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首页> 外文期刊>Chinese Medical Journal >Effect of mitochondrial K_(ATP) channel on voltage-gated K~+ channel in 24 hour-hypoxic human pulmonary artery smooth muscle cells
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Effect of mitochondrial K_(ATP) channel on voltage-gated K~+ channel in 24 hour-hypoxic human pulmonary artery smooth muscle cells

机译:线粒体K_(ATP)通道对缺氧24小时人肺动脉平滑肌细胞电压门控K〜+通道的影响

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Background Hypoxic pulmonary hypertension (HPH) is initiated by inhibition of O_2-sensitive, voltage-gated (Kv) channels in pulmonary arterial smooth muscle cells (PASMCs). The mechanism of hypoxic pulmonary hypertension has not yet been fully elucidated. The mitochondrial ATP-sensitive K~+ channel ( MitoK_(ATP) ) is extremely sensitive to hypoxia, and is a decisive factor in the control of mitochondrial membrane potential ( ΔΨ_m) . This study investigated the changes of cell membrane potential and Kv channel in cultured human pulmonary artery smooth muscle cell ( hPASMC ) exposed to 24 hour-hypoxia , and explored the role of MitoK_(ATP) and ΔΨ_m in this condition. Methods Fresh human lung tissues were obtained from the patients undergoing a chest operation. hPASMCs were isolated, cultured, and divided into 6 groups: ① control group, cultured under normoxia; ② diazoxide group, cultured in normoxia with diazoxide, an opener of MitoK_(ATP); ③ 5-HD group, cultured in normoxia with sodium 5-hydroxydecanoate (5-HD), an antagonist of MitoK_(ATP); ④ 24 hour-hypoxia group; ⑤ 24 hour-hypoxia + diazoxide group; and ⑥ 24 hour-hypoxia + 5HD group. Whole-cell patch-clamp technique was used to trace the cell membrane K~+ currents. The expressions of cell membrane Kv1.5 mRNA and protein were determined by RT-PCR and Western blot technique, respectively. The relative changes in mitochondrial potential were tested with rhodamine fluorescence (R-123) technique. Results After exposure to diazoxide for 24 hours, the intensity of R-123 fluorescence in normoxic hPASMCs was significantly increased compared with control group ( P < 0.05 ) , but there were no significant changes in these tests after the hPASMCs had been exposed to 5-HD for 24 hours. Twenty-four hour-hypoxia or 24 hour-hypoxia + diazoxide could markedly increase the intensity of R-123 fluorescence in hPASMC and the changes were more significant in 24 hour-hypoxia + diazoxide group than in 24 hour-hypoxia group ( P < 0.05 ) although 5-HD could partly weaken the effect of 24 hour-hypoxia on the intensity of R-123 fluorescence. After exposure to diazoxide for 24 hours, the cell membrane K~+ currents and the expression of cell membrane Kvl. 5 mRNA and protein in normoxic hPASMCs were significantly decreased compared with control group ( P < 0.05 ) , but there were no significant changes in these tests after the hPASMCs had been exposed to 5-HD for 24 hours. Also, 24 hour-hypoxia or 24 hour-hypoxia + diazoxide decreased the cell membrane K~+ currents and the expression of Kv1.5 mRNA and protein (P < 0.05) but the changes were more significant in 24 hour-hypoxia + diazoxide group than in 24 hour-hypoxia group ( P < 0.05 ). Again, 5-HD could partly weaken the inhibitory effect of 24 hour-hypoxia on the cell membrane K~+ currents and the expression of Kv1.5 mRNA or protein (P < 0.05). Conclusions The opening of MitoK_(ATP) followed by a depolarization of ΔΨ_m in hypoxia might contribute to the alterations in the expression of cell membrane Kv1.5 mRNA and protein leading to change in the cell membrane potential of hypoxic hPASMCs. This might be a mechanism of the development of hypoxic pulmonary hypertension.
机译:背景低氧性肺动脉高压(HPH)是由抑制肺动脉平滑肌细胞(PASMC)中的O_2敏感,电压门控(Kv)通道引发的。缺氧性肺动脉高压的机制尚未完全阐明。线粒体ATP敏感的K〜+通道(MitoK_(ATP))对缺氧极为敏感,并且是控制线粒体膜电位(ΔΨ_m)的决定性因素。本研究调查了缺氧24小时的人肺动脉平滑肌细胞(hPASMC)细胞膜电位和Kv通道的变化,并探讨了在这种情况下MitoK_(ATP)和ΔΨ_m的作用。方法从胸部手术患者中获取新鲜的人肺组织。分离,培养hPASMC,分为6组:①对照组,在常氧下培养; ②重氮基团,在常氧条件下用二氮嗪(MitoK_(ATP)的开放剂)培养; ③5-HD组,在常氧下用MitoK_(ATP)拮抗剂5-羟基癸酸钠(5-HD)培养; ④24小时缺氧组; ⑤24小时缺氧+二氮嗪组; ⑥24小时缺氧+ 5HD组。采用全细胞膜片钳技术追踪细胞膜K〜+电流。分别通过RT-PCR和Western blot技术检测细胞膜Kv1.5 mRNA和蛋白的表达。用若丹明荧光(R-123)技术测试线粒体电位的相对变化。结果暴露于二氮嗪24小时后,常氧hPASMCs中R-123荧光强度比对照组显着增加(P <0.05),但是当hPASMCs暴露于5-羟色胺后,这些测试无明显变化。高清播放24小时。 24小时低氧或24小时低氧+二氮嗪可显着增加hPASMC中R-123荧光强度,且24小时低氧+二氮嗪组的变化比24小时低氧组更显着(P <0.05 )尽管5-HD可能部分削弱24小时缺氧对R-123荧光强度的影响。暴露于二氮嗪24小时后,细胞膜K〜+电流和细胞膜Kvl的表达。与正常对照组相比,常氧hPASMCs中5个mRNA和蛋白均显着降低(P <0.05),但是在将hPASMCs暴露于5-HD 24小时后,这些测试无明显变化。此外,低氧24小时或低氧24小时+重氮降低了细胞膜K〜+电流,降低了Kv1.5 mRNA和蛋白质的表达(P <0.05),但低氧24小时+重氮组的变化更为显着。低于低氧24小时组(P <0.05)。同样,5-HD可以部分减弱24小时缺氧对细胞膜K〜+电流和Kv1.5 mRNA或蛋白质表达的抑制作用(P <0.05)。结论在缺氧状态下,MitoK_(ATP)的打开以及ΔΨ_m的去极化可能会导致细胞膜Kv1.5 mRNA和蛋白表达的改变,从而导致缺氧hPASMCs的细胞膜电位发生变化。这可能是低氧性肺动脉高压发展的机制。

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