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pH-independent fluorescent chemosensor for highly selective lithium ion sensing

机译:独立于pH值的荧光化学传感器,用于高度选择性的锂离子感测

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Since lithium salts are used as pharmaceutically active compounds against manic-depressive psychosis, there is a demand to monitor the lithium concentration in blood in the narrow range of 0.6-1.2 mM effectively and safely. Here we report on an optical sensor approach for the determination of Li+, based on the design and synthesis of a novel lithium fluoroionophore KLI-1 and its polymer immobilizable derivative KLI-2, and the application to an optode. The novel lithium fluoroionophores rely on a tetramethyl "blocking subunit" bearing 14-crown-4 as a Li+-selective binding site and 4-methylcoumarin as a fluorophore, intramolecularly connected to show ICT-type wavelength shift for ratiometric fluorescence measurements. The fluoroionophores showed high selectivity for Li+ with binding-induced blue shift in the fluorescence spectra, no response to major biological interfering cations (K+, Ca2+, Mg2+), a selectivity of log k(Li+,Na+) = -2.4 over Na+ in solution, and no response to pH in the range of pH 3-10. A hydrophilic optode membrane with KLI-2 immobilized also showed good selectivity for Li+, pH independence in the physiological range (pH 6-8), and fully reversible signal changes. KLI-1 and KLI-2 are excellent Li+ fluorescent chemosensors that can be applied to quantitative measurements of lithium in clinical samples, although possible interference from Na+ has to be considered at the lower therapeutic level of Li+.
机译:由于锂盐用作抗躁狂抑郁症的药物活性化合物,因此需要有效且安全地监测血液中锂的浓度在0.6-1.2 mM的狭窄范围内。在这里,我们基于一种新型锂氟离子载体KLI-1及其聚合物固定衍生物KLI-2的设计与合成,报道了一种用于测定Li +的光学传感器方法,并将其应用于光电二极管。新型锂氟离子载体依赖于分子内连接的四甲基“封闭亚基”,该四甲基“封闭亚基”具有14个冠4作为Li +选择性结合位点,而4-甲基香豆素具有荧光团,可显示ICT型波长位移,用于比率荧光测量。氟离子载体显示出对Li +的高选择性,在荧光光谱中具有结合诱导的蓝移,对主要的生物干扰阳离子(K +,Ca2 +,Mg2 +)无响应,相对于溶液中的Na +选择性为log k(Li +,Na +)= -2.4 ,并且对pH范围在3-10之间的pH无响应。固定有KLI-2的亲水性光电膜也显示出对Li +的良好选择性,在生理范围内(pH 6-8)的pH独立性以及完全可逆的信号变化。 KLI-1和KLI-2是出色的Li +荧光化学传感器,可用于临床样品中锂的定量测量,尽管必须在较低的Li +治疗水平下考虑Na +可能产生的干扰。

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