Weingart R
J Physiol. 1986 Jan;370:267-84. doi: 10.1113/jphysiol.1986.sp015934.
Cell pairs isolated from adult rat ventricles were used to characterize the electrical properties of the nexal membrane located between the cells. Each cell of a cell pair was connected to a suction pipette so as to enable whole-cell recordings. A double voltage-clamp method was employed which allowed the voltage gradient across the nexal membrane to be controlled. The current-voltage relationship of the nexal membrane was found to be linear over a broad range of transnexal voltages ( +/- 50 mV). The measurements revealed a mean value for the apparent nexal membrane resistance, rn(app), of 3.4 M omega. Taking into account the contribution of an uncompensated series resistance (access resistance), the effective nexal resistance, rn(eff), amounts to 1.7 M omega, approximately. The nexal membrane resistance was found to be insensitive to the sarcolemmal membrane potential, Vm (voltage range tested: -90 mV to +30 mV). The nexal membrane showed no rectifying property, i.e. it allows impulse transmission in both directions equally well. The connexons of the nexal membrane exhibited no time-dependent gating behaviour (time range investigated: 0.1-10 s).
从成年大鼠心室分离出的细胞对被用于表征细胞间连接膜的电学特性。细胞对中的每个细胞都连接到一个吸管上,以便进行全细胞记录。采用双电压钳法,该方法可控制连接膜上的电压梯度。发现在较宽的跨连接膜电压范围(±50 mV)内,连接膜的电流-电压关系呈线性。测量结果显示,表观连接膜电阻rn(app)的平均值为3.4 MΩ。考虑到未补偿的串联电阻(接入电阻)的影响,有效连接电阻rn(eff)约为1.7 MΩ。发现连接膜电阻对肌膜电位Vm不敏感(测试电压范围:-90 mV至+30 mV)。连接膜没有整流特性,即它允许冲动在两个方向上同样良好地传导。连接膜的连接子没有时间依赖性门控行为(研究的时间范围:0.1 - 10 s)。