Metzger P, Weingart R
J Physiol. 1985 Sep;366:177-95. doi: 10.1113/jphysiol.1985.sp015791.
Cell pairs were isolated from ventricles of adult rat hearts so as to study cell-to-cell coupling. Both cells of each pair were impaled with micro-electrodes connected to balanced bridge circuits. Rectangular current pulses were passed and the resulting voltage deflexions monitored. The data were analysed in terms of a delta configuration of three resistive elements, the resistances of the non-junctional membrane of cell 1 and cell 2 (rm, 1 and rm, 2), and the resistance of the nexal membrane (rn). The nexal membrane resistance was found to be insensitive to voltage gradients across the non-junctional membrane (range examined: -70 to -10 mV) and direction of current flow. The mean value of rn was 2.12 M omega ([K+]o = 12 mM). Taking into account morphological parameters, this corresponds to a specific nexal membrane resistance (Rn) of 0.1 omega cm2. Spontaneous uncoupling in which one cell remained polarized while the other one depolarized was never observed. The current-voltage relationship of the non-junctional membrane was found to be bell-shaped. The specific resistance (Rm) at the resting membrane potential (approximately -50 mV) was 3.2 k omega cm2 ([K+]o = 12 mM). Comparative studies performed on single cells revealed a similar relationship Rm versus Vm. Rm at the resting membrane potential (Vm approximately -50 mV) was 2.5 k omega cm2 ([K+]o = 12 mM). The specific capacitance of the non-junctional membrane (Cm) was determined from experiments on single cells. Cm was found to be independent of Vm (voltage range: -80 to 0 mV). The mean value of Cm was 1.66 microF/cm2 ([K+]o = 12 mM). For comparison, experiments on cell pairs and single cells were also carried out with [K+]o = 4 mM. The values obtained for Rn, Rm and Cm did not deviate significantly from those found with [K+]o = 12 mM.
从成年大鼠心脏的心室中分离出细胞对,以便研究细胞间耦合。每对细胞中的两个细胞都用连接到平衡桥路的微电极刺入。施加矩形电流脉冲,并监测由此产生的电压偏转。根据三个电阻元件的三角形配置分析数据,即细胞1和细胞2的非连接膜电阻(rm, 1和rm, 2)以及连接膜电阻(rn)。发现连接膜电阻对非连接膜上的电压梯度(检查范围:-70至-10 mV)和电流流动方向不敏感。rn的平均值为2.12 MΩ([K⁺]o = 12 mM)。考虑到形态学参数,这对应于0.1Ω·cm²的比连接膜电阻(Rn)。从未观察到一个细胞保持极化而另一个细胞去极化的自发解偶联现象。发现非连接膜的电流-电压关系呈钟形。静息膜电位(约-50 mV)时的比电阻(Rm)为3.2 kΩ·cm²([K⁺]o = 12 mM)。对单细胞进行的比较研究揭示了Rm与Vm的相似关系。静息膜电位(Vm约-50 mV)时的Rm为2.5 kΩ·cm²([K⁺]o = 12 mM)。非连接膜的比电容(Cm)通过对单细胞的实验确定。发现Cm与Vm无关(电压范围:-80至0 mV)。Cm的平均值为1.66 μF/cm²([K⁺]o = 12 mM)。为作比较,还在[K⁺]o = 4 mM的条件下对细胞对和单细胞进行了实验。获得的Rn、Rm和Cm值与在[K⁺]o = 12 mM时发现的值没有显著偏差。