...
首页> 外文期刊>Journal of Thoracic Disease >Acute hypoxia activates store-operated Ca 2+ entry and increases intracellular Ca 2+ concentration in rat distal pulmonary venous smooth muscle cells
【24h】

Acute hypoxia activates store-operated Ca 2+ entry and increases intracellular Ca 2+ concentration in rat distal pulmonary venous smooth muscle cells

机译:急性缺氧激活大鼠远端肺静脉平滑肌细胞中的钙操纵性Ca 2+进入并增加细胞内Ca 2+浓度

获取原文
           

摘要

Rationale: Exposure to acute hypoxia causes vasoconstriction in both pulmonary arteries (PA) and pulmonary veins (PV). The mechanisms on the arterial side have been studied extensively. However, bare attention has been paid to the venous side. Objectives: To investigate if acute hypoxia caused the increase of intracellular Ca 2+ concentration ([Ca 2+ ] i ), and Ca 2+ influx through store-operated calcium channels (SOCC) in pulmonary venous smooth muscle cells (PVSMCs). Methods: Fluorescent microscopy and fura-2 were used to measure effects of 4% O2 on [Ca 2+ ] i and store-operated Ca 2+ entry (SOCE) in isolated rat distal PVSMCs. Measurements and main results: In PVSMCs perfused with Ca 2+ -free Krebs Ringer bicarbonate solution (KRBS) containing cyclopiazonic acid to deplete Ca 2+ stores in the sarcoplasmic reticulum (SR) and nifedipine to prevent Ca 2+ entry through L-type voltage-depended Ca 2+ channels (VDCC), hypoxia markedly enhanced both the increase in [Ca 2+ ] i caused by restoration of extracellular [Ca 2+ ] and the rate at which extracellular Mn2+ quenched fura-2 fluorescence. Moreover, the increased [Ca 2+ ] i in PVSMCs perfused with normal salt solution was completely blocked by SOCC antagonists SKF-96365 and NiCl2 at concentrations that SOCE >85% was inhibited but [Ca 2+ ] i responses to 60 mM KCl were not altered. On the contrary, L-type VDCC antagonist nifedipine inhibited increase in [Ca 2+ ] i to hypoxia by only 50% at concentrations that completely blocked responses to KCl. The increased [Ca 2+ ] i caused by hypoxia was completely abolished by perfusion with Ca 2+ -free KRBS. Conclusions: These results suggest that acute hypoxia enhances SOCE via activating SOCCs, leading to increased [Ca 2+ ] i in distal PVSMCs.
机译:理由:暴露于急性缺氧会导致肺动脉(PA)和肺静脉(PV)的血管收缩。动脉侧的机制已被广泛研究。但是,对静脉侧几乎没有注意。目的:探讨急性低氧是否引起肺静脉平滑肌细胞(PVSMC)中细胞内Ca 2+浓度([Ca 2+] i)的增加和Ca 2+通过贮存操纵性钙通道(SOCC)的流入。方法:采用荧光显微镜和fura-2检测4%O2对离体大鼠远端PVSMCs中[Ca 2+] i和存储操作性Ca 2+进入(SOCE)的影响。测量和主要结果:在PVSMC中灌注不含Ca 2+的Krebs Ringer碳酸氢盐溶液(KRBS),该溶液包含环吡唑酸以耗尽肌浆网(SR)和硝苯地平中的Ca 2+储存,以防止Ca 2+通过L型电压进入。依赖的Ca 2+通道(VDCC),缺氧显着增强了由细胞外[Ca 2+]恢复引起的[Ca 2+] i的增加以及细胞外Mn2 +淬灭fura-2荧光的速率。此外,SOCC拮抗剂SKF-96365和NiCl2可以在SOCE> 85%的浓度被完全抑制,但对60 mM KCl的[Ca 2+] i响应却被SOCC拮抗剂SKF-96365和NiCl2完全阻断了灌注了正常盐溶液的PVSMC中[Ca 2+] i的增加。没有改变。相反,在完全阻断对KCl反应的浓度下,L型VDCC拮抗剂硝苯地平抑制[Ca 2+] i对缺氧的增加仅50%。缺氧引起的[Ca 2+] i的增加,可以通过无Ca 2+的KRBS灌注而完全消除。结论:这些结果表明,急性低氧通过激活SOCCs增强SOCE,导致远端PVSMC中[Ca 2+] i升高。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号