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首页> 外文期刊>American Journal of Physiology >Ionic mechanism for contractile response to hyposmotic challenge in canine basilar arteries.
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Ionic mechanism for contractile response to hyposmotic challenge in canine basilar arteries.

机译:犬基底动脉对低渗挑战的收缩反应的离子机制。

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A hyposmotic challenge elicited contraction of isolated canine basilar arteries. The contractile response was nearly abolished by the removal of extracellular Ca(2+) and by the voltage-dependent Ca(2+) channel (VDCC) blocker nicardipine, but it was unaffected by thapsigargin, which depletes intracellular Ca(2+) stores. The contraction was also inhibited by Gd(3+) and ruthenium red, cation channel blockers, and Cl(-) channel blockers DIDS and niflumic acid. The reduction of extracellular Cl(-) concentrations enhanced the hypotonically induced contraction. Patch-clamp analysis showed that a hyposmotic challenge activated outwardly rectifying whole cell currents in isolated canine basilar artery myocytes. The reversal potential of the current was shifted toward negative potentials by reductions in intracellular Cl(-) concentration, indicating that the currents were carried by Cl(-). Moreover, the currents were abolished by 10 mM BAPTA in the pipette solution and by the removal of extracellular Ca(2+). Taken together, these results suggest that a hyposmotic challenge activates cation channels, which presumably cause Ca(2+) influx, thereby activating Ca(2+)-activated Cl(-) channels. The subsequent membrane depolarization is likely to increase Ca(2+) influx through VDCC and elicit contraction.
机译:低渗挑战引起孤立的犬基底动脉收缩。通过去除细胞外Ca(2+)和电压依赖性Ca(2+)通道(VDCC)阻断剂尼卡地平,收缩反应几乎被消除,但不受thapsigargin的影响,thapsigargin耗尽了细胞内Ca(2+)的存储量。 Gd(3+)和钌红,阳离子通道阻滞剂和Cl(-)通道阻滞剂DIDS和尼氟酸也可抑制收缩。细胞外Cl(-)浓度的减少增强了低渗诱导的收缩。膜片钳分析显示,低渗挑战激活了孤立犬齿基底动脉心肌细胞中的全细胞电流向外整流。通过细胞内Cl(-)浓度的降低,电流的反向电位向负电位转移,表明电流由Cl(-)携带。此外,通过移液器中的10 mM BAPTA和去除细胞外Ca(2+)消除了电流。两者合计,这些结果表明,低渗挑战激活阳离子通道,大概引起Ca(2+)涌入,从而激活Ca(2+)激活的Cl(-)通道。随后的膜去极化可能通过VDCC增加Ca(2+)流入并引起收缩。

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