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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Dual lanthanide-doped complexes: the development of a time-resolved ratiometric fluorescent probe for anthrax biomarker and a paper-based visual sensor
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Dual lanthanide-doped complexes: the development of a time-resolved ratiometric fluorescent probe for anthrax biomarker and a paper-based visual sensor

机译:双镧系掺杂复合物:开发用于炭疽生物标志物的时间分辨率荧光探针和基于纸张的视觉传感器

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In this work, a novel time-resolved ratiometric fluorescent probe based on dual lanthanide (Tb: terbium, and Eu: europium)-doped complexes (Tb/DPA@SiO2-Eu/GMP) has been designed for detecting anthrax biomarker (dipicolinic acid, DPA), a unique and major component of anthrax spores. In such complexes-based probe, Tb/DPA@SiO2 can serve as a stable reference signal with green fluorescence and Eu/GMP act as a sensitive response signal with red fluorescence for ratiometric fluorescent sensing DPA. Additionally, the probe exhibits long fluorescence lifetime, which can significantly reduce the autofluorescence interferences from biological samples by using time-resolved fluorescence measurement. More significantly, a paper-based visual sensor for DPA has been devised by using filter paper embedded with Tb/DPA@SiO2-Eu/GMP, and we have proved its utility for fluorescent detection of DPA, in which only a handheld UV lamp is used. In the presence of DPA, the paper-based visual sensor, illuminated by a handheld UV lamp, would result in an obvious fluorescence color change from green to red, which can be easily observed with naked eyes. The paper-based visual sensor is stable, portable, disposable, cost-effective and easy-to-use. The feasibility of using a smartphone with easy-to-access color-scanning APP as the detection platform for quantitative scanometric assays has been also demonstrated by coupled with our proposed paper-based visual sensor. This work unveils an effective method for accurate, sensitive and selective monitoring anthrax biomarker with backgroud-free and self-calibrating properties.
机译:在这项工作中,基于双镧系元素(Tb:铽和欧洲核苷酸:铕)的新型时间分辨率荧光探针(TB / DPA-SiO2-EU / GMP)设计用于检测炭疽生物标志物(二辛溶胶酸,DPA),炭疽孢子的独特和主要组成部分。在这些基于复合物的探针中,Tb / DPA / @ SiO 2可以用作具有绿色荧光和EU / GMP的稳定参考信号,作为具有红色荧光的敏感响应信号,用于具体计量荧光感测DPA。另外,探针表现出长荧光寿命,这可以通过使用时间分辨荧光测量来显着降低生物样品的自发荧光干扰。更重要的是,通过使用嵌入TB / DPA @ SiO2-EU / GMP的滤纸,设计了一种基于DPA的纸张视觉传感器,并证明了其用于DPA的荧光检测的实用性,其中仅是手持式紫外线灯用过的。在DPA的存在下,由手持式紫外灯照射的纸张视觉传感器将导致从绿色变为红色的明显荧光,这可以用肉眼轻松观察到。基于纸张的视觉传感器稳定,便携式,一次性,经济高效且易于使用。还通过与我们所提出的基于纸张的视觉传感器相结合,使用具有易于访问颜色扫描应用的智能手机作为定量扫描测定的检测平台的可行性。这项工作推出了一种有效的方法,用于准确,敏感和选择性监测炭疽生物标志物,其具有无抗追随和自校准性能。

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