首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >A rhodamine based biocompatible chemosensor for Al3+, Cr3+ and Fe3+ ions: extraordinary fluorescence enhancement and a precursor for future chemosensors
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A rhodamine based biocompatible chemosensor for Al3+, Cr3+ and Fe3+ ions: extraordinary fluorescence enhancement and a precursor for future chemosensors

机译:用于Al3 +,Cr3 +和Fe3 +离子的罗丹明的生物相容性化学传感器:非凡的荧光增强和未来化学传感器的前兆

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摘要

A rhodamine based chemosensor, 3-(((2-(3 ',6 '-bis(ethylamino)-2 ',7 '-dimethyl-3-oxospiro[isoindoline-1,9 '-xanthen]-2-yl)ethyl)imino)methyl)-2-hydroxy-5-methylbenzaldehyde (HL-CHO), has been developed for the detection of Al3+, Cr3+ and Fe3+ ions. The absorbance of HL-CHO at 528 nm increases significantly in HEPES buffer in methanol:water (9:1, v/v) (pH 7.4) in the presence of Al3+, Cr3+ and Fe3+ ions with the alteration of solution color from colorless to pink. The fluorescence intensity of the probe at 550 nm enhances by 1465, 588 and 800 fold in the presence of Al3+, Cr3+ and Fe3+ ions, respectively. To the best of our knowledge, this huge increase in fluorescence intensity with Al3+ and Cr3+ has not been observed for other rhodamine based chemosensing systems. The weak fluorescence and no coloration of the probe are due to the existence of a spirolactam ring. The trivalent cations induce the opening of the spirolactam ring and consequently change the color and the fluorescence intensity followed by the 1:1 complex formation with HL-CHO which are evident from Job's analysis, ESI mass spectral analysis and elemental analysis. The quantum yield and lifetime of HL-CHO have increased considerably in the presence of the trivalent cations. The high sensitivity of the probe towards all the cations is evident from the nM order of LOD values. This has been used in living cell imaging studies with the human neuroblastoma SH-SY5Y cell line. Having appended -CHO groups for Schiff-base condensation with other amines, HL-CHO could be a potential precursor for future chemosensors.
机译:基于若丹明化学传感器,3 - (((2-(3 '6 ' - 二(乙氨基)-2',7' - 二甲基-3-氧代螺[异二氢吲哚-1,9“ - 呫吨] -2-基)乙基)亚氨基)甲基)-2-羟基-5-甲基苯甲醛(HL-CHO),已经开发了用于检测的Al 3+,(Ⅲ)和Fe 3+离子的。在的Al 3+,(Ⅲ)和Fe 3+离子的存在下,用溶液颜色的改变从无色到(pH 7.4)中的HL-CHO的在528倍纳米的增加显著在HEPES缓冲液中甲醇中的吸收:水(1,V / V 9)粉色的。由1465,588和800在550nm处增强了探针的荧光强度倍的Al 3+,(Ⅲ)和Fe 3+离子的存在下,分别。据我们所知,在铝离子和Cr3 +的荧光强度这一巨大的增长尚未观察到其他基于罗丹明化学传感系统。弱荧光和没有探针的着色是由于螺内酰胺环的存在。所述三价阳离子诱导螺内酰胺环的开口,并因此改变颜色和荧光强度,然后1:1复合物的形成与HL-CHO,其是明显的作业的分析,ESI质谱分析和元素分析。 HL-CHO的量子产率和寿命已经在三价阳离子的存在下显着增加。朝向所有阳离子探针的高灵敏度从LOD值的nm数量级是显而易见的。这在活细胞成像研究与人类神经母细胞瘤SH-SY5Y细胞系被使用。有附加-CHO组与其他胺席夫碱缩合,HL-CHO可以成为未来化学传感器潜在的前体。

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