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A fluorophore-conjugated ascorbic acid functions for the visualization of sodium vitamin C transporters in living cells

机译:荧光团结合的抗坏血酸的功能是可视化活细胞中的维生素C钠转运蛋白

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摘要

Human beings do not produce ascorbic acid (AA) and acquire AA through the sodium vitamin C transporters (SVCTs). Changes in the expression or function of SVCT proteins may be associated with human diseases. In this regard, imaging of SVCTs in living cells is important. However, the options for live-cell labelling of SVCTs were very limited. In this work, we synthesized a new small-molecule fluorescent probe RB-A-Vc, and demonstrated its application in selectively visualizing SVCTs in living cells. This probe features visible excitation and emission profiles, can easily enter into membranes, has high selectivity for SVCTs, and can monitor up-regulation or down-regulation of SVCT expression in living cells. We emphasize that this small-molecule probe is suitable for subcellular localization of SVCTs in living cells. This study provides a useful tool for simultaneously monitoring the level and distribution of intracellular SVCTs, which is probably more useful for evaluating the changes induced by external stimulations. We propose that this probe for SVCT imaging and the corresponding method could be applied to other cell lines, tissues, and species.
机译:人类不会产生抗坏血酸(AA),也不会通过维生素C钠转运蛋白(SVCT)获得AA。 SVCT蛋白表达或功能的改变可能与人类疾病有关。在这方面,活细胞中的SVCT成像非常重要。但是,SVCT活细胞标记的选项非常有限。在这项工作中,我们合成了一种新的小分子荧光探针RB-A-Vc,并展示了其在选择性可视化活细胞中的SVCT中的应用。该探针具有可见的激发和发射曲线,可以轻松进入膜,对SVCT具有高选择性,并可以监测活细胞中SVCT表达的上调或下调。我们强调,这种小分子探针适用于活细胞中SVCT的亚细胞定位。这项研究提供了一个有用的工具,可以同时监测细胞内SVCT的水平和分布,这对于评估外部刺激引起的变化可能更有用。我们建议该探针用于SVCT成像和相应的方法可以应用于其他细胞系,组织和物种。

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