首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Calcium movement and membrane potential changes in the early phase of neutrophil activation by phorbol myristate acetate: a study with ion- selective electrodes
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Calcium movement and membrane potential changes in the early phase of neutrophil activation by phorbol myristate acetate: a study with ion- selective electrodes

机译:佛波肉豆蔻酸酯乙酸盐在中性粒细胞活化早期的钙运动和膜电位变化:离子选择电极研究

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摘要

To quantitate calcium movements and membrane potential changes in stimulated neutrophils, we have measured net fluxes of Ca2+ and of the lipophilic cation tetraphenyl phosphonium by a very sensitive ion- selective electrode system. Activation of neutrophils by 3 X 10(-8) M phorbol 12-myristate, 13-acetate induces a release of approximately 20% of total cell calcium, with an initial lag period of less than 10 s. The Ca2+ outflux is markedly reduced in ATP-depleted cells and in the presence of a calmodulin inhibitor, thereby suggesting that it occurs by activation of the ATP-driven Ca2+ pump of the neutrophil plasmalemma. Activation of neutrophils also induces a transiently increased exchange of medium 45Ca with cell calcium, which is measurable a few seconds after cell exposure to the stimulant and peaks at approximately 40 s. Stimulation of neutrophils after attainment of steady-state accumulation of tetraphenyl phosphonium (resting potential of -67 mV) results in a marked depolarization, with a lag period of approximately 60 s. The rate and extent of depolarization are reduced by 40 and 65%, respectively, in a low Na+ medium but are not modified by an inhibitor of anion exchange across membranes. A high-K+ medium depolarizes neutrophils without either modifying their resting oxidative metabolism or impairing stimulability by the phorbol ester. Phorbol 12-myristate, which also exhibits no effect on the oxidative metabolism of neutrophils, does not induce Ca2+ extrusion and membrane potential changes. The causal relationship between Ca2+ mobilization, membrane potential changes and activation of neutrophil functions is discussed.
机译:为了定量刺激中性粒细胞的钙运动和膜电位变化,我们已经通过非常灵敏的离子选择电极系统测量了Ca2 +和亲脂性阳离子四苯基phospho的净通量。 3 X 10(-8)M佛波醇12-肉豆蔻酸酯,13-乙酸酯对嗜中性粒细胞的活化诱导释放约占总细胞钙的20%,初始滞后时间少于10 s。在缺乏ATP的细胞中和存在钙调蛋白抑制剂的情况下,Ca2 +流出明显减少,因此表明它是通过激活嗜中性白血球血浆的ATP驱动的Ca2 +泵而发生的。中性粒细胞的活化还诱导培养基45Ca与细胞钙的交换增加,这在细胞暴露于刺激剂后几秒钟即可测量,并在约40 s达到峰值。在达到四苯基phospho稳态积累(静电势为-67 mV)后刺激嗜中性粒细胞,导致明显的去极化,滞后时间约为60 s。在低Na +介质中,去极化的速度和程度分别降低了40%和65%,但没有被跨膜阴离子交换的抑制剂修饰。高K +介质可使嗜中性粒细胞去极化,而不会改变其静息氧化代谢或佛波酯的刺激性。佛波醇12肉豆蔻酸酯对中性粒细胞的氧化代谢也没有影响,它不会引起Ca2 +的挤出和膜电位的变化。讨论了Ca2 +动员,膜电位变化和嗜中性粒细胞功能激活之间的因果关系。

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