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首页> 外文期刊>Analytical and bioanalytical chemistry >Selective non-enzymatic total bilirubin detection in serum using europium complexes with different β-diketone-derived ligands as luminescence probes
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Selective non-enzymatic total bilirubin detection in serum using europium complexes with different β-diketone-derived ligands as luminescence probes

机译:选择性非酶促胆红素检测在血清中使用铕配合物用不同的β-二酮来源的配体作为发光探针

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摘要

Three europium(III) complexes, Eu(ectfd)~(3)(Hectfd = 1-(9-ethyl-9H-carbazol-7-yl)-4,4,4-trifluorobutane-1,3-dione), Eu(tta)~(3)(Htta = 4,4,4-trifluoro-1-(thiophen-2-yl)-butane-1,3-dione), and Eu(dbt)~(3)(Hdbt = 2-(4',4',4'-trifluoro-1',3'-dioxobutyl)dibenzothiophene), were synthesized and employed to detect total bilirubin (BR) in blood-serum samples. UV-visible absorption and fluorescence (FL) spectroscopies were used to evaluate the selectivity of each europium (III) fluorescence probe to BR, which was shown to remarkably reduce the luminescence intensities of the europium(III) complexes at a wavelength of 612 nm. The luminescence intensity of each complex is linearly related to BR concentration. Eu(tta)~(3)was shown to be the more-appropriate fluorescence probe for the sensitive and reliable detection of total BR in blood serum samples than either Eu(ectfd)~(3)or Eu(dbt)~(3). This observation can be ascribed to special σ-hole bonding between Htta and BR. In addition, the optimal pH test conditions for the detection of BR in human serum by the Eu(tta)~(3)probe were determined. Sensitivity was shown to be dramatically affected by the pH of the medium. The experimental results reveal that pH 7.5 is optimal for this probe, which coincides with the pH of human serum. Furthermore, BR detection using the Eu(tta)~(3)luminescence probe is simple, practical, and relatively free of interference from coexisting substances; it has a minimum detection limit (DL) of 68 nM and is a potential candidate for the routine assessment of total BR in serum samples. Graphical Abstract ?.
机译:三个铕(III)配合物,EU(ECTFD)〜(3)(偶联= 1-(9-乙基-9H-咔唑-7-基)-4,4,4-三氟丁烷-1,3-二酮),欧盟(TTA)〜(3)(HTTA = 4,4,4-三氟-1-(噻吩-2-基) - 丁烷-1,3-二酮)和欧盟(DBT)〜(3)(HDBT = 2 - (4',4',4'-三氟-1',3'-二氧丁基)二苯甲酸丁烯)被合成并用于检测血清样品中的总胆红素(BR)。使用UV可见的吸收和荧光(FL)光谱法评估每种铕(III)荧光探针至BR的选择性,这显示出显着降低612nm波长下的铕(III)配合物的发光强度。每个复合物的发光强度与Br浓度线性相关。 EU(TTA)〜(3)显示为血清样品中总Br的敏感和可靠检测的较合适的荧光探针,而不是Eu(ECTFD)〜(3)或欧盟(DBT)〜(3) 。该观察可以归因于HTTA和BR之间的特殊Σ-孔键合。另外,确定了EU(TTA)〜(3)探针检测人血清中Br的最佳pH试验条件。显示灵敏度被培养基的pH显着影响。实验结果表明,pH 7.5对该探针最佳,这与人血清的pH相符。此外,使用EU(TTA)〜(3)发光探针的BR检测简单,实用,相对不受共存物质的干扰;它具有68nm的最小检测限(DL),是血清样本中总Br的常规评估的潜在候选者。图形概要 ?。

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