Department of Pharmacology and Toxicology, College of Pharmacy, King Saud University, Riyadh, Saudi Arabia.
School of Life Sciences, Pharmacy, and Chemistry, Kingston University, Kingston-Upon-Thames, London, KT1 2EE, UK.
Mikrochim Acta. 2024 Aug 4;191(8):505. doi: 10.1007/s00604-024-06573-0.
A novel and sensitive fluorescence ratiometric method is developed for urea detection based on the pH-sensitive response of two fluorescent carbon dot (CD) systems: R-CDs/methyl red (MR) and NIR-CDs/Cu. The sensing mechanism involves breaking down urea using the enzyme urease, releasing ammonia and increasing pH. At higher pH, the fluorescence of NIR-CDs is quenched due to the enhanced interaction with Cu, while the fluorescence of R-CDs is restored as the acidic MR converts to its basic form, removing the inner filter effect. The ratiometric signal (F/F) of the R-CDs/MR and NIR-CDs/Cu intensities changed in response to the pH induced by urea hydrolysis, enabling selective and sensitive urea detection. Detailed spectroscopic and morphological investigations confirmed the fluorescence probe design and elucidated the sensing mechanism. The method exhibited excellent sensitivity (0.00028 mM LOD) and linearity range (0.001 - 8.0 mM) for urea detection, with successful application in milk samples for monitoring adulteration, demonstrating negligible interference and high recovery levels (96.5% to 101.0%). This ratiometric fluorescence approach offers a robust strategy for selective urea sensing in complicated matrices.
一种新颖且灵敏的荧光比率法被开发用于基于两个荧光碳点(CD)系统的 pH 敏感性响应的尿素检测:R-CDs/甲基红(MR)和 NIR-CDs/Cu。传感机制涉及使用酶脲酶分解尿素,释放氨并增加 pH。在较高的 pH 值下,由于与 Cu 的增强相互作用,NIR-CDs 的荧光被猝灭,而 R-CDs 的荧光由于酸性 MR 转化为其碱性形式而恢复,从而消除了内滤效应。R-CDs/MR 和 NIR-CDs/Cu 强度的比率信号(F/F)响应尿素水解引起的 pH 变化,实现了选择性和灵敏的尿素检测。详细的光谱和形态学研究证实了荧光探针的设计并阐明了传感机制。该方法对尿素检测表现出优异的灵敏度(0.00028 mM 的 LOD)和线性范围(0.001-8.0 mM),成功应用于牛奶样品中监测掺假,显示出可忽略的干扰和高回收率(96.5%至 101.0%)。这种比率荧光方法为在复杂基质中选择性检测尿素提供了一种稳健的策略。