首页> 外文期刊>Journal of Pharmacological and Toxicological Methods >Both beta-adrenergic receptor stimulation and cardiac tissue type have important roles in elucidating the functional effects of I(Ks) channel blockers in vitro.
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Both beta-adrenergic receptor stimulation and cardiac tissue type have important roles in elucidating the functional effects of I(Ks) channel blockers in vitro.

机译:β-肾上腺素能受体刺激和心脏组织类型在阐明I(Ks)通道阻滞剂在体外的功能作用中均具有重要作用。

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INTRODUCTION: Conflicting results associated with the use of I(Ks) blockers on the action potential duration (APD) have raised a question as to whether the variable results arise from the use of different cardiac tissues, beta-adrenergic stimulation, or by the "selectivity" of the chosen I(Ks) blockers. METHODS: We used the highly selective I(Ks) blocker (-)-[3R, 4S] chromanol 293B [(-) chromanol] to mimic drug-induced long QT1 in isolated rabbit Purkinje fibers, papillary muscles, and ventricular trabeculae using the conventional microelectrode technique. RESULTS: I(Ks) block with (-) chromanol at 1 x 10(-5) M did not significantly change the APD at different stimulation rates in all three cardiac tissues. Isoproterenol (Iso:1 x 10(-7) M) shortened APD(90), and (-) chromanol (1 x 10(-5) M) largely prevented this shortening in isolated papillary muscles at 1 Hz [-3% with Iso combined (-) chromanol group versus -16% with iso group; p<0.05] and also at 2 Hz (+7% versus -25% with Iso group; p<0.05), but did not significantly prevent this shortening in isolated Purkinje fibers. In isolated trabeculae, (-) chromanol combined with Iso significantly prolonged the APD(90) by 15% at 1 Hz (versus -10% with Iso group; p<0.05) and by 5% at 2 Hz (versus -11% with Iso group; p<0.05). DISCUSSION: Our study shows that only during beta-adrenoceptor stimulation, pharmacological inhibition of the I(Ks) current plays an important role in the APD recorded from isolated ventricular trabeculae and papillary muscles, but not from Purkinje fibers. These results indicate that the APD prolonging effects of I(Ks)channel blockers during beta-adrenergic receptor stimulation can only be detected from isolated rabbit papillary muscles and ventricular trabeculae, but not Purkinje fibers.
机译:简介:与在动作电位持续时间(APD)上使用I(Ks)受体阻滞剂相关的结果相矛盾,引起了一个问题,即可变结果是否源于使用不同的心脏组织,β-肾上腺素刺激或“ I(Ks)阻滞剂的“选择性”。方法:我们使用高度选择性的I(Ks)阻滞剂(-)-[3R,4S]苯并三氢苯并[2,-苯并三氢苯并[2,-苯并二氢并苯并[苯并二氢]苯并[2]苯并[2]-苯并三唑]模拟了药物诱导的离体兔浦肯野纤维,乳头肌和心室小梁中的长QT1。传统的微电极技术。结果:在所有三个心脏组织中,在不同刺激速率下,I(Ks)阻隔(-)苯并色酚在1 x 10(-5)M时均未显着改变APD。异丙肾上腺素(Iso:1 x 10(-7)M)缩短了APD(90),而(-)苯甲醇(1 x 10(-5)M)很大程度上阻止了孤立乳头肌在1 Hz时的这种缩短[-3%,异联的(-)苯并二氢吡喃醇基团与异联基的-16%相比; p <0.05],在2 Hz时也是如此(Iso组为+ 7%,而Iso组为-25%; p <0.05),但在分离的Purkinje纤维中并未明显阻止这种缩短。在分离的小梁中,(-)苯并二氢苯甲醛与Iso组合可在1 Hz时显着延长APD(90)15%(Iso组为-10%; p <0.05),在2 Hz下将APD(90)延长5%(对Iso组为-11%)。 Iso组; p <0.05)。讨论:我们的研究表明,仅在β-肾上腺素能受体刺激期间,I(Ks)电流的药理抑制作用在从孤立的心室小梁和乳头肌记录的APD中起重要作用,而在Purkinje纤维中则没有。这些结果表明,只能从离体的兔乳头肌和心室小梁中检测到I(Ks)通道阻滞剂对I(Ks)通道阻滞剂的APD延长作用,而从Purkinje纤维中则无法检测到。

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