首页> 外文期刊>The Journal of Physiology >Na+-Ca2+ exchange and its implications for calcium homeostasis in primary cultured rat brain microvascular endothelial cells.
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Na+-Ca2+ exchange and its implications for calcium homeostasis in primary cultured rat brain microvascular endothelial cells.

机译:Na + -Ca2 +交换及其对原代培养的大鼠脑微血管内皮细胞中钙稳态的影响。

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1. The role of Na+-Ca2+ exchange in the regulation of the cytosolic free Ca2+ concentration ([Ca2+]i) was studied in primary cultured rat brain capillary endothelial cells. [Ca2+]i was measured by digital fluorescence imaging in cells loaded with fura-2. 2. ATP (100 microM) applied for a short period of time (6 s) caused a rise in [Ca2+]i from 127 +/- 3 (n = 290) to 797 +/- 25 nM, which then declined to the resting level, with a t time required for [Ca2+]i to decline to half of peak [Ca2+]i) of 5.4 +/- 0.09 s. This effect was independent of external Ca2+ and could be abolished by previously discharging the Ca2+ pool of the endoplasmic reticulum with thapsigargin (1 microM). 3. Application of thapsigargin (1 microM) or cyclopiazonic acid (10 microM) to inhibit the Ca2+-ATPase of the endoplasmic reticulum 6 s prior to ATP application did not influence the peak [Ca2+]i but greatly reduced the rate of decline of [Ca2+]i, with t values of 15 +/- 1.6 and 23 +/- 3 s, respectively. 4. In the absence of external Na+ (Na+ replaced by Li+ or N-methylglucamine) the basal [Ca2+]i was slightly elevated (152 +/- 6 nM) and the restoration of [Ca2+]i after the ATP stimulation was significantly slower (t , 7.3 +/- 0.46 s in Li+ medium, 8.12 +/- 0.4 s in N-methylglucamine medium). 5. The external Na+-dependent component of the [Ca2+]i sequestration was also demonstrated in cells stimulated by ATP subsequent to addition of cyclopiazonic acid; in a Na+-free medium [Ca2+]i remained at the peak level in 88 % of the cells after stimulation with ATP. 6. Addition of monensin (10 microM) in the presence of external Na+ increased the resting [Ca2+]i to 222 +/- 9 nM over approximately 1 min and subsequent removal of extracellular sodium resulted in a further increase in [Ca2+]i to a peak of 328 +/- 11 nM, which was entirely dependent on external Ca2+. 7. These findings indicate that a functional Na+-Ca2+ exchanger is present at the blood-brain barrier, which plays a significant role in shaping the stimulation-evoked [Ca2+]i signal and is able to work in reverse mode under pharmacological conditions.
机译:1.在原代培养的大鼠脑毛细血管内皮细胞中研究了Na + -Ca2 +交换在调节细胞质游离Ca2 +浓度([Ca2 +] i)中的作用。通过数字荧光成像在装有fura-2的细胞中测量[Ca2 +] i。 2.短时间(6 s)施加的ATP(100 microM)导致[Ca2 +] i从127 +/- 3(n = 290)升高到797 +/- 25 nM,然后下降到静止水平,在[Ca2 +] i所需的时间下降到5.4 +/- 0.09 s的峰值[Ca2 +] i)的一半时。这种作用与外部Ca2 +无关,并且可以通过事先用毒胡萝卜素(1 psi)释放内质网的Ca2 +库来消除。 3.在应用ATP之前6 s,应用毒胡萝卜素(1 microM)或环吡唑酸(10 microM)抑制内质网的Ca2 + -ATPase不会影响[Ca2 +] i峰,但大大降低了[Ca2 +] i的下降速率。 Ca 2+] i,t值分别为15 +/- 1.6和23 +/- 3 s。 4.在没有外部Na +(Na +被Li +或N-甲基葡糖胺替代)的情况下,基础[Ca2 +] i略微升高(152 +/- 6 nM),ATP刺激后[Ca2 +] i的恢复显着减慢(t,在Li +介质中为7.3 +/- 0.46 s,在N-甲基葡糖胺介质中为8.12 +/- 0.4 s)。 5. [Ca2 +] i螯合的外部Na +依赖性成分也显示在添加环吡唑酸后由ATP刺激的细胞中。在无Na +的培养基中,ATP刺激后[88]的细胞中[Ca2 +] i保持在峰值水平。 6.在外部Na +存在下添加莫能菌素(10 microM)在大约1分钟内使静止的[Ca2 +] i增加到222 +/- 9 nM,随后除去细胞外钠导致[Ca2 +] i进一步增加。峰值为328 +/- 11 nM,这完全取决于外部Ca2 +。 7.这些发现表明,在血脑屏障中存在功能性的Na + -Ca2 +交换子,在形成刺激诱发的[Ca2 +] i信号方面起着重要作用,并且在药理学条件下可以逆向工作。

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