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Combining hydrophilic and hydrophobic environment sensitive dyes to detect a wide range of cellular polarity

机译:将亲水和疏水环境敏感染料组合以检测各种细胞极性

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Intracellular polarity is an important parameter of pathological and biological phenomena of cells; abnormal polarities are associated with diabetes, neurological diseases, and cancer. However, previously reported polarity probes have issues with quantitatively detecting intracellular polarities, can measure only a limited range of polarities, and can only detect specific intracellular regions. Here, we developed a novel two-dye system, RPS-1 , that contains a new “turn-on” polarity probe ( Dye1 ) based on a spiropyran intramolecular ring closing–opening system activated in polar protic solvents, and a benzothiadiazole containing dye ( Dye3 ), which emits only in non-polar solvents with a large stoke shift. Individually, Dye1 and Dye3 selectively localized to lysosome and lipid droplets, respectively; however, combining these dyes, which have completely different characteristics, via a piperazine linker resulted in the staining of various intracellular organelles. Therefore, as Dye1 and Dye3 have the same absorption but different emissions, combining them resulted in a ratiometric polarity probe that could quantitatively measure a wider polarity range inside the cell using a single excitation source. In addition, ratiometric imaging using our RPS-1 probe to quantitatively detect the distribution of polarity in different cell lines indicated that lysosomes were the most polar organelles in the cell.
机译:细胞内极性是细胞病理和生物学现象的重要参数;异常极性与糖尿病,神经疾病和癌症有关。然而,先前报道的极性探针具有定量检测细胞内极性的问题,可以仅测量有限的极性范围,并且只能检测特定的细胞内区域。在这里,我们开发了一种新型的两种染料系统,RPS-1,其含有基于螺旋腔分子区闭合开启系统的新的“导通”极性探针(DYE1),并在极性质粒溶剂中激活,以及含苯并噻唑含量的染料(染料3),其仅在具有大叉蛎换档的非极性溶剂中发出。单独,染料1和染料3分别选择性地定位于溶酶体和脂液滴;然而,通过哌嗪连接物组合具有完全不同特性的这些染料导致各种细胞内细胞器的染色。因此,随着染料1和染料3具有相同的吸收但不同的排放,组合它们导致测量极性探针,其可以使用单个激励源定量测量电池内的更宽极性范围。另外,使用RPS-1探针定量检测不同细胞系中极性分布的比例成像表明溶酶体是细胞中最极性的细胞器。

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