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基于铽(III)功能化石墨相氮化碳纳米片的炭疽生物标志物的比率荧光检测。

Ratiometric fluorescence detection of anthrax biomarker based on terbium (III) functionalized graphitic carbon nitride nanosheets.

机构信息

Department of Chemistry, Fudan University, 2005 Songhu Road, Shanghai, 200438, China.

Department of Chemistry, Fudan University, 2005 Songhu Road, Shanghai, 200438, China.

出版信息

Talanta. 2021 Aug 1;230:122311. doi: 10.1016/j.talanta.2021.122311. Epub 2021 Mar 16.

DOI:10.1016/j.talanta.2021.122311
PMID:33934776
Abstract

Detection of anthrax biomarker dipicolinic acid (DPA) is of great importance upon the crisis of bioterrorism. Development of fluorescent materials for DPA detection, particularly one that fully depends on single luminescent response, faces the challenge of being susceptible to interferences. The accompanying accuracy problems offer great opportunities for the establishment of more reliable ratiometric analysis method. Herein, a ratiometric fluorescent probe based on terbium functionalized graphitic carbon nitride nanosheets (Tb-g-CNNS) is attempted for quantitative detection of DPA to address the distinct function of g-CNNS as both carrier and reference fluorophore, which is a so-far unexplored option in fluorescent detection approaches. We achieve the incorporation of Tb into framework of g-CNNS by using a simple synthetic strategy comprised of thermal pyrolysis and ultrasonic exfoliation. Combining the reference signal over g-CNNS at 440 nm (I) with the response signal of Tb at 546 nm (I), concentration of DPA can be easily calculated via its linear correlation with the intensity ratio (I/I), giving a precise measurement towards DPA with a detection limit as low as 9.9 nM. Besides enabling an excellent self-calibrating detection of DPA, this work also inspires broader use of g-CNNS for relevant process.

摘要

炭疽生物标志物吡咯烷二羧酸(DPA)的检测在生物恐怖主义危机中非常重要。开发用于 DPA 检测的荧光材料,特别是完全依赖于单一发光响应的荧光材料,面临着易受干扰的挑战。随之而来的准确性问题为建立更可靠的比率分析方法提供了很好的机会。在此,尝试了一种基于铽功能化石墨相氮化碳纳米片(Tb-g-CNNS)的比率荧光探针,用于定量检测 DPA,以解决 g-CNNS 作为载体和参考荧光团的独特功能,这在荧光检测方法中是一个尚未探索的选择。我们通过使用简单的热解和超声剥离的合成策略,实现了将 Tb 掺入 g-CNNS 的框架中。通过将 440nm 处的 g-CNNS 的参考信号(I)与 546nm 处 Tb 的响应信号(I)结合,通过与强度比(I/I)的线性相关关系,可以轻松计算 DPA 的浓度,从而对 DPA 进行精确测量,检测限低至 9.9nM。除了能够对 DPA 进行出色的自校准检测外,这项工作还为 g-CNNS 在相关过程中的更广泛应用提供了启示。

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引用本文的文献

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