首页> 美国卫生研究院文献>The Journal of Physiology >The reaction of ouabain with the sodium pump of guinea-pig myocardium in relation to its inotropic effect.
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The reaction of ouabain with the sodium pump of guinea-pig myocardium in relation to its inotropic effect.

机译:哇巴因与豚鼠心肌钠泵的反应及其正性肌力作用。

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摘要

[3H]ouabain binding (1.85-500 nmol/l) was evaluated in resting guinea-pig papillary muscles at 1.2-12 mmol K/l. The time course of binding was biphasic. This finding excluded a homogeneous population of non-interacting binding sites of ouabain, even though the identical susceptibility of both phases to K suggested the occupation of similarly operative receptors. Concomitant with ouabain binding, intracellular Na ion activity (aiNa) increased in the presence of 2.4 or 12 mmol K/l. Occupation of the receptor molecule by ouabain, therefore, conformed to Na-pump inhibition. Although K antagonized both ouabain binding and its effect on aiNa, the antagonistic effect on aiNa was more pronounced. The reduction of passive Na influx with depolarization as well as the stimulation of the Na pump by K presumably contributed to the antagonistic effect of K. The decrease in aiNa from 8 to 5 mmol/l, when in the absence of ouabain K was raised from 2.4 to 12.0 mmol/l, confirmed the relevance of Na fluxes. Simultaneous changes in aiNa and in the force of rested-state contractions were apparent upon addition of ouabain. At 2.4 mmol K/l, increase in aiNa raised the force of contraction by constant proportions. At 12 mmol K/l, the inotropic effect produced at comparable values of aiNa was approximately tenfold higher and was susceptible to a change in extracellular Ca concentration. Increase in aiNa, however, was differently effective on force of contraction of low as compared with high values of aiNa. The influence of resting membrane potential on electrogenic Na-Ca exchange is supposed to interfere with the inotropic effectiveness of aiNa after the cell membrane depolarized from -102 mV to -65 mV with the increase of K from 2.4 to 12 mmol/l. In view of the role of both membrane potential and aiNa not just a single mechanism appeared to be involved in the control of force of contraction.
机译:在静息的豚鼠乳头肌中以1.2-12 mmol K / l评估[3H]哇巴因结合(1.85-500 nmol / l)。绑定的时间过程是两相的。这一发现排除了哇巴因的非相互作用结合位点的同质群体,尽管两个阶段对K的敏感性相同也表明占领了相似作用的受体。与哇巴因结合,细胞内Na离子活性(aiNa)在2.4或12 mmol K / l的存在下增加。因此,哇巴因对受体分子的占据符合钠泵抑制作用。尽管钾拮抗哇巴因结合及其对aiNa的作用,但对aina的拮抗作用更为明显。通过去极化减少被动的Na流入以及K对Na泵的刺激可能有助于K的拮抗作用。在不存在哇巴因的情况下,将aiNa从8 mmol / l降低至5 mmol / l。 2.4至12.0 mmol / l,证实了Na通量的相关性。加入哇巴因后,aiNa和静止状态收缩力的同时变化很明显。在2.4 mmol K / l下,aiNa的增加以恒定比例增加了收缩力。在12 mmol K / l的条件下,以相近的aiNa值产生的正性肌力作用大约高十倍,并且易受细胞外Ca浓度变化的影响。然而,与高aiNa值相比,增加aiNa对低收缩力的效果不同。静息膜电位对电化Na-Ca交换的影响被认为会干扰aiNa的正性肌力,因为细胞膜从-102 mV去极化至-65 mV,并且K从2.4增加到12 mmol / l。考虑到膜电位和aiNa的作用,似乎不仅单一机制参与了收缩力的控制。

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