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用于生物医学应用的超分子聚合型化学传感器:作为腺嘌呤检测化学传感器的发光锌金属聚合物的设计与合成。

Supramolecular polymeric chemosensor for biomedical applications: design and synthesis of a luminescent zinc metallopolymer as a chemosensor for adenine detection.

机构信息

Department of Science and Environmental Studies, The Hong Kong Institute of Education, Tai Po, New Territories, HK SAR, China.

出版信息

J Fluoresc. 2012 Nov;22(6):1539-46. doi: 10.1007/s10895-012-1092-7. Epub 2012 Jul 6.

Abstract

Adenine is an important bio-molecule that plays many crucial roles in food safety and biomedical diagnostics. Differentiating adenine from a mixture of adenosine and other nucleic bases (guanine, thymine, cytosine, and uracil) is particularly important for both biological and clinical applications. A neutral Zn(II) metallosupramolecular polymer based on acyl hydrazone derived coordination centres (P1) were generated through self-assembly polymerization. It is a linear coordination polymer that behaves like self-standing film. The synthesis, (1)H-NMR characterization, and spectroscopic properties of this supramolecular material are reported. P1 was found to be a chemosensor specific to adenine, with a luminescent enhancement. The binding properties of P1 with common nucleic bases and nucleosides reveal that this supramolecular polymer is very selective to adenine molecules (~20 to 420 times more selectivity than other nucleic bases). The formation constant (K) of P1 to adenine was found to be log K = 4.10 ± 0.02. This polymeric chemosensor produces a specific response to adenine down to 90 ppb. Spectrofluorimetric and (1)H-NMR titration studies showed that the P1 polymer allows each Zn(II) coordination centre to bind to two adenine molecules through hydrogen bonding with their imine and hydrazone protons.

摘要

腺嘌呤是一种重要的生物分子,在食品安全和生物医学诊断中发挥着许多关键作用。将腺嘌呤与腺苷和其他核酸碱基(鸟嘌呤、胸腺嘧啶、胞嘧啶和尿嘧啶)的混合物区分开来,对于生物和临床应用都非常重要。通过自组装聚合,生成了一种基于酰腙衍生配位中心的中性 Zn(II) 金属超分子聚合物(P1)。它是一种类似于自支撑膜的线性配位聚合物。报道了这种超分子材料的合成、(1)H-NMR 表征和光谱性质。发现 P1 是一种对腺嘌呤具有特异性的荧光增强化学传感器。P1 与常见核酸碱基和核苷的结合性质表明,这种超分子聚合物对腺嘌呤分子具有非常高的选择性(比其他核酸碱基高约 20 至 420 倍)。发现 P1 与腺嘌呤的形成常数(K)为 log K = 4.10 ± 0.02。这种聚合型化学传感器对腺嘌呤的检测下限低至 90 ppb。荧光光谱和(1)H-NMR 滴定研究表明,P1 聚合物允许每个 Zn(II) 配位中心通过与它们的亚胺和腙质子形成氢键,结合两个腺嘌呤分子。

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