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Ratiometric Fluorescent Strategy for Localizing Alkaline Phosphatase Activity in Mitochondria Based on the ESIPT Process

机译:基于ESIPT过程,对线粒体碱性磷酸酶活性定位碱性磷酸酶活性的比例荧光策略

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摘要

Fluorescent probes are powerful tools for detecting and mapping the species of interest in vitro and in vivo. Although the probes always show high selectivity and sensitivity, they are usually affected by some factors, such as detecting conditions and the probe concentrations. Ratiometric fluorescent strategies, possessing advantage of low background noise, would solve the problem effectively and lead to a higher sensing performance. Thus, an ESIPT-based ratiometric probe (HBTP-mito) was developed on the basis of a phosphorylated 2-(2'-hydroxyphenyl)-benzothiazole derivative for the determination of ALP activity. HBTP-mito is water soluble and emits green fluorescence in TBS buffer due to the blockage of ESIPT. Upon the introduction of ALP, the phosphate ester of HBTP-mito was hydrolyzed and the ESIPT process was restored. Accordingly, the fluorescence at 514 nm decreases, while emission at 650 nm shows a "turn-on" response. The ratio of intensity (I-514nm/I-650nm) decreases linearly with ALP activity increasing from 0 to 60 mU/mL, obtained an LOD of 0.072 mU/mL. The favorable performance of the probe enables its application not only in the detection of ALP activity in biological samples, but also in the localization of the ALP levels in living cells and in vivo.
机译:荧光探针是用于在体外和体内检测和映射兴趣物种的强大工具。虽然探针总是显示出高选择性和敏感性,但它们通常受到一些因素的影响,例如检测条件和探针浓度。具有低背景噪声的优势的比率荧光策略将有效地解决问题并导致更高的感测性能。因此,基于磷酸化的2-(2'-羟基苯基) - 苯并噻唑衍生物来确定基于ESIPT的比率探针(HBTP-MITO)以确定ALP活性。 HBTP-MITO是水溶性的,由于eSipt堵塞,在TBS缓冲器中发出绿色荧光。在引入ALP后,HBTP-MITO的磷酸酯是水解的,并恢复ESIPT方法。因此,514nm的荧光降低,而650nm的发射显示出“导通”反应。强度(I-514nm / I-650nm)的比率随从0至60μm/ ml的增加而线性降低,得到0.072μm/ ml的床。探针的有利性能使其应用不仅可以在生物样品中的ALP活性检测,而且在活细胞和体内的ALP水平的定位中。

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