1Cardiac Signaling Center of University of South Carolina, Medical University of South Carolina, Clemson University, Charleston, South Carolina.
2Medical Faculty, Center for Physiology and Pathophysiology, Institute for Neurophysiology, University of Cologne, Cologne, Germany.
Stem Cells Dev. 2019 Jul 15;28(14):920-932. doi: 10.1089/scd.2018.0234. Epub 2019 Jun 25.
Human induced pluripotent stem cell-derived cardiomyocytes (hiPSC-CMs) are potential sources for cardiac regeneration and drug development. hiPSC-CMs express all the cardiac ion channels and the unique cardiac Ca-signaling phenotype. In this study, we tested for expression of acid sensing ion channels (ASICs) in spontaneously beating cardiomyocytes derived from three different hiPSC lines (IMR-90, iPSC-K3, and Ukki011-A). Rapid application of solutions buffered at pH 6.7, 6.0, or 5.0 triggered rapidly activating and slowly inactivating voltage-independent inward current that reversed at voltages positive to E, was suppressed by 5 μM amiloride and withdrawal of [Na], like neuronal ASIC currents. ASIC currents were expressed at much lower percentages and densities in undifferentiated hiPSC and in dermal fibroblasts. ASIC1 mRNA and protein were measured in first 60 days but decreased in 100 days postdifferentiation hiPSC cultures. Hyperacidification (pH 5 and 6) also triggered large Ca transients in intact hiPSC-CMs that were neither ruthenium red nor amiloride-sensitive, but were absent in whole cell-clamped hiPSC-CMs. Neither ASIC1 current nor its protein was detected in rat adult cardiomyocytes, but hyperacidification did activate smaller and slowly activating currents with drug sensitivity similar to TRPV channels. Considering ASIC expression in developing but not adult myocardium, a role in heart development is likely.
人诱导多能干细胞衍生的心肌细胞(hiPSC-CMs)是心脏再生和药物开发的潜在来源。hiPSC-CMs 表达所有的心脏离子通道和独特的心脏 Ca 信号表型。在这项研究中,我们测试了三种不同的 hiPSC 系(IMR-90、iPSC-K3 和 Ukki011-A)来源的自发搏动心肌细胞中酸感应离子通道(ASICs)的表达。快速应用 pH 值为 6.7、6.0 或 5.0 的缓冲溶液会触发快速激活和缓慢失活的电压独立内向电流,该电流在正于 E 的电压下反转,被 5 μM 氨氯吡咪抑制,且去除 [Na],类似于神经元 ASIC 电流。ASIC 电流在未分化的 hiPSC 和真皮成纤维细胞中的表达百分比和密度要低得多。在分化后 100 天的 hiPSC 培养物中,ASIC1 mRNA 和蛋白的表达量减少。在完整的 hiPSC-CMs 中,酸化(pH 值为 5 和 6)也会引发大的 Ca 瞬变,该 Ca 瞬变既不受钌红也不受氨氯吡咪抑制,但在全细胞钳制的 hiPSC-CMs 中不存在。在成年大鼠心肌细胞中既没有检测到 ASIC1 电流也没有检测到其蛋白,但酸化会激活具有与 TRPV 通道相似药物敏感性的较小的和缓慢激活的电流。考虑到 ASIC 在发育中的表达而不是在成年心肌中的表达,其在心脏发育中可能具有重要作用。