Palant C E, Duffey M E, Mookerjee B K, Ho S, Bentzel C J
Am J Physiol. 1983 Sep;245(3):C203-12. doi: 10.1152/ajpcell.1983.245.3.C203.
To explore the role of Ca2+ in tight-junction permeability, the Necturus gallbladder was exposed to varying Ca2+ concentrations and to the Ca2+ ionophore A23187 added to the mucosal side (1.9 X 10(-6) to 6.8 X 10(-5) M). Electrophysiological parameters measured in an Ussing-type chamber were correlated with tight-junction morphology revealed by freeze-fracture electron microscopy. In Ca2+-free bathing media, transepithelial resistance decreases and tight-junctional ultrastructure is fragmented. In 1.8 mM Ca2+ media, A23187 induces an initial drop in transepithelial resistance, followed by an increase in transepithelial resistance to a value 20% above base line. At peak response to A23187, NaCl diffusion potentials decrease. Freeze-fracture replicas reveal that the number of junctional strands increase pari passu with junctional depth. Both physiological and morphological changes were partially reversible. The initial decrease in transepithelial resistance coincided with a persistent hyperpolarization of the mucosal cell membrane potential difference and a decrease in the mucosal-to-serosal cell membrane resistance ratio. Thus A23187 alters both the transcellular and paracellular pathway, resulting in opposing effects on transepithelial resistance.
为了探究Ca2+在紧密连接通透性中的作用,将美西螈胆囊暴露于不同的Ca2+浓度以及添加到黏膜侧的Ca2+离子载体A23187(1.9×10(-6)至6.8×10(-5)M)中。在尤斯灌流小室中测量的电生理参数与冷冻断裂电子显微镜显示的紧密连接形态相关。在无Ca2+的浴液中,跨上皮电阻降低,紧密连接超微结构破碎。在1.8 mM Ca2+溶液中,A23187引起跨上皮电阻的初始下降,随后跨上皮电阻增加至比基线高20%的值。在对A23187的峰值反应时,NaCl扩散电位降低。冷冻断裂复制品显示,连接嵴的数量与连接深度同步增加。生理和形态学变化均部分可逆。跨上皮电阻的初始下降与黏膜细胞膜电位差的持续超极化以及黏膜到浆膜细胞膜电阻比的降低相一致。因此,A23187改变了跨细胞和细胞旁途径,对跨上皮电阻产生相反的影响。