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首页> 外文期刊>Canadian Journal of Physiology and Pharmacology >Ouabain stimulates unidirectional and net potassium efflux in resting mammalian skeletal muscle.
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Ouabain stimulates unidirectional and net potassium efflux in resting mammalian skeletal muscle.

机译:瓦巴因刺激哺乳动物静息骨骼肌的单向和净钾外流。

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摘要

The present study compared ouabain-sensitive unidirectional K+ flux into (JinK) and out of (JoutK) perfused rat hindlimb skeletal muscle in situ and mouse flexor digitorum brevis (FDB) in vitro. In situ, 5 mM ouabain inhibited 54 +/- 4% of the total JinK in 28 +/- 1 min, and increased the net and unidirectional efflux of K+ within 4 min. In contrast, 1.8 mM ouabain inhibited 40 +/- 8% of the total JinK in 38 +/- 2 min, but did not significantly affect JoutK. In vitro, 1.8 and 0.2 mM ouabain decreased JinK to a greater extent (83 +/- 5%) than in situ, but did not significantly affect 42K loss rate compared with controls. The increase in unidirectional K+ efflux (JoutK) with 5 mM ouabain in situ was attributed to increased K+ efflux through cation channels, since addition of barium (1 mM) to ouabain-perfused muscles returned JoutK to baseline values within 12 min. Perfusion with 5 mM ouabain plus 2 mM tetracaine for 30 min decreased JinK 46 +/- 9% (0.30 +/- 0.03 to 0.16 +/- 0.02 micromol x min(-1) x g(-1)), however tetracaine was unable to abolish the ouabain-induced increase in unidirectional K+ efflux. In both rat hindlimb and mouse FDB, tetracaine had no effect on JoutK. Perfusion of hindlimb muscle with 0.1 mM tetrodotoxin (TTX, a Na+ channel blocker) decreased JinK by 15 +/- 1%, but had no effect on JoutK; subsequent addition of ouabain (5 mM) decreased JinK a further 32 +/- 2%. The ouabain-induced increase in unidirectional K+ efflux did not occur when TTX was perfused prior to and during perfusion with 5 mM ouabain. We conclude that 5 mM ouabain increases the unidirectional efflux of K+ from skeletal muscle through a barium and TTX-sensitive pathway, suggestive of voltage sensitive Na+ channels, in addition to inhibiting Na+/K+-ATPase activity.
机译:本研究比较了哇巴因敏感的单向K +通量在体外灌注(JinK)和灌注(JoutK)大鼠后肢骨骼肌和小鼠屈指短缩肌(FDB)。原位,5 mM哇巴因在28 +/- 1分钟内抑制了总JinK的54 +/- 4%,并在4分钟内增加了K +的净和单向流出。相反,1.8 mM哇巴因在38 +/- 2分钟内抑制了总JinK的40 +/- 8%,但对JoutK没有明显影响。在体外,与原位相比,1.8和0.2 mM哇巴因将JinK降低的程度更大(83 +/- 5%),但并未显着影响42K的丢失率。原位5 mM哇巴因的单向K +外排(JoutK)的增加归因于通过阳离子通道的K +外排的增加,因为向哇巴因灌注的肌肉中添加钡(1 mM)使JoutK在12分钟内恢复到基线值。用5 mM哇巴因加2 mM丁卡因灌注30分钟可减少JinK 46 +/- 9%(0.30 +/- 0.03至0.16 +/- 0.02 micromol x min(-1)xg(-1)),但是丁卡因无法消除哇巴因诱导的单向K +外排增加。在大鼠后肢和小鼠FDB中,丁卡因对JoutK均无影响。用0.1 mM河豚毒素(TTX,一种Na +通道阻滞剂)灌注后肢肌肉可使JinK降低15 +/- 1%,但对JoutK无影响;随后加入哇巴因(5 mM)使JinK进一步降低32 +/- 2%。当在用5 mM哇巴因灌注之前和期间灌注TTX时,哇巴因诱导的单向K +外流没有发生。我们得出结论,除了抑制Na + / K + -ATPase活性外,5 mM哇巴因还通过钡和TTX敏感途径增加了钾离子从骨骼肌的单向流出,提示电压敏感的Na +通道。

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