Ohanyan Vahagn, Yin Liya, Bardakjian Raffi, Kolz Christopher, Enrick Molly, Hakobyan Tatevik, Luli Jordan, Graham Kathleen, Khayata Mohamed, Logan Suzanna, Kmetz John, Chilian William M
Department of Integrative Medical Sciences, Northeast Ohio Medical University, Rootstown, OH, USA.
Aultman Hospital, Canton, OH, USA.
Microcirculation. 2017 May;24(4). doi: 10.1111/micc.12334.
The connection between metabolism and flow in the heart, metabolic dilation, is essential for cardiac function. We recently found redox-sensitive Kv1.5 channels play a role in coronary metabolic dilation; however, more than one ion channel likely plays a role in this process as animals null for these channels still showed limited coronary metabolic dilation. Accordingly, we examined the role of another Kv1 family channel, the energetically linked Kv1.3 channel, in coronary metabolic dilation. We measured myocardial blood flow (contrast echocardiography) during norepinephrine-induced increases in cardiac work (heart rate x mean arterial pressure) in WT, WT mice given correolide (preferential Kv1.3 antagonist), and Kv1.3-null mice (Kv1.3 ). We also measured relaxation of isolated small arteries mounted in a myograph. During increased cardiac work, myocardial blood flow was attenuated in Kv1.3 and in correolide-treated mice. In isolated vessels from Kv1.3 mice, relaxation to H O was impaired (vs WT), but responses to adenosine and acetylcholine were equivalent to WT. Correolide reduced dilation to adenosine and acetylcholine in WT and Kv1.3 , but had no effect on H O -dependent dilation in vessels from Kv1.3 mice. We conclude that Kv1.3 channels participate in the connection between myocardial blood flow and cardiac metabolism.
心脏中新陈代谢与血流之间的联系,即代谢性扩张,对心脏功能至关重要。我们最近发现氧化还原敏感的Kv1.5通道在冠状动脉代谢性扩张中起作用;然而,在这个过程中可能不止一个离子通道发挥作用,因为缺失这些通道的动物仍然表现出有限的冠状动脉代谢性扩张。因此,我们研究了另一个Kv1家族通道,即能量关联的Kv1.3通道,在冠状动脉代谢性扩张中的作用。我们在野生型(WT)、给予correolide(Kv1.3特异性拮抗剂)的WT小鼠以及Kv1.3基因敲除小鼠(Kv1.3-/-)中,通过对比超声心动图测量了去甲肾上腺素诱导心脏做功增加(心率×平均动脉压)期间的心肌血流量。我们还测量了安装在肌张力测定仪中的离体小动脉的舒张情况。在心脏做功增加期间,Kv1.3-/-小鼠和给予correolide的小鼠的心肌血流量减弱。在来自Kv1.3-/-小鼠的离体血管中,对H2O2的舒张受损(与WT相比),但对腺苷和乙酰胆碱的反应与WT相当。Correolide降低了WT和Kv1.3-/-小鼠对腺苷和乙酰胆碱的舒张反应,但对来自Kv1.3-/-小鼠血管中H2O2依赖性舒张无影响。我们得出结论,Kv1.3通道参与了心肌血流量与心脏代谢之间的联系。