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Confocal fluorescence lifetime imaging of ion concentrations

机译:离子浓度的共聚焦荧光寿命成像

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Ion concentrations in biological cells are widely studied with fluorescent probes. The probes have a high selectivity for specific ions and exhibit marked changes in their photophysical properties upon binding ions. The fluorescence decay behavior of the probes in the presence of ions can now be used as a contrast mechanism for imaging purposes. This technique can be further exploited for the quantitative determination of ion concentrations within living cells. Here we describe the fluorescence lifetime properties of the free calcium probe CalciumGreen and the pH probe carboxy SNAFL-1. The potential of fluorescence lifetime imaging is illustrated by the imaging of Ca$+2$PLU$/ concentrations and pH in single cells. In the case of the emission ratio probe c.SNAFL-1, it was possible to determine the pH in the same cell using both the ratio and the fluorescence lifetime method. It turns out that no cumbersome in vivo calibration procedure is required when c.SNAFL-1 is used for quantitative fluorescence lifetime imaging of pH in single cells.
机译:在生物细胞离子浓度被广泛地用荧光探针研究。探针具有用于特定的离子,并在其光物理性质结合后表现出离子显着的变化的高选择性。中的离子的存在下,探针的荧光衰减行为,现在可以用作对比机构,用于成像目的。这种技术可以进一步利用对活体细胞内的定量测定离子浓度。在这里,我们描述了游离钙探针CalciumGreen和pH探针羧基SNAFL-1的荧光寿命特性。荧光寿命成像的电位被Ca $ + 2 $ $ PLU /浓度的单细胞成像和pH示出。在发射比探针c.SNAFL-1的情况下,有可能来确定同时使用比和荧光寿命的方法在同一个小区中的pH值。事实证明,当c.SNAFL-1用于在单细胞的pH的定量荧光寿命成像体内校准过程没有繁琐是必需的。

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