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首页> 外文期刊>American Journal of Physiology >Ion exchange activity in pulmonary artery smooth muscle cells: the response to hypoxia.
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Ion exchange activity in pulmonary artery smooth muscle cells: the response to hypoxia.

机译:肺动脉平滑肌细胞的离子交换活性:对缺氧的反应。

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摘要

The purposes of this study were to determine 1) the presence of the major ion transport activities that regulate cytoplasmic pH (pH(c)) in cat pulmonary artery smooth muscle cells, i.e., Na+/H+ and the Na+-dependent and -independent Cl-/HCO3- exchange, 2) whether pH(c) changes in cells from small (SPAs) and large (LPAs) pulmonary arteries during hypoxia, and 3) whether changes in pH(c) are due to changes in the balance of exchange activities. Exchange activities as defined by physiological maneuvers rather than molecular identity were ascertained with fluorescence microscopy to document changes in the ratio of the pH(c) indicator 2',7'-bis-(2-carboxyethyl)-5-(and-6)-carboxyfluorescein. Steady-state pH(c) was higher in LPA than in SPA normoxic smooth muscle cells. SPAs and LPAs possessed all three transport activities; in HCO3- containing normoxic solutions, Cl-/HCO3- exchange rather than Na+/H+ exchange set the level of pH(c); in HCO3- containing hypoxic solutions, pH(c) increased in SPA and decreased in LPA cells; altering the baseline pH(c) of a cell type to that of the other did not change the direction of the pH(c) response during hypoxia. The absence of Na+ prevented hypoxia-induced alkalinization in SPA cells; in both cell types, inhibiting the Cl-/HCO3- exchange activities reversed the normal direction of pH(c) changes during hypoxia.
机译:这项研究的目的是确定1)在猫肺动脉平滑肌细胞中调节细胞质pH(pH(c))的主要离子转运活性的存在,即Na + / H +和Na +依赖性和非依赖性Cl -/ HCO3-交换,2)缺氧期间小(SPAs)和大(LPA)肺动脉中的细胞pH(c)是否发生变化,以及3)pH(c)的变化是否是由于交换平衡的变化引起的活动。用荧光显微镜确定由生理操作而不是分子同一性定义的交换活性,以记录pH(c)指示剂2',7'-双-(2-羧乙基)-5-(和-6)的比率变化-羧基荧光素。 LPA中的稳态pH(c)高于SPA常氧性平滑肌细胞中的稳态pH(c)。 SPA和LPA具有所有这三种运输活动;在含HCO3的常氧溶液中,Cl- / HCO3-交换而不是Na + / H +交换设定pH(c)的水平;在含HCO3的低氧溶液中,SPA中的pH(c)升高,LPA细胞中的pH(c)降低;将一种细胞类型的基线pH(c)改变为另一种细胞的基线pH(c)不会改变低氧期间pH(c)响应的方向。 Na +的缺乏阻止了缺氧诱导的SPA细胞碱化。在这两种细胞类型中,抑制Cl- / HCO3-交换活性都会逆转缺氧期间pH(c)变化的正常方向。

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