首页> 美国卫生研究院文献>The Journal of Physiology >Agonist-stimulated divalent cation entry into single cultured human umbilical vein endothelial cells.
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Agonist-stimulated divalent cation entry into single cultured human umbilical vein endothelial cells.

机译:激动剂刺激的二价阳离子进入单一培养的人脐静脉内皮细胞。

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摘要

1. The free cytoplasmic Ca2+ concentration ([Ca2+]i) can be measured using Fura-2 in superfused single human umbilical vein endothelial cells. When an endothelial cell is stimulated by a maximal dose of histamine (100 microM), [Ca2+]i rises to a peak and then falls back to a maintained plateau which is due to a stimulated Ca2+ influx. 2. If extracellular Ca2+ is replaced by 50 microM-Mn2+ then 100 microM-histamine causes a rise in [Ca2+]i accompanied by a fluorescence quench that signals the stimulated entry of Mn2+ into the cytoplasm. 3. If in Ca2(+)-free solution a cell is stimulated by 100 microM-histamine for 120 s to discharge the internal Ca2+ store, and then exposed to 50 microM-Mn2+ after removal of the histamine, a similar stimulated Mn2+ entry is seen. This quench is unaffected by readdition of histamine and is not seen if the store is refilled by exposure to 1 mM-extracellular Ca2+ for 180 s before exposure to the Mn2+. 4. The refilling of the internal store by exposure to 1 mM-Ca2+ and the stimulated entry of Mn2+ are both blocked by 2 mM-Ni2+. 5. If [Ca2+]i is stimulated to produce repetitive spikes by a low dose of histamine (0.3-1 microM) in nominally Ca2(+)-free solution containing Mn2+, then the stimulated quench is uniform and is not modulated by the [Ca2+]i spiking. 6. If the internal store is discharged by exposure to histamine in Ca2(+)-free solution and then refilled for a short period then the cell is in a state where the internal store is partly full to an extent that depends on the duration of the refilling. In such an experiment, the rate of Mn2+ influx may be estimated by measuring the rate of quench during a short exposure to 50 microM-Mn2+. The rate of Mn2+ entry varies inversely with the degree of fullness of the internal Ca2+ store. 7. If a similar experiment is repeated but with the fullness of the internal store being varied by varying the period of the initial exposure to 100 microM-histamine, with no refilling, the same inverse relationship between Mn2+ influx and fullness of the internal store is obtained. 8. These experiments show that Mn2+ enters human umbilical vein endothelial cells following agonist stimulation by a pathway that is controlled by the degree of fullness of the internal store; it does not, however, enter the cytoplasm by exactly the same route as Ca2+.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:1.可以使用Fura-2在融合的单个人脐静脉内皮细胞中测量游离细胞质Ca2 +浓度([Ca2 +] i)。当最大剂量的组胺(100 microM)刺激内皮细胞时,[Ca2 +] i上升到一个峰值,然后又回落到维持的平稳期,这是由于受刺激的Ca2 +涌入所致。 2.如果用50 microM-Mn2 +代替细胞外Ca2 +,则100 microM-组胺会导致[Ca2 +] i升高,并伴随荧光猝灭,这表明受刺激的Mn2 +进入细胞质。 3.如果在不含Ca2(+)的溶液中将细胞用100 microM-组胺刺激120 s,以释放内部Ca2 +存储,然后在去除组胺后暴露于50 microM-Mn2 +,则类似的刺激Mn2 +进入是看过。该猝灭不受组胺再配位的影响,并且如果在暴露于Mn2 +之前暴露于1 mM细胞外Ca2 + 180 s来重新填充存储库,则看不到该猝灭。 4.通过暴露于1 mM-Ca2 +来补充内部存储器以及刺激的Mn2 +进入均被2 mM-Ni2 +阻止。 5.如果在少量含有Mn2 +的不含Ca2 +的溶液中用低剂量的组胺(0.3-1 microM)刺激[Ca2 +] i产生重复的尖峰,则受激淬灭是均匀的,不受[ Ca2 +] i加标。 6.如果内部存储通过在不含Ca2(+)的溶液中暴露于组胺而放电,然后再填充一小段时间,则电池处于内部存储部分充满的状态,具体程度取决于电池的持续时间。补充。在这样的实验中,可以通过测量在短时间暴露于50μM-Mn2+期间的淬灭速率来估计Mn 2+流入的速率。 Mn2 +的进入速率与内部Ca2 +储存的饱满程度成反比。 7.如果重复类似的实验,但通过改变初次暴露于100 microM组胺的时间来改变内部存储的充满度,并且不进行重新填充,则Mn2 +流入量和内部存储的充满度之间的逆关系相同。获得。 8.这些实验表明,在激动剂刺激下,Mn2 +通过一种受内部储存的充实度控制的途径进入人脐静脉内皮细胞。但是,它不会通过与Ca2 +完全相同的途径进入细胞质。(抽象截短为400字)

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