双癸酸
炭疽杆菌
铕
发光
孢子
内孢子
化学
镧系元素
四苯乙烯
荧光
材料科学
微生物学
细菌
生物
有机化学
离子
光电子学
遗传学
物理
量子力学
聚集诱导发射
作者
Zafar Abbas,Ashis K. Patra
标识
DOI:10.1016/j.jlumin.2022.118726
摘要
The hazardous B. Anthracis are harmful pathogens causes anthrax could be potentially used as biothreat agents or bioweapons and have severe consequences to public health. These bacterial endospores contain dipicolinic acid (DPA) as calcium dipicolinate (CaDPA) as a primary cell wall constituent (1 M, 10 15 molecules/spore). The anthrax attacks in USA by shipping spores in postal mails have triggered the hunt for a simple, rapid, sensitive, and selective detection of Bacillus Anthracis spores. Therefore, a fast and sensitive sensing platform for anthrax spores is critical to contain such biothreats and outbreaks of infection. Herein, we intend to develop a sensitive and selective optical detection strategy for anthrax spore biomarker based on DPA-sensitized lanthanide luminescence. The anionic hard DPA 2− strongly binds with hard Ln 3+ forming thermodynamically stable complex and sensitizing unique Ln III time-resolved luminescence originated from f - f transitions with a high S/N ratio. Here, we employed and repurposed a simple luminescent Eu III complex: [Eu(TTA) 3 (H 2 O) 2 ] ( 1 ) (TTA: 3-thenoyltrifluoroacetonate) for the detection of the DPA 2− biomarker. Complex 1, when titrated with DPA, displayed instant Switch-ON optical response by 10-fold enhancement in the time-resolved luminescence (TRL) intensity of the 5 D 0 → 7 F 2 transition, which is sensitive to the changes in the symmetry of the Eu III primary coordination sphere. Upon binding with DPA, we also observed shifting of the excitation wavelength ( λ ex ) from ∼345 nm to 275 nm in the presence of ∼3.0 mol equivalent of dipicolinic acid. After stoichiometric reaction with DPA, the resulting complex has a long-lived, highly stable excited state of the Eu III ion with a lifetime of 2100 μs in solution compared to only 260 μs for the original probe. We proposed possible displacement of the TTA − and H 2 O from the primary coordination sphere of the Eu III ion by potent chelating antenna ligand DPA 2− . This reaction results in the formation of nine-coordinated [Eu(DPA) 3 ] 3- complex in solution confirmed by ESI-MS analysis. The luminescence response of the complex 1 is found highly selective for DPA in the presence of various interfering carboxylic acids and quantitatively able to detect up to 1.20 μ M. A Eu(III) β-diketonate complex was used as a luminescent “Turn-On” sensor for the detection of Bacillus Anthracis biomarker dipicolinic acid based on the competitive binding of the anionic ligands via an excitation switch. • An Eu(III) β -diketonate complex was used as a luminescent “Turn On” sensor for the detection of Anthrax biomarker dipicolinic acid. • Displacement of TTA by stronger binding dipicolinic acid from inner-coordination sphere of Eu III ions results in switching of excitation. • Selective detection of dipicolinic acid is achieved in the presence of various competing interferents.
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