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Total Flavone of Rhododendron Improves Cerebral Ischemia Injury by Activating Vascular TRPV4 to Induce Endothelium-Derived Hyperpolarizing Factor-Mediated Responses

机译:通过激活血管TRPV4来提高脑缺血损伤来提高脑缺血损伤,以诱导内皮衍生的超极化因子介导的反应

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摘要

Background. Total flavonoids of Rhododendron (TFR) is extracted from Rhododendron, a herbal medicine widely used in China. The main components are flavone compounds such as warfarin, rutin, quercetin, and hyperoside. We investigated the role of TRPV4 channel in the TFR induced endothelium-dependent hyperpolarizing factor- (EDHF-) mediated responses against ischemia/reperfusion injury (IR) in cerebral IR (CIR) rats. Methods. The morphological changes of cerebral cortex, the relaxation of cerebral basal artery (CBA), and cell membrane potential recording were studied in CIR rats. The outward potassium current in smooth muscle cell was recorded by whole-cell patch clamp recording. The protein expression of TRPV4, SKca, and IKca was determined. Confocal laser was used to measure the Ca2+ fluorescence intensity. Results. After treatment with TFR, the number of pyramidal cells in brain tissue increased and the number of empty or lightly stained cells decreased and these effects were eliminated by using HC-067047, Apamin, or TRAM-34. TFR induced and EDHF-mediated dilatation and hyperpolarization in CBA were also attenuated by using these inhibitors. The increased outward current density elicited by TFR in acutely isolated CBA smooth muscle cells was abolished by using TRAM-34 and Apamin. TFR upregulated the protein expression of TRPV4, SKca, and IKca that was also eliminated by these inhibitors. Laser scanning showed that the increased mean fluorescence intensity of Ca2+ by CIR was decreased by using TFR and that this effect was again eliminated by the above inhibitors. Conclusions. We conclude that in the CBA of the CIR rats the protective effect of TFR on ischemic cerebrovascular injury may be related to the activation of the TRPV4 in both endothelium and smooth muscle by increasing its expression and activity. The activation of TRPV4 channel in the endothelium may be linked to the opening of endothelial IKca/SKca channels that induces EDHF-mediated relaxation and hyperpolarization in the smooth muscle cell. In addition, the activation of TRPV4 in the smooth muscle cell in CBA may be linked with the activation of BKCa channel through a TRPV4-dependent pathway, reduce Ca2+ concentration in the cell, and relaxes the vessel. These findings may form a new therapeutic target for protection of ischemic brain injury and facilitate the use of Chinese medicine in brain protection.
机译:背景。杜鹃花(TFR)的总异味是从杜鹃花,其在中国广泛使用的草药中提取。主要成分是黄酮化合物,如华法林,芦丁,槲皮素和高血清素。我们研究了TRPV4通道在TFR诱导的内皮依赖性超极化因子 - (EDHF-)介导的反应脑IR(CIR)大鼠中的缺血/再灌注损伤(IR)的介导的反应的作用。方法。在CIR大鼠中研究了脑皮层的形态变化,脑基部动脉(CBA)和细胞膜电位记录。通过全细胞贴片钳录制记录平滑肌细胞中的向外钾电流。确定TRPV4,SKCA和IKCA的蛋白质表达。共聚焦激光用于测量CA2 +荧光强度。结果。在用TFR治疗后,脑组织中的锥体细胞的数量增加,并且通过使用HC-067047,APAMIN或TRAM-34消除了空或轻微染色的细胞的数量,并且这些效果消除了这些效果。通过使用这些抑制剂也衰减了CBA中的TFR诱导和EDHF介导的扩张和超极化。通过使用Tram-34和Apamin,通过TFR在急性分离的CBA平滑肌细胞中引起的推动的向外电流密度增加。 TFR上调了TRPV4,SKCA和IKCA的蛋白质表达,这些抑制剂也消除了这些抑制剂。激光扫描表明,通过使用TFR降低Ca2 +的平均荧光强度,并且通过上述抑制剂再次消除这种效果。结论。我们得出结论,在CIR大鼠的CBA中,TFR对缺血性脑血管损伤的保护作用可能通过增加其表达和活性来与内皮和平滑肌中TRPV4的激活有关。内皮中TRPV4通道的激活可以与内皮IKCA / SKCA通道的开口连接,所述内皮IKCA / SKCA通道的开口诱导EDHF介导的弛豫和平滑肌细胞中的超极化。另外,CBA中平滑肌细胞中的TRPV4的活化可以通过TRPV4依赖性途径与BKCA通道的激活连接,降低细胞中的CA2 +浓度,并放松容器。这些发现可以形成一种保护缺血性脑损伤的新治疗靶标,并促进中药在脑保护中的使用。

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