Kottra G, Frömter E
Pflugers Arch. 1984 Dec;402(4):421-32. doi: 10.1007/BF00583943.
The impedance of Necturus gallbladder epithelium was measured with transepithelial and intracellular microelectrodes in different transport states. The data are analysed with five electrical equivalent circuits, which differ with respect to the configuration of the paracellular shunt path (lumped vs distributed model of the lateral space), and of the apical cell membrane (non-ideal capacitance or surface amplification by micro-tubular infoldings). Least square fits indicate: 1. that the lumped model cannot represent the epithelium properly, even under control conditions; 2. that the distributed model, which considers the lateral intracellular space separately as a cable-like structure, describes the data well, both under control conditions and during collapse of the lateral spaces; and 3. that the above indicated variations of the apical membrane configuration improve the fits, but have little effect on the magnitude of the calculated circuit parameters. Quantitatively the analysis of 214 measurements on 25 gallbladders under control conditions yields the following results: The resistances of the tight junctions, of the lateral intercellular space, and of the apical and basal cell membrane are Rj = 123, Rlis = 35.5, Ra approximately 3,500, and Rb = 225 (all in omega cm2), and the capacitances of the cell membranes are Ca = 4.95 and Cbl = 26.5 (mu F/cm2). In oxygen deficiency and after cessation of chamber perfusion transport decreased, the spaces collapsed, and Rlis increased to approximately 130 omega cm2. Although the accuracy of the estimated Ra values is still limited, the analysis shows that it is possible to determine Rj and Rlis separately and to follow their changes in response to experimental maneuvers.
在不同转运状态下,使用跨上皮和细胞内微电极测量了美西螈胆囊上皮的阻抗。用五个等效电路对数据进行了分析,这些电路在细胞旁分流路径(侧间隙的集总模型与分布式模型)以及顶端细胞膜(非理想电容或微管褶皱引起的表面放大)的配置方面有所不同。最小二乘法拟合表明:1. 即使在对照条件下,集总模型也不能恰当地代表上皮;2. 分布式模型将细胞内侧面空间单独视为类似电缆的结构,在对照条件下和侧间隙塌陷期间都能很好地描述数据;3. 上述顶端膜配置的变化改善了拟合,但对计算出的电路参数大小影响很小。定量分析25个胆囊在对照条件下的214次测量结果如下:紧密连接、细胞间侧面空间、顶端和基底细胞膜的电阻分别为Rj = 123、Rlis = 35.5、Ra约为3500和Rb = 225(单位均为Ω·cm2),细胞膜的电容为Ca = 4.95和Cbl = 26.(单位为μF/cm2)。在缺氧和停止腔室灌注后,转运减少,间隙塌陷,Rlis增加到约130Ω·cm2。尽管估计的Ra值的准确性仍然有限,但分析表明可以分别确定Rj和Rlis,并跟踪它们对实验操作的响应变化。