Practicality and Compatibility of Cd(II) Coordination Polymer as Luminescent Sensor in Selective and Sensitive Detection of 3‐Nitrotyrosine Biomarker

Jingyao Yang, Feiyu Lu, Wencui Li, Lu Zhang, Jingrui Yin, Mohd. Muddassir, Liming Fan
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Abstract

Based on the mixed ligands of 1,4‐bis(2,4,6‐tricarboxylpyrid‐5‐yl)benzene (H6BTPB) and 1,4‐bis(imidazol‐1‐yl)benzene (bib), a new cadmium(II) coordination polymer with the molecular formula of {[Cd(bib)(μ2‐H2O)(H2O)2](H4BTPB)0.5(bib)0.5}n (CdCP) was constructed under solvothermal condition, and displayed a 3D supramolecular structure expanded by the hydrogen bonds between the 1D [Cd(bib)(μ2‐H2O)(H2O)2]n ladder chain and the guests. Profiting from its superior stability and inherent luminescence, the prepared CdCP dispalyed great potential as a highly sensitive and selective luminescent sensor in trace detection of 3‐NT biomarker in both water and real bodily fluids through the luminescence quenching effects, with the Ksv and LODs being 2.408×105 M‐1 and 30.3 nM in water, 2.230×105 M‐1 and 44.7 nM in diluted urine, 2.249×105 M‐1 and 43.9 nM in diluted serum, respectively. Subsequent mechanism studies indicated the synergistic effect of internal filtering effect, photo‐induced electron transfer, and fluorescence resonance energy transfer determining the luminescence quenching response of CdCP towards 3‐NT biomarker.
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镉(II)配位聚合物作为发光传感器选择性灵敏检测 3-硝基酪氨酸生物标记物的实用性和兼容性
基于1,4-双(2,4,6-三羧基吡啶-5-基)苯(H6BTPB)和1,4-双(咪唑-1-基)苯(bib)的混合配体,在溶热条件下构建了分子式为{[Cd(bib)(μ2-H2O)(H2O)2](H4BTPB)0.5(bib)0.5}n(CdCP),并通过 1D [Cd(bib)(μ2-H2O)(H2O)2]n 梯链与客体之间的氢键扩展出三维超分子结构。利用其优越的稳定性和固有的发光特性,制备的 CdCP 通过发光淬灭效应,在痕量检测水和真实体液中的 3-NT 生物标记物时,具有作为高灵敏度和高选择性发光传感器的巨大潜力,其 Ksv 和 LOD 分别为 2.在水中的 Ksv 和 LOD 分别为 2.408×105 M-1 和 30.3 nM,在稀释尿液中的 Ksv 和 LOD 分别为 2.230×105 M-1 和 44.7 nM,在稀释血清中的 Ksv 和 LOD 分别为 2.249×105 M-1 和 43.9 nM。随后的机理研究表明,CdCP 对 3-NT 生物标记物的发光淬灭反应是由内部过滤效应、光诱导电子传递和荧光共振能量转移协同作用决定的。
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