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智能手机集成比率荧光传感器用于超灵敏和选择性检测全麦食品中的 5-二十一烷基间苯二酚。

A Smartphone-Integrated Ratiometric Fluorescence Sensor for the Ultrasensitive and Selective Detection of 5-Heneicosylresorcinol in Whole Wheat Foods.

机构信息

Key Laboratory of Geriatric Nutrition and Health, Ministry of Education, Beijing Technology and Business University, 11 Fucheng Road, Beijing 100048, China.

School of Light Industry Science and Engineering, Beijing Technology and Business University, 11 Fucheng Road, Beijing 100048, China.

出版信息

J Agric Food Chem. 2024 Sep 25;72(38):21276-21286. doi: 10.1021/acs.jafc.4c05220. Epub 2024 Sep 16.

Abstract

Precise on-site monitoring of alkylresorcinols, a vital biomarker, is crucial for verifying whole wheat foods and accurately quantifying the whole wheat content in various consumer and industrial products. Herein, for the first time, we introduce a novel ratiometric fluorescence sensor (CDs@ZIF-8/CdTe@MIP) for ultrasensitive and selective detection of alkylresorcinols. 5-Heneicosylresorcinol (C21:0 AR), the primary alkylresorcinol homologue in whole wheat grains, was selected as the target analyte. This analyte was specifically and selectively recognized by the incorporation of a molecularly imprinted polymer (MIP) layer. Within this nanoreactor, blue-emitting carbon dots embedded in zeolitic imidazolate framework-8 (CDs@ZIF-8) and orange-emitting CdTe quantum dots served as the self-calibration signal and response signal, respectively. Exploiting a photoinduced electron transfer effect between CdTe and C21:0 AR, the established fluorescence sensor exhibited remarkable sensing performance, offering wide linear responses in 0.005-1 μg·mL and 1-80 μg·mL concentration ranges, and achieving a low detection limit of 1.14 ng·mL. The proposed assay effectively detected C21:0 AR in real samples, including 8 whole wheat foods and 19 whole wheat grains, demonstrating good recoveries and relative standard deviation. Furthermore, an intelligent sensing platform was established by integrating CDs@ZIF-8/CdTe@MIP with a smartphone-assisted device, thus validating the feasibility of visual and on-site monitoring of C21:0 AR. Because of its rapid response, portability, cost-effectiveness, superior sensitivity, and high selectivity, the proposed sensor serves as a reliable method for the analysis of C21:0 AR, thus having substantial potential for on-site monitoring of whole wheat foods.

摘要

精确的现场监测烷基间苯二酚,这一重要的生物标志物,对于验证全麦食品和准确量化各种消费和工业产品中的全麦含量至关重要。在这里,我们首次引入了一种新颖的比率荧光传感器(CDs@ZIF-8/CdTe@MIP),用于烷基间苯二酚的超灵敏和选择性检测。5-二十一烷基间苯二酚(C21:0 AR)是全麦谷物中主要的烷基间苯二酚同系物,被选为目标分析物。通过引入分子印迹聚合物(MIP)层,该分析物被特异性和选择性地识别。在这个纳米反应器中,嵌入沸石咪唑酯骨架-8(CDs@ZIF-8)中的蓝色发射碳点和橙色发射 CdTe 量子点分别作为自校准信号和响应信号。利用 CdTe 和 C21:0 AR 之间的光诱导电子转移效应,建立的荧光传感器表现出显著的传感性能,在 0.005-1μg·mL 和 1-80μg·mL 的浓度范围内具有宽的线性响应,并实现了 1.14ng·mL 的低检测限。该方法有效地检测了真实样品中的 C21:0 AR,包括 8 种全麦食品和 19 种全麦谷物,表现出良好的回收率和相对标准偏差。此外,通过将 CDs@ZIF-8/CdTe@MIP 与智能手机辅助设备集成,建立了智能传感平台,从而验证了 C21:0 AR 的可视化和现场监测的可行性。由于其快速响应、便携性、成本效益、优越的灵敏度和高选择性,该传感器可作为 C21:0 AR 分析的可靠方法,因此在全麦食品的现场监测方面具有巨大的潜力。

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