Frame M K, de Feijter A W
Meridian Instruments, Inc., Okemos, Michigan 48864, USA.
Exp Cell Res. 1997 Feb 1;230(2):197-207. doi: 10.1006/excr.1996.3409.
Mechanical stimulation was used to initiate Ca2+ waves in rat liver epithelial cells in order to ascertain the degree to which gap junctional intercellular communication (GJIC) is involved in communication of Ca2+ to adjacent cells and to assess alternative Ca2+ signaling pathways that may be present between these cells. In both WB-F344 cells, which show a high degree of GJIC, and WB-aB1 cells, which are GJIC deficient, mechanical stimulation of a single cell induced a Ca2+ wave which propagated away from the point of stimulation, across cell borders, to neighboring cells directly or indirectly in contact with the stimulated cell. In addition, the Ca2+ wave was transmitted to nearby isolated cells that exhibited no direct or indirect contact with the stimulated cell. Treatment of cells with 18beta-glycyrrhetinic acid, a compound that has been shown to block GJIC, did not significantly affect propagation of the Ca2+ wave. In contrast, treatment with suramin, a P2-purinergic receptor inhibitor, significantly reduced both the rate and the extent of Ca2+ wave propagation in WB-F344 cells and completely blocked its propagation in WB-aB1 cells. Cotreatment with suramin and glycyrrhetinic acid was found to completely block the mechanically induced Ca2+ wave in both cell lines. These studies indicate that mechanically induced cell injury in rat liver epithelial cells initiates signaling through at least two pathways, involving intercellular communication via gap junctions and extracellular communication via ATP activation of purinergic receptors.
为了确定缝隙连接细胞间通讯(GJIC)在钙离子向相邻细胞传递过程中的参与程度,并评估这些细胞之间可能存在的其他钙离子信号传导途径,采用机械刺激在大鼠肝上皮细胞中引发钙离子波。在具有高度GJIC的WB - F344细胞和缺乏GJIC的WB - aB1细胞中,对单个细胞进行机械刺激均能诱导出钙离子波,该波从刺激点传播开来,穿过细胞边界,直接或间接传递至与受刺激细胞接触的相邻细胞。此外,钙离子波还能传递至附近与受刺激细胞无直接或间接接触的孤立细胞。用已被证明可阻断GJIC的化合物18β - 甘草次酸处理细胞,对钙离子波的传播没有显著影响。相比之下,用P2 - 嘌呤能受体抑制剂苏拉明处理,显著降低了WB - F344细胞中钙离子波的传播速率和范围,并完全阻断了其在WB - aB1细胞中的传播。发现苏拉明和甘草次酸联合处理可完全阻断两种细胞系中机械诱导的钙离子波。这些研究表明,大鼠肝上皮细胞中的机械诱导细胞损伤至少通过两条途径启动信号传导途径,一条涉及通过缝隙连接进行细胞间通讯,另一条涉及通过嘌呤能受体的ATP激活进行细胞外通讯。