4.2 Article

Gastrodin causes vasodilation by activating K-ATP channels in vascular smooth muscles via PKA-dependent signaling pathway

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出版社

TAYLOR & FRANCIS LTD
DOI: 10.1080/10799893.2017.1369118

关键词

Gastrodin; mesenteric artery; vasorelaxation; PKA-KATP-signaling pathway

资金

  1. Central Laboratory of Harbin Medical University-Daqing
  2. National Natural Science Foundation of China [81300036]
  3. Seed Fund Project of Harbin Medical University-Daqing [DQ2014-05]

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Gastrodin, one of the major components extracted from the Chinese herb Gastrodia elata Bl., has been widely used as an anticonvulsant, sedative, analgesic and hypotensive. In our study, we aimed to investigate the effects and possible mechanisms of gastrodin on vascular K-ATP channels. Tension experiments were used on rat mesenteric artery rings without an endothelium. Patch clamp experiments were executed to investigate the influences of gastrodin on the membrane current in mesenteric artery smooth muscle cells. Gastrodin induced vasorelaxation in a concentration dependent manner when rat mesenteric artery rings were pre-contracted with Phenylephrine. The vasorelaxation effect was partially diminished by pre-treating with a K-ATP channel inhibitor, or a PKA inhibitor. With whole-cell patch-clamp recording techniques, we found that gastrodin is a activator of K-ATP in rat mesenteric artery smooth muscle cells, and this effect was eliminate by pre-treating with H89or PKI, PKA inhibitor. In addition, when rat vascular smooth muscle cells were treated with 100M gastrodin for 24h, maximum K-ATP current density increased by 28.1%. The results indicate that gastrodin exerts vasorelaxation effect through activation of PKA and subsequent opening of smooth muscle K-ATP channels.

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