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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Fluorescence nano metal organic frameworks modulated by encapsulation for construction of versatile biosensor
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Fluorescence nano metal organic frameworks modulated by encapsulation for construction of versatile biosensor

机译:通过封装调节荧光纳米金属有机框架,用于构建多功能生物传感器

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摘要

The versatile fluorescence biosensors were implemented based on multipurpose nano metal organic frameworks (nMOFs) nanocomposites, which were obtained as fluorescence signal probes through encapsulation nMOFs. In this modulation process, the encapsulant bind with nMOFs through electrostatic attraction and hydrogen bond. Meanwhile, fluorescence enhancement of nMOFs were observed, accompanied by an increased in water solubility. The specific combination of target analyte triggers the release of the encapsulant and allows the target analyte to bind encapsulant to form a stable analyte-encapsulant complex. The complex binds tightly and promotes the photoinduced electron transfer from MOFs nanocomposites to the complex, thus resulting in reduce the fluorescence intensity of the MOFs nanocomposites. The results indicated that this novel system enables the specific and versatile detection of target biomolecules such as hemin and folic acid with high sensitivity and selectivity based on the choices of different encapsulant. Under optimized conditions, these biosensors show high sensitivity with a linear range from 0.16 to 12.5 mu g/mL for hemin and 0.15-17.5 mu nol/L for folic acid and detection limit of 47 ng/mL for hemin and 45 nmol/L folic acid. Moreover, it exhibits good performance of excellent selectivity, high stability, and acceptable fabrication reproducibility. This new multipurpose MOFs nanocomposites open avenues for combining together their properties and functionalities, and displaying novel important applications in fluorescence biosensors.
机译:基于多用途纳米金属有机骨架(NMOFS)纳米复合材料,实现了多种荧光生物传感器,其通过包封NMOF获得作为荧光信号探针的荧光信号探针。在该调节过程中,密封剂通过静电吸引和氢键与NMOF结合。同时,观察到NMOFS的荧光增强,伴随着水溶性的增加。目标分析物的特定组合触发密封剂的释放,并允许靶分析物结合密封剂以形成稳定的分析物 - 密封剂复合物。复合物紧密结合并促进从Mof纳米复合材料到复合物的光诱导的电子转移,从而导致MOF纳米复合材料的荧光强度降低。结果表明,这种新型系统能够基于不同密封剂的选择,使得具有高灵敏度和选择性的血红素和叶酸如血红素和叶酸的特异性和多功能检测。在优化的条件下,这些生物传感器显示出高灵敏度,线性范围为0.16至12.5μg/ ml,用于血红素的0.15-17.5μlnol/ l,对于血红蛋白和45nmol / l叶片的47ng / ml的检测限。酸。此外,它表现出优异的选择性,高稳定性和可接受的制造再现性的良好性能。该新型多功能MOF纳米复合材料开放途径,用于将其性能和功能组合在一起,并在荧光生物传感器中显示新的重要应用。

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