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A Simple Distance Paper-Based Analytical Device for the Screening of Lead in Food Matrices

机译:基于简单的距离纸张的分析装置用于筛选食物基质中的铅

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摘要

A simple and rapid distance paper-based analytical device (dPAD) for the detection of lead (Pb) in foods is proposed herein. The assay principle is based on competitive binding between carminic acid (CA) and polyethyleneimine (PEI) to Pb in a food sample. The paper channels were pre-immobilized with PEI, before reacting with a mixture of the sample and CA. Pb can strongly bind to the CA; hence, the length of the red color deposition on the flow channel decreased as a lower amount of free CA bound to PEI. The dPAD exhibited good linear correlation, with ranges of 5–100 µg·mL−1 (R2 = 0.974) of Pb. Although, the limit of detection (LOD) of this platform was rather high, at 12.3 µg·mL−1, a series of standard additions (8.0, 9.0, and 10.0 µg·mL−1) can be used to interpret the cutoff of Pb concentrations at higher or lower than 2 µg·mL−1. The presence of common metal ions such as calcium, magnesium, nickel, and zinc did not interfere with the color distance readout. The validity of the developed dPAD was demonstrated by its applicability to screen the contamination of Pb in century egg samples. The results obtained from the dPAD are in accordance with the concentration measured by atomic absorption spectroscopy (AAS) (n = 9). In conclusion, this proposed dPAD, combined with the standard addition method, could be applied for screening Pb contamination in food matrices. This platform is, therefore, potentially applicable for field measurements of Pb in developing countries, because it is cheap and rapid, and it requires no significant laborious instruments.
机译:本文提出了一种用于检测食品中铅(Pb)的简单快速的距离纸张的分析装置(DPAD)。测定原理基于食品样品中的甘氨酸(Ca)和聚乙烯亚胺(PEI)至Pb之间的竞争性结合。在用样品和CA的混合物反应之前,用PEI预先固定纸张通道。 PB可以强烈绑定到CA;因此,在流动通道上的红色沉积的长度随着与PEI结合的较低量的游离Ca而降低。 DPAD表现出良好的线性相关性,范围为5-100μg·ml-1(R2 = 0.974)的Pb。虽然,该平台的检测极限(LOD)相当高,在12.3μg·mL-1,一系列标准添加(8.0,9.0和10.0μg·mL-1)可用于解释截止Pb浓度高于或低于2μg·mL-1。常见金属离子如钙,镁,镍和锌等不干扰颜色距离读数。通过其适用于筛选世纪鸡蛋样本的污染,证明了发达的DPAD的有效性。从DPAD获得的结果根据原子吸收光谱(AAS)测量的浓度(n = 9)。总之,该提出的DPAD与标准添加方法相结合,可用于筛选食物基质中的PB污染。因此,该平台可能适用于发展中国家PB的现场测量,因为它便宜且快速,而且需要没有明显的艰苦仪器。

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