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基于锌(II)席夫碱配合物的荧光光学传感器用于生物胺检测。

Zinc(II) salphen complex-based fluorescence optical sensor for biogenic amine detection.

机构信息

Centre for Advanced Materials and Renewable Resources (CAMARR), Faculty of Science and Technology, Universiti Kebangsaan Malaysia, 43600, Bangi, Selangor, Malaysia.

Solar Energy Research Institute, Universiti Kebangsaan Malaysia, 43600, Bangi, Selangor, Malaysia.

出版信息

Anal Bioanal Chem. 2019 Sep;411(24):6449-6461. doi: 10.1007/s00216-019-02025-4. Epub 2019 Aug 7.

Abstract

Biogenic amines have attracted interest among researchers because of their importance as biomarkers in determining the quality of food freshness in the food industry. A rapid and simple technique that is able to detect biogenic amines is needed. In this work, a new optical sensing material for one of the biogenic amines, histamine, based on a new zinc(II) salphen complex was developed. The binding of zinc(II) complexes without an electron-withdrawing group (complex 1) and with electron-withdrawing groups (F, complex 2; Cl, complex 3) to histamine resulted in enhancement of fluorescence. All complexes exhibited high affinity for histamine [binding constant of (7.14 ± 0.80) × 10, (3.33 ± 0.03) × 10, and (2.35 ± 0.14) × 10 M, respectively]. Complex 2 was chosen as the sensing material for further development of an optical sensor for biogenic amines in the following step since it displayed enhanced optical properties in comparison with complexes 1 and 3. The optical sensor for biogenic amines used silica microparticles as the immobilisation support and histamine as the analyte. The optical sensor had a limit of detection for histamine of 4.4 × 10 M, with a linear working range between 1.0 × 10 and 1.0 × 10 M (R = 0.9844). The sensor showed good reproducibility, with a low relative standard deviation (5.5 %). In addition, the sensor exhibited good selectivity towards histamine and cadaverine over other amines, such as 1,2-phenylenediamine, triethylamine, and trimethylamine. Recovery and real sample studies suggested that complex 2 could be a promising biogenic amine optical sensing material that can be applied in the food industry, especially in controlling the safety of food for it to remain fresh and healthy for consumption.

摘要

生物胺因其作为食品工业中确定食品新鲜度的生物标志物的重要性而引起了研究人员的关注。需要一种能够快速、简单地检测生物胺的技术。在这项工作中,基于新型锌(II)席夫碱配合物,开发了一种用于生物胺之一组胺的新型光学传感材料。没有吸电子基团的锌(II)配合物(配合物 1)和具有吸电子基团的锌(II)配合物(F,配合物 2;Cl,配合物 3)与组胺结合导致荧光增强。所有配合物对组胺均表现出高亲和力[结合常数分别为(7.14 ± 0.80) × 10、(3.33 ± 0.03) × 10 和(2.35 ± 0.14) × 10 M]。由于与配合物 1 和 3 相比,配合物 2 显示出增强的光学性质,因此选择其作为生物胺光学传感器进一步开发的传感材料。生物胺光学传感器使用硅胶微球作为固定化支撑物,组胺作为分析物。该光学传感器对组胺的检测限为 4.4 × 10 M,线性工作范围在 1.0 × 10 和 1.0 × 10 M 之间(R = 0.9844)。该传感器具有良好的重现性,相对标准偏差较低(5.5%)。此外,该传感器对组胺和腐胺具有良好的选择性,而对其他胺类,如 1,2-苯二胺、三乙胺和三甲胺,则没有选择性。回收和实际样品研究表明,配合物 2 可能是一种有前途的生物胺光学传感材料,可应用于食品工业,特别是在控制食品安全性方面,以保持食品的新鲜和健康。

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