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急性血清缺乏对培养的人皮肤成纤维细胞中钠钾稳态的影响。

Effect of acute serum depletion on Na+-K+ homeostasis in cultured human skin fibroblasts.

作者信息

Hopp L, Kuriyama S, Kino M, Aviv A

出版信息

J Cell Physiol. 1987 Jun;131(3):318-29. doi: 10.1002/jcp.1041310304.

Abstract

In order to elucidate changes in cell transport behavior of cultured human skin fibroblasts in response to acute serum depletion, we performed uptake and washout of 22Na+ and 86Rb+ as well as measurements of the intracellular Na+ and K+ levels in the presence and absence of ouabain. Pronounced and lasting increase in cellular Na+ and decrease in K+ were observed after removal of fetal bovine serum (FBS) from the medium. The sum of the Na+ and K+ contents (nEq/10(5) cells) was lower in FBS-free medium (mean +/- SD; 17.3 +/- 2.2) than in FBS-containing medium (26.2 +/- 3.8; P less than .02). Simultaneously, a decrease in cellular water volume was detected in the FBS-free medium. The cation uptake and washout data suggest that FBS removal primarily renders the cells more permeable to Na+ and K+ with a secondary stimulation of the ouabain-sensitive Na+ extrusion mechanism. FBS at a concentration of 0.2% prevented approximately 50% of the maximal increase in the 86Rb+ washout rate constant associated with FBS depletion. Ouabain (2 microM) produced an increase in the 86Rb+ washout rate constant. This effect was substantially larger in cells subjected to medium without FBS (from 0.0303 to 0.2500 min-1) than in fibroblasts incubated in medium with FBS (from 0.0107 to 0.0487 min-1). The cellular K+ content was drastically reduced by ouabain to a level not different in medium with or without FBS (33.9 +/- 4.5 to 1.75 +/- 0.38 and 16.7 +/- 1.4 to 1.4 +/- 0.13 nEq/10(5) cells, respectively). The 22Na+ washout data exhibited a three-exponential pattern. Analytical solutions of the washout data by means of two models (serial and parallel) with three compartments showed that FBS depletion resulted in increase of the size of all three compartments. It is concluded that in cultured human skin fibroblasts, FBS is essential to the maintenance of a normal Na+ and K+ homeostasis. The removal of FBS results in dramatic permutation of this homeostasis that develops within minutes and lasts for hours.

摘要

为了阐明培养的人皮肤成纤维细胞在急性血清缺乏时细胞转运行为的变化,我们进行了22Na+和86Rb+的摄取与洗脱实验,并在有无哇巴因的情况下测量了细胞内Na+和K+水平。从培养基中去除胎牛血清(FBS)后,观察到细胞内Na+显著且持续增加,K+减少。无FBS培养基中Na+和K+含量之和(nEq/10(5)个细胞)(平均值±标准差;17.3±2.2)低于含FBS培养基(26.2±3.8;P<0.02)。同时,在无FBS培养基中检测到细胞水体积减少。阳离子摄取和洗脱数据表明,去除FBS主要使细胞对Na+和K+的通透性增加,同时对哇巴因敏感的Na+外排机制有次要刺激作用。浓度为0.2%的FBS可阻止约50%与FBS缺乏相关的86Rb+洗脱速率常数的最大增加。哇巴因(2 microM)使86Rb+洗脱速率常数增加。这种作用在无FBS培养基中的细胞(从0.0303至0.2500 min-1)中比在含FBS培养基中培养的成纤维细胞(从0.0107至0.0487 min-1)中显著更大。哇巴因使细胞K+含量急剧降低至无FBS培养基和含FBS培养基中无差异的水平(分别从33.9±4.5至1.75±0.38以及从16.7±1.4至1.4±0.13 nEq/10(5)个细胞)。22Na+洗脱数据呈现三指数模式。通过具有三个隔室的两种模型(串联和平行)对洗脱数据进行解析求解表明,FBS缺乏导致所有三个隔室的大小增加。结论是,在培养的人皮肤成纤维细胞中,FBS对于维持正常的Na+和K+稳态至关重要。去除FBS会导致这种稳态在数分钟内发生显著改变,并持续数小时。

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