Guo W, Kamiya K, Yasui K, Kodama I, Toyama J
Department of Circulation, Nagoya University, Japan.
Cardiovasc Res. 1999 Jan;41(1):157-65. doi: 10.1016/s0008-6363(98)00157-6.
Cardiac hypertrophy is characterized by a prolongation of action potential duration (APD) and a reduction of outward K+ currents, primarily the transient outward current (Ito). Since the interaction between cardiac non-myocyte cells (NMCs) and cardiomyocytes (MCs) plays a critical role during the process of myocardial hypertrophy, in the present study, we investigated the effects of NMCs on cell growth and K+ channel expression in cultured newborn rat ventricular cells.
Single MCs were isolated from day-old Wistar rat ventricles and cultured for a period of five days. The effects of NMCs were examined by MC-NMC co-culture or incubating pure MCs in NMC-conditioned growth medium (NCGM). Whole-cell voltage-clamp recording and Western blot analysis using a polyclonal antibody against rat Kv4.2 channel protein were performed.
A marked increase in surface area and total cell protein concentration of MCs was observed in the MC-NMC co-culture. In the pure MC culture, this hypertrophic effect could be mimicked by a 72-h addition of NCGM, with a significant prolongation of APD25 (APD at 25% repolarization) and a 42% decrease in Ito density (at +30 mV). The rates of inactivation and recovery from inactivation of Ito were unchanged. In the NCGM-treated MC culture, Western blots of MC proteins also showed a 36% reduction of the Kv4.2 K+ channel protein level. In addition, the NCGM-induced MC hypertrophy was partially inhibited by anti-insulin-like growth factor-1 (IGF-1) antibody, while it revealed no effects on Ito density and Kv4.2 channel expression.
These findings first demonstrate that some paracrine hypertrophic factors released from cardiac NMCs, although unidentified, downregulate cardiac K+ channel expression.
心脏肥大的特征是动作电位时程(APD)延长以及外向钾电流减少,主要是瞬时外向电流(Ito)。由于心脏非心肌细胞(NMCs)与心肌细胞(MCs)之间的相互作用在心肌肥大过程中起关键作用,因此在本研究中,我们研究了NMCs对培养的新生大鼠心室细胞生长和钾通道表达的影响。
从出生1天的Wistar大鼠心室中分离单个MCs,并培养5天。通过MC-NMC共培养或将纯MCs培养于NMC条件生长培养基(NCGM)中来检测NMCs的作用。进行全细胞电压钳记录,并使用抗大鼠Kv4.2通道蛋白的多克隆抗体进行蛋白质印迹分析。
在MC-NMC共培养中观察到MCs的表面积和总细胞蛋白浓度显著增加。在纯MC培养中,添加72小时的NCGM可模拟这种肥大效应,APD25(复极化25%时的APD)显著延长,Ito密度(在+30 mV时)降低42%。Ito的失活速率和失活后恢复速率未改变。在NCGM处理的MC培养物中,MC蛋白的蛋白质印迹也显示Kv4.2钾通道蛋白水平降低了36%。此外,抗胰岛素样生长因子-1(IGF-1)抗体部分抑制了NCGM诱导的MC肥大,而对Ito密度和Kv4.2通道表达无影响。
这些发现首次证明,尽管尚未明确,但心脏NMCs释放的一些旁分泌肥大因子可下调心脏钾通道表达。