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Differential oxygen sensitivity of calcium channels in rabbit smooth muscle cells of conduit and resistance pulmonary arteries.

机译:兔导管平滑肌细胞和阻力性肺动脉钙通道的氧敏感性差异。

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摘要

1. Calcium currents were recorded from smooth muscle cells dispersed from conduit and resistance rabbit pulmonary arteries. We tested the hypothesis that Ca2+ channel activity was regulated by environmental O2 tension. 2. Conduit (proximal) and resistance (distal) myocytes differ in their Ca2+ channel density and responses to low PO2. Ca2+ current density in distal myocytes (20.7 +/- 7.4 pA pF-1, n = 10) is almost twice the value in proximal myocytes (12.6 +/- 5.5 pA pF-1, n = 39). In proximal myocytes, the predominant response to reductions in PO2 is inhibition of the calcium current (n = 12) at membrane potentials below 0 mV, whereas potentiation of current amplitude is observed in distal myocytes (n = 24). 3. Hypoxia also produces opposite shifts in the conductance-voltage relationships along the voltage axis. The average displacements induced by low PO2 are +5.05 +/- 2.98 mV (n = 5) in proximal myocytes and -6.06 +/- 2.45 (n = 10) in distal myocytes. 4. These findings demonstrate longitudinal differences in Ca2+ channel density and O2 sensitivity in myocytes along the pulmonary arterial tree. These results may help to understand the differential reactivity to hypoxia of the pulmonary vasculature: vasodilatation in conduit arteries and vasoconstriction in resistance vessels.
机译:1.从导管和阻力兔肺动脉分散的平滑肌细胞中记录钙电流。我们测试了Ca2 +通道活性受环境O2张力调节的假设。 2.导管(近端)和阻力(远端)心肌细胞的Ca2 +通道密度和对低PO2的反应不同。远端肌细胞的Ca2 +电流密度(20.7 +/- 7.4 pA pF-1,n = 10)几乎是近端肌细胞的Ca2 +电流密度(12.6 +/- 5.5 pA pF-1,n = 39)的两倍。在近端心肌细胞中,对PO2减少的主要反应是在膜电位低于0 mV时抑制钙电流(n = 12),而在远端心肌细胞中观察到电流振幅增强(n = 24)。 3.缺氧还会在电导-电压关系中沿电压轴产生相反的偏移。低PO2诱导的平均位移在近端肌细胞中为+5.05 +/- 2.98 mV(n = 5),在远端肌细胞中为-6.06 +/- 2.45(n = 10)。 4.这些发现表明,沿肺动脉树的心肌细胞中Ca2 +通道密度和O2敏感性的纵向差异。这些结果可能有助于了解对肺血管缺氧的不同反应性:导管动脉的血管扩张和阻力血管的血管收缩。

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