首页> 外文期刊>American Journal of Physiology >Potassium (BK(Ca)) currents are reduced in microvascular smooth muscle cells from insulin-resistant rats.
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Potassium (BK(Ca)) currents are reduced in microvascular smooth muscle cells from insulin-resistant rats.

机译:来自胰岛素抵抗大鼠的微血管平滑肌细胞中的钾(BK(Ca))电流降低。

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摘要

Insulin resistance (IR) syndrome is associated with impaired vascular relaxation; however, the underlying pathophysiology is unknown. Potassium channel activation causes vascular smooth muscle hyperpolarization and relaxation. The present study determined whether a reduction in large conductance calcium- and voltage-activated potassium (BK(Ca)) channel activity contributes to impaired vascular relaxation in IR rats. BK(Ca) channels were characterized in mesenteric microvessels from IR and control rats. Macroscopic current density was reduced in myocytes from IR animals compared with controls. In addition, inhibition of BK(Ca) channels with tetraethylammonium (1 mM) or iberiotoxin (100 nM) was greater in myocytes from control (70%) compared with IR animals (approximately 20%). Furthermore, activation of BK(Ca) channels with NS-1619 was three times more effective at increasing outward current in cells from control versus IR animals. Single channel and Western blot analysis of BK(Ca) channels revealed similar conductance, amplitude, voltage sensitivity, Ca2+ sensitivity, and expression density between the two groups. These data provide the first direct evidence that microvascular potassium currents are reduced in IR and suggest a molecular mechanism that could account for impaired vascular relaxation in IR.
机译:胰岛素抵抗(IR)综合征与血管舒张受损有关。但是,其潜在的病理生理学是未知的。钾通道活化引起血管平滑肌超极化和松弛。本研究确定了大电导钙和电压激活钾(BK(Ca))通道活性的降低是否导致IR大鼠血管舒张受损。在IR和对照大鼠的肠系膜微血管中表征了BK(Ca)通道。与对照组相比,IR动物的心肌细胞的宏观电流密度降低。此外,与IR动物相比,四乙基铵(1 mM)或纤毛毒素(100 nM)对来自对照的心肌细胞(70%)对BK(Ca)通道的抑制作用更大(约20%)。此外,与IR动物相比,用NS-1619激活BK(Ca)通道在增加细胞外向电流方面更有效三倍。 BK(Ca)通道的单通道和蛋白质印迹分析显示两组之间相似的电导率,幅度,电压敏感性,Ca2 +敏感性和表达密度。这些数据提供了第一个直接证据,证明IR中微血管钾电流降低,并暗示了一种分子机制,可以解释IR中血管舒张功能受损。

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