首页> 美国卫生研究院文献>The Journal of Physiology >Resting and ADP-evoked changes in cytosolic free sodium concentration in human platelets loaded with the indicator SBFI.
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Resting and ADP-evoked changes in cytosolic free sodium concentration in human platelets loaded with the indicator SBFI.

机译:载有指示剂SBFI的人血小板中静止和ADP引起的胞浆游离钠浓度变化。

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摘要

1. Cytosolic free Na+ concentration, [Na+]i, was investigated in human platelets loaded with the fluorescent indicator SBFI (sodium-binding benzofuran isophthalate). 2. SBFI fluorescence from platelet suspensions was measured at excitation wavelengths of 340 and 385 nm and the 340/385 nm fluorescence ratio was calibrated in terms of [Na+]i in situ. [Na+]i was set to known values by resuspending cells in media with various [Na+], in the presence of the Na(+)-K+ ionophore, gramicidin. 3. Basal free [Na+]i was 5.5 +/- 0.3 mM (n = 50). This is considerably lower than estimates of total platelet Na+, suggesting that much intracellular Na+ is sequestered or bound. 4. ADP (40 microM) evoked a rise in [Na+]i from 6.4 +/- 0.7 to 18.3 +/- 1.1 mM (n = 8). The ADP-evoked rise in [Na+]i was abolished when external Na+ was replaced with N-methyl-D-glucamine. This indicates that the rise in [Na+]i was due to Na+ entry. 5. In platelets loaded with the fluorescent pH indicator, BCECF, 40 microM-ADP was shown to evoke a fall in cytosolic pH (pHi) from 7.21 +/- 0.03 to 7.12 +/- 0.03 (n = 10). Three minutes after ADP addition pHi had only recovered to 7.15 +/- 0.03. The recovery was dependent on external Na+, suggesting it was mediated by Na(+)-H+ exchange. However, this would only account for an increase in [Na+]i of approximately 0.5 mM, indicating most of the ADP-evoked Na+ entry occurred by other mechanisms. 6. Stopped-flow fluorimetry showed that the ADP-evoked rise in [Na+]i commenced without measurable delay and peaked within 1 s. The initial kinetics were thus similar to those reported for ADP-evoked rises in [Ca2+]i. 7. Cell-attached patch-clamp recordings showed that ADP evoked single-channel inward currents when included in the pipette-filling solution. The currents were similar whether Ca2+ was present or absent from the pipette. The slope conductance was 11 pS in the presence of external Ca2+ and 10 pS in its absence. Current-voltage relationships were similar and the reversal potentials were close to 0 mV under both conditions. 8. SK & F 96,365 (20 microM), a blocker of receptor-mediated Ca2+ entry in several non-excitable cells, blocked the ADP-evoked rise in [Na+]i. This compound has been shown to only partly block the biphasic ADP-evoked rise in [Ca2+]i, being selective for the fast, receptor-operated phase of entry. 9. These data suggest that ADP rapidly activates a channel in that platelet plasma membrane which is permeable to Na+ and divalent cations.
机译:1.在载有荧光指示剂SBFI(钠结合苯并呋喃间苯二甲酸酯)的人血小板中研究了游离的Na +浓度[Na +] i。 2.在340和385 nm的激发波长下测量血小板悬浮液的SBFI荧光,并根据[Na +] i原位校准340/385 nm荧光比。在Na(+)-K +离子载体,短杆菌肽存在下,通过将细胞重悬于具有各种[Na +]的培养基中,将[Na +] i设置为已知值。 3.无基础的[Na +] i为5.5 +/- 0.3mM(n = 50)。这大大低于总血小板Na +的估计值,表明许多细胞内Na +被隔离或结合。 4. ADP(40 microM)引起[Na +] i从6.4 +/- 0.7升高到18.3 +/- 1.1 mM(n = 8)。当外部Na +被N-甲基-D-葡糖胺替代时,ADP引起的[Na +] i升高被消除。这表明[Na +] i的增加归因于Na +的进入。 5.在装有荧光pH指示剂BCECF的血小板中,显示40 microM-ADP引起细胞溶质pH(pHi)从7.21 +/- 0.03降至7.12 +/- 0.03(n = 10)。加入ADP后三分钟,pHi仅恢复到7.15 +/- 0.03。恢复取决于外部Na +,表明它是由Na(+)-H +交换介导的。但是,这仅会导致[Na +] i大约增加0.5 mM,说明大多数ADP诱发的Na +进入是由其他机制引起的。 6.停止流式荧光分析表明,ADP引起的[Na +] i上升开始时没有可测量的延迟,并在1 s内达到峰值。因此,初始动力学与报道的ADP引起的[Ca2 +] i升高的动力学相似。 7.附有细胞的膜片钳记录表明,当包含在移液管填充溶液中时,ADP会引起单通道内向电流。无论移液管中是否存在Ca2 +,电流都相似。存在外部Ca2 +时的斜率电导为11 pS,不存在外部Ca2 +时为10 pS。在两种条件下,电流-电压关系相似,并且反转电位接近0 mV。 8. SK&F 96,365(20 microM),一种在几种非兴奋性细胞中受体介导的Ca2 +进入的阻滞剂,阻止了ADP引起的[Na +] i升高。已经显示出该化合物仅部分阻止[Ca 2+] i的双相ADP引起的升高,对进入受体的快速,快速操作阶段具有选择性。 9.这些数据表明,ADP可以迅速激活血小板质膜中的Na +和二价阳离子可渗透的通道。

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