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首页> 外文期刊>American Journal of Physiology >A plate reader-based method for cell water permeability measurement.
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A plate reader-based method for cell water permeability measurement.

机译:基于板读取器的细胞透水率测量方法。

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Cell volume and water permeability measurements in cultured mammalian cells are typically conducted under a light microscope. Many of the employed approaches are time consuming and not applicable to a study of confluent epithelial cell monolayers. We present here an adaptation of a calcein-quenching-based approach for a plate reader. A standard curve of fluorescence intensities at equilibrium has been recorded, following a shift from 285 mosmol/kgH(2)O to a series of altered extracellular osmolyte concentrations, ranging from final concentrations of 185 to 585 mosmol/kgH(2)O, by changing buffer d-mannitol concentrations. Similarly, according average cell volumes have been measured in suspension in a Coulter counter (particle-sizing device). Based on these measurements, we have derived an equation that facilitates the modeling of cell volume changes based on fluorescence intensity changes. We have utilized the method to study the role of a carboxyl-terminus aquaporin (AQP)-2 phosphorylation site, which is known to affect AQP2 membrane trafficking, in heterologous type I Madin-Darby canine kidney cells. We find that water permeability in cells expressing phosphorylation site mutants was in the following order: AQP2-S256D > AQP2 wild-type > AQP2-S256A. We propose that the method can be applied to study AQP function and more generally to study cell volume changes in adherent cell lines. Furthermore, it should be adaptable for AQP inhibitor screening in chemical compound libraries.
机译:培养的哺乳动物细胞中的细胞体积和透水性的测量通常在光学显微镜下进行。许多采用的方法很费时,并且不适用于融合上皮细胞单层的研究。我们在这里介绍一种适用于酶标仪的基于钙黄绿素猝灭的方法。从285 mosmol / kgH(2)O转变为一系列改变的细胞外渗透液浓度后,从最终浓度为185到mosmos / kgH(2)O,记录了平衡时荧光强度的标准曲线,改变缓冲液中的d-甘露醇浓度。类似地,已经在库尔特计数器(粒度测量装置)中的悬浮液中测量了相应的平均细胞体积。基于这些测量,我们得出了一个方程,该方程有助于基于荧光强度变化对细胞体积变化进行建模。我们已经利用该方法研究了羧基末端水通道蛋白(AQP)-2磷酸化位点在异源I型Madin-Darby犬肾细胞中的作用,该位点会影响AQP2膜运输。我们发现表达磷酸化位点突变体的细胞中的水渗透性按以下顺序排列:AQP2-S256D> AQP2野生型> AQP2-S256A。我们建议该方法可以用于研究AQP功能,更广泛地用于研究贴壁细胞系的细胞体积变化。此外,它应适用于化合物库中的AQP抑制剂筛选。

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