a selective BK(Ca) channel opener, enhanced the vasodilation. In the whole-cell configuration, daidzein increased noisy oscillation currents in cerebral basilar artery VSMCs in a concentration-dependent manner, and washout of daidzein or blockade of BK(Ca) channels with paxilline fully reversed the increase. However, daidzein did not substantially affect hSlo currents in HEK293 cells when applied to the outside of the cell membrane. In conclusion, these results indicate that the activation of BK(Ca) channels in VSMCs at least partly contributes to the daidzein-induced vasodilation of the rat cerebral basilar artery. The beta1-subunit of BK(Ca) channels plays a critical role in the activation of BK(Ca) currents by daidzein.
机译:大豆黄酮,一种植物雌激素,据报道可通过抑制Ca(2+)流入而产生血管舒张作用。但是,涉及大电导Ca(2+)激活K(+)(BK(Ca))通道在大豆苷元的影响。因此,本研究旨在研究大豆苷元对大鼠脑基底动脉的作用及其潜在的分子机制。使用离体的脑基底动脉环和单个血管平滑肌细胞(VSMC)进行血管反应性和电生理测量,以研究大豆苷元对脑基底动脉平滑肌BK(Ca)通道的影响。此外,将人类BK(Ca)通道α-亚基基因(hslo)转染到HEK293细胞中,以直接评估大豆苷元是否激活BK(Ca)通道。结果表明,大豆苷元在大鼠脑基底动脉中产生浓度依赖性但内皮依赖性的舒张作用。选择性的BK(Ca)通道阻滞剂Paxilline显着抑制了大豆苷元诱导的血管舒张,而选择性的BK(Ca)通道开放剂NS1619增强了血管舒张。在全细胞配置中,黄豆苷元以浓度依赖的方式增加了脑基底动脉VSMCs的噪声振荡电流,黄豆苷元的冲洗或用Paxilline阻断BK(Ca)通道完全逆转了这种增加。然而,当将黄豆苷元应用于细胞膜的外部时,基本上不影响HEK293细胞中的hSlo电流。总之,这些结果表明,VSMC中BK(Ca)通道的激活至少部分有助于黄豆苷元诱导的大鼠脑基底动脉的血管舒张。 BK(Ca)通道的beta1亚基在大豆苷元激活BK(Ca)电流中起关键作用。

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