Polyarylether-based COFs coordinated by Tb for the fluorescent detection of anthrax-biomarker dipicolinic acid

In this study, a rare-earth hybrid luminescent material (lanthanide@COF) was constructed for the detection of a biomarker for anthrax (dipicolinic acid, DPA). JCU-505-COOH was prepared by the hydrolysis of the cyano group in JCU-505 via a post-synthetic modification strategy, then the carboxyl group...

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Veröffentlicht in:Journal of materials chemistry. B, Materials for biology and medicine Materials for biology and medicine, 2024-01, Vol.12 (2), p.466-474
Hauptverfasser: Liu, Yinsheng, Wang, Mingyue, Hui, Yinfei, Sun, Lei, Hao, Yanrui, Ren, Henlong, Guo, Hao, Yang, Wu
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Sprache:eng
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Zusammenfassung:In this study, a rare-earth hybrid luminescent material (lanthanide@COF) was constructed for the detection of a biomarker for anthrax (dipicolinic acid, DPA). JCU-505-COOH was prepared by the hydrolysis of the cyano group in JCU-505 via a post-synthetic modification strategy, then the carboxyl groups in JCU-505-COOH coordinated with Tb 3+ ions, similar to pincer vising nut. The prepared Tb 3+ @JCU-505-COOH exhibited a turn-on response toward DPA, which allowed the lanthanide@COF to serve as a fluorescence sensor with excellent selectivity and high sensitivity (binding constant K a = 3.66 × 10 3 ). The fluorescent probe showed satisfactory performance for the determination of DPA in saliva and urine with a detection limit of 0.6 μM. Moreover, we established a facile point-of-care testing (POCT) using the Tb 3+ @JCU-505-COOH-based fluorescent test paper together with a smartphone for the initial diagnosis of anthrax. As expected, Tb 3+ @JCU-505-COOH showed great potential for the rapid screening of anthrax due to low cost, simple operation, and wide applicability. In this study, a rare-earth hybrid luminescent material (lanthanide@COF) was constructed for the detection of a biomarker for anthrax (dipicolinic acid, DPA).
ISSN:2050-750X
2050-7518
DOI:10.1039/d3tb02070c