Sidell N, Verity M A, Nord E P
Division of Neuropathology, UCLA School of Medicine 90024.
J Cell Physiol. 1990 Feb;142(2):410-9. doi: 10.1002/jcp.1041420226.
Voltage-gated Ca2+ channels were identified in LA-N-5 human neuroblastoma cells using the Ca2+ sensitive fluorescent probe, fura-2. Using a variety of "classical" Ca2+ channel blockers, we have demonstrated the presence of both dihydropyridine (DHP)-sensitive and -insensitive channel types that can be activated by depolarization of the cells with either high K+ or gramicidin in the bathing solution. Brief exposure of LA-N-5 cells to menthol blunted the depolarization-induced Ca2+ influx though both DHP-sensitive and DHP-insensitive channels. This effect is concentration dependent (50% maximal blocking effect with 0.25 mM menthol), rapid in onset, and readily reversible. The specificity of the Ca2(+)-channel blocking effect of menthol was demonstrated in parallel studies using compounds with similar structures: menthone blocked Ca2+ channels with about half the potency of menthol, while cyclohexanol was without effect. Addition of either menthol or menthone to LA-N-5 cultures induced neurite outgrowth, cellular clustering, and reduction of cell growth in a dose-dependent fashion that correlated with the ability of these compounds to inhibit the DHP-insensitive Ca2+ influx. Cyclohexanol had no biologic activity. Taken together, the parallel potency for blockade of DHP-insensitive Ca2+ influx with the biologic activity of menthol suggests a role for certain types of Ca2+ channels in triggering growth and morphologic changes in LA-N-5 cells.
利用钙离子敏感荧光探针fura-2在LA-N-5人神经母细胞瘤细胞中鉴定出电压门控钙离子通道。使用多种“经典”钙离子通道阻滞剂,我们证明了存在对二氢吡啶(DHP)敏感和不敏感的通道类型,这些通道可通过在浴液中用高钾或短杆菌肽使细胞去极化来激活。将LA-N-5细胞短暂暴露于薄荷醇会减弱通过DHP敏感和DHP不敏感通道的去极化诱导的钙离子内流。这种作用具有浓度依赖性(0.25 mM薄荷醇时最大阻断效应为50%),起效迅速且易于逆转。在使用结构相似化合物的平行研究中证明了薄荷醇对钙离子通道阻断作用的特异性:薄荷酮阻断钙离子通道的效力约为薄荷醇的一半,而环己醇则无作用。向LA-N-5培养物中添加薄荷醇或薄荷酮会以剂量依赖性方式诱导神经突生长、细胞聚集和细胞生长减少,这与这些化合物抑制DHP不敏感钙离子内流的能力相关。环己醇没有生物学活性。综上所述,DHP不敏感钙离子内流的阻断效力与薄荷醇的生物学活性平行,表明某些类型的钙离子通道在触发LA-N-5细胞的生长和形态变化中起作用。