Danish National Research Foundation Centre for Cardiac Arrhythmia, University of Copenhagen, Blegdamsvej 3, 2200, Copenhagen, Denmark.
Naunyn Schmiedebergs Arch Pharmacol. 2010 Mar;381(3):271-83. doi: 10.1007/s00210-009-0456-2. Epub 2009 Oct 2.
Pharmacological activation of the large-conductance Ca(2+)-activated K(+) channel (KCa1.1) in the cardiac inner mitochondrial membrane has been found to protect the heart against ischemia reperfusion injuries. However, there are concerns about the selectivity of the pharmacological tools used to modulate the channel. Here, we address this issue by synthesising a methylated analogue of the tool KCa1.1 channel activator NS11021. The compound (NS13558) is designed as a structurally closely related and biologically inactive analogue of NS11021. NS13558 did not elicit any significant opening of cloned human KCa1.1 channels, but maintained comparable biological activity towards other cardiac ion channels as compared to NS11021. In isolated perfused rat hearts subjected to ischemia-reperfusion, infarct size was reduced from 29% in control to 7% in NS11021 treated hearts. In comparison, the inactive derivate of NS11021, i.e., NS13558, did not confer any cardioprotection, demonstrated by an infarct size identical to control hearts. This suggests that NS11021 exerts its primary effect through KCa1.1 channels, which indicates an important role of these channels in protection against ischemia-reperfusion injuries. Furthermore, the study demonstrates a novel way of combining an activator of the KCa1.1 channel (NS11021) and its structurally closely related inactive analogue NS13558 to address the functional role of KCa1.1 channels, and we believe these novel tools may constitute a valuable addition to understanding the functional role of KCa1.1 channels under physiological and pathophysiological conditions.
药理学激活心脏线粒体内膜大电导钙激活钾通道(KCa1.1)已被发现可保护心脏免受缺血再灌注损伤。然而,人们对用于调节通道的药理学工具的选择性存在担忧。在这里,我们通过合成工具 KCa1.1 通道激活剂 NS11021 的甲基化类似物来解决这个问题。该化合物(NS13558)被设计为 NS11021 的结构上密切相关且无生物活性的类似物。NS13558 不会引起克隆的人 KCa1.1 通道的明显开放,但与 NS11021 相比,对其他心脏离子通道仍具有相当的生物活性。在经历缺血再灌注的离体灌注大鼠心脏中,与对照组相比,用 NS11021 处理的心脏梗死面积从 29%减少到 7%。相比之下,NS11021 的无活性衍生物,即 NS13558,不会引起任何心脏保护作用,其梗死面积与对照组相同。这表明 NS11021 通过 KCa1.1 通道发挥其主要作用,这表明这些通道在保护免受缺血再灌注损伤方面起着重要作用。此外,该研究还展示了一种新的方法,即结合 KCa1.1 通道的激活剂(NS11021)及其结构上密切相关的无活性类似物 NS13558,以解决 KCa1.1 通道的功能作用,我们相信这些新工具可能对理解 KCa1.1 通道在生理和病理生理条件下的功能作用有重要价值。