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豚鼠左心房的主动转运与变力状态

Active transport and inotropic state in guinea pig left atrium.

作者信息

Lechat P, Malloy C R, Smith T W

出版信息

Circ Res. 1983 Apr;52(4):411-22. doi: 10.1161/01.res.52.4.411.

Abstract

Although the positive inotropic effect of cardiac glycosides correlates well with inhibition of Na+ pump activity in many preparations, digitalis at low concentrations (10(-9) to 10(-8) M) may produce an apparent stimulation of monovalent cation transport in isolated intact myocardium or produce an inotropic effect that does not correlate with pump inhibition. Digitalis is known to modify tissue metabolism of endogenous neurotransmitters that may affect inotropic state, Na,K-ATPase activity, and K+ permeability. We examined the interactions of low concentrations of ouabain with adrenergic and cholinergic influences in isolated guinea pig left atria stimulated at 3.3 Hz in which inotropic state and monovalent cation transport (measured as 86Rb+ uptake) were assessed simultaneously. Ouabain (10(-9) M) stimulated Rb+ transport (+25%) without an inotropic response; the stimulatory effect on transport was abolished by propranolol or atropine pretreatment. In atria pretreated with atropine, 10(-8) M ouabain produced a small positive inotropic effect (+10%) without measurable associated Na+-K+ pump inhibition. This inotropic response was abolished in catecholamine-depleted atria. Ouabain (10(-7) M) always produced a positive inotropic response (about +25%) independent of catecholamine depletion, beta-adrenergic blockade, or muscarinic blockade, but Rb+ uptake inhibition was observed only in beta-adrenergically-blocked atria. In all preparations, ouabain concentrations greater than 10(-7) M caused an inotropic response associated with pump inhibition. At concentrations 3 X 10(-7) M and higher, mechanical toxicity was observed in all preparations except those pretreated with propranolol. Incubation with low concentrations of ouabain did not modify the inotropic response to isoproterenol. At concentrations of isoproterenol sufficient to stimulate Rb+ transport by 25%, there was a large (+80%) inotropic response. We conclude first, that, in guinea pig atria exposed to ouabain, the mechanism as well as the extent of inotropic response and of monovalent cation transport modification is concentration dependent, second, that at low concentrations (1-10 X 10(-9) M), in vitro inotropic and monovalent cation transport responses are in part mediated by an effect of ouabain on endogenous neurotransmitters; and third, that in this preparation at concentrations between 10(-9) and 10(-7) M ouabain, monovalent cation transport as measured by tissue 86Rb+ uptake does not correlate with inotropic response.

摘要

尽管在许多实验制剂中强心苷的正性肌力作用与抑制钠泵活性密切相关,但低浓度(10⁻⁹至10⁻⁸M)的洋地黄在离体完整心肌中可能会明显刺激单价阳离子转运,或产生与泵抑制无关的正性肌力作用。已知洋地黄可改变内源性神经递质的组织代谢,这可能会影响心肌收缩状态、钠钾ATP酶活性和钾通透性。我们研究了低浓度哇巴因与肾上腺素能和胆碱能影响在3.3Hz刺激的离体豚鼠左心房中的相互作用,同时评估了心肌收缩状态和单价阳离子转运(以⁸⁶Rb⁺摄取量衡量)。哇巴因(10⁻⁹M)刺激了Rb⁺转运(增加25%)但无正性肌力反应;普萘洛尔或阿托品预处理可消除对转运的刺激作用。在经阿托品预处理的心房中,10⁻⁸M哇巴因产生了小的正性肌力作用(增加10%),且未检测到相关的钠钾泵抑制。在去甲肾上腺素耗竭的心房中,这种正性肌力反应消失。哇巴因(10⁻⁷M)总是产生正性肌力反应(约增加25%),与去甲肾上腺素耗竭、β肾上腺素能阻断或毒蕈碱阻断无关,但仅在β肾上腺素能阻断的心房中观察到Rb⁺摄取抑制。在所有实验制剂中,哇巴因浓度大于10⁻⁷M时会引起与泵抑制相关的正性肌力反应。在浓度为3×10⁻⁷M及更高时,除用普萘洛尔预处理的制剂外,在所有制剂中均观察到机械毒性。与低浓度哇巴因孵育并未改变对异丙肾上腺素的正性肌力反应。在足以刺激Rb⁺转运增加25%的异丙肾上腺素浓度下,有较大的(增加80%)正性肌力反应。我们得出以下结论:第一,在暴露于哇巴因的豚鼠心房中,正性肌力反应和单价阳离子转运改变的机制及程度均取决于浓度;第二,在低浓度(1 - 10×10⁻⁹M)时,体外正性肌力和单价阳离子转运反应部分是由哇巴因对内源性神经递质的作用介导的;第三,在该实验制剂中,在10⁻⁹至10⁻⁷M的哇巴因浓度范围内,以组织⁸⁶Rb⁺摄取量衡量的单价阳离子转运与正性肌力反应不相关。

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