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硼酸衍生萘基吡啶受体作为糖的化学传感器。

Boronic Acid Appended Naphthyl-Pyridinium Receptors as Chemosensors for Sugars.

机构信息

Department of Radiation Oncology, Stanford University School of Medicine, Stanford, California, 94305, USA.

Radiology, Stanford University School of Medicine, Stanford, California, 94305, USA.

出版信息

Sci Rep. 2019 Apr 30;9(1):6651. doi: 10.1038/s41598-019-42812-8.

Abstract

There remains a need in clinics and research to have simple and sensitive detection systems that allow the detection and quantification of sugar markers of biomedical relevance such as sugars lactulose and mannitol for noninvasive gut permeability assessment. We have prepared a new class of boronic acid-appended naphthyl-pyridinium receptor compounds as chemosensors. These were studied for their ability to act as modular internal charge transfer (ICT) fluorescent probes or donor/acceptor pair ensembles where the receptor compound can act as a quencher for an anionic dye. As an ICT sensor, fluorescence intensity increased upon diol recognition, which stems from the neutralization of the pyridinium nitrogen that is perturbing the chromophoric properties. We found these ICT probes provide good sensitivity for disaccharide lactulose with low micromolar detection and quantification limits. In addition, their ability to form a non-fluorescent ground state complex with anionic reporter dyes, such as HPTS or TSPP, was examined as probes for various sugars. We have identified three receptor/quencher compounds with high quenching efficiency for anionic dyes. Subsequently, a range of sugars and sugar derivatives were tested for chemosenstivity of our probes. This study illustrates an approach for designing boronic acid-based chemoreceptors for the recognition and quantification of sugars and sugar derivatives.

摘要

临床上和研究中仍然需要简单而灵敏的检测系统,以便能够检测和定量生物医学相关的糖标志物,如乳糖醇和甘露醇,从而进行非侵入性的肠道通透性评估。我们已经制备了一类新型硼酸修饰的萘基-吡啶𬭩受体化合物作为化学传感器。研究了它们作为模块化内电荷转移 (ICT) 荧光探针或供体/受体对的能力,其中受体化合物可以作为阴离子染料的猝灭剂。作为 ICT 传感器,二醇识别后荧光强度增加,这源于吡啶氮的中性化,从而扰乱了发色团性质。我们发现这些 ICT 探针对低微摩尔检测限和定量限的二糖乳糖醇具有良好的灵敏度。此外,还研究了它们与阴离子报告染料(如 HPTS 或 TSPP)形成非荧光基态复合物的能力,作为各种糖的探针。我们已经确定了三种对阴离子染料具有高猝灭效率的受体/猝灭化合物。随后,测试了一系列糖和糖衍生物对探针的化学敏感性。这项研究说明了一种基于硼酸的化学受体设计方法,用于识别和定量糖和糖衍生物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8698/6491427/6631a7ab6acb/41598_2019_42812_Fig1_HTML.jpg

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