Araujo E G, Persechini P M, Oliveira-Castro G M
Biochim Biophys Acta. 1986 Apr 14;856(2):362-72. doi: 10.1016/0005-2736(86)90047-7.
The electrophysiological properties of the membrane of mouse peritoneal macrophage polykaryons are studied. Slow hyperpolarizations can be elicited by iontophoretic injections of either Ca2+ or Sr2+ into the cytoplasm. The effect of both cations is identical, since: it is invariably triggered by the cation injection, the amplitude is dependent on the K+ gradient, quinine blocks reversibly the response to both cation injections. Mg2+, Ba2+ and Mn2+ did not elicit responses when injected into the cytoplasm. Ca2+ induced slow hyperpolarizations were reversibly blocked by the addition of Ba2+ to the external saline, but were not affected by the presence of external tetraethylammonium chloride. Cells maintained in saline containing high concentrations of Ca2+, Sr2+ or Mn2+ exhibited sustained hyperpolarizations. Quinine blocked the hyperpolarization induced by high Ca2+ or Sr2+, but was ineffective for the case of Mn2+. Cells hyperpolarized by external Mn2+ frequently exhibited nonlinear, voltage-current characteristics. Similar patterns could also be observed in a small fraction (less than 10%) of the cells in control conditions. Current-induced shifts between two stable membrane potentials were seen either in high Ca2+ or normal medium. The great variability of the responses described for this phagocytic membrane is discussed. The evidence supports the assumption that Ca2+ and Sr2+ can induce transient or persistent hyperpolarized states by activating a potassium permeability. External Mn2+ may act in part by reducing impalement-related current leakage from the phagocytic membrane.
对小鼠腹膜巨噬细胞多核体膜的电生理特性进行了研究。通过离子电泳将Ca2+或Sr2+注入细胞质可引发缓慢的超极化。两种阳离子的作用是相同的,因为:它总是由阳离子注入触发,幅度取决于K+梯度,奎宁可可逆地阻断对两种阳离子注入的反应。将Mg2+、Ba2+和Mn2+注入细胞质时不会引发反应。向外部盐溶液中添加Ba2+可可逆地阻断Ca2+诱导的缓慢超极化,但不受外部氯化四乙铵存在的影响。维持在含有高浓度Ca2+、Sr2+或Mn2+的盐溶液中的细胞表现出持续的超极化。奎宁阻断了高Ca2+或Sr2+诱导的超极化,但对Mn2+的情况无效。由外部Mn2+超极化的细胞经常表现出非线性的电压-电流特性。在对照条件下的一小部分(不到10%)细胞中也可观察到类似模式。在高Ca2+或正常培养基中均可见电流诱导的两个稳定膜电位之间的转变。讨论了这种吞噬细胞膜所描述反应的巨大变异性。证据支持这样的假设,即Ca2+和Sr2+可通过激活钾通透性诱导短暂或持续的超极化状态。外部Mn2+可能部分通过减少吞噬细胞膜上与刺入相关的电流泄漏而起作用。