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Highly Sensitive and Selective Fluorescent Detection of Gossypol Based on BSA-Stabilized Copper Nanoclusters

机译:基于BSA稳定的铜纳米能器的高曲面型高敏感和选择性荧光检测

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摘要

In this paper, fluorescent copper nanoclusters (NCs) are used as a novel probe for the sensitive detection of gossypol for the first time. Based on a fluorescence quenching mechanism induced by interactions between bovine serum albumin (BSA) and gossypol, fluorescent BSA-Cu NCs were seen to exhibit a high sensitivity to gossypol in the range of 0.1–100 µM. The detection limit for gossypol is 25 nM at a signal-to-noise ratio of three, which is approximately 35 times lower than the acceptable limit (0.9 µM) defined by the US Food and Drug Administration for cottonseed products. Moreover, the proposed method for gossypol displays excellent selectivity over many common interfering species. We also demonstrate the application of the present method to the measurement of several real samples with satisfactory recoveries, and the results agree well with those obtained using the high-performance liquid chromatography (HPLC) method. The method based on Cu NCs offers the followings advantages: simplicity of design, facile preparation of nanomaterials, and low experimental cost.
机译:在本文中,荧光铜纳米能器(NCS)首次用作用于敏感棉酚的敏感探针。基于牛血清白蛋白(BSA)和棉酚之间的相互作用诱导的荧光猝灭机理,观察到荧光BSA-Cu NCs在0.1-100μm的范围内表现出高敏感性。棉酚的检出限为25nm,信号到噪声比为3,其比美国食品和药物施用产品为棉籽产品所定义的可接受限制(0.9μm)的35倍。此外,所提出的Gossypol方法在许多常见的干扰物种上显示出优异的选择性。我们还证明了本发明方法在测量具有令人满意的回收率的几个真实样品的应用,并且结果与使用高效液相色谱(HPLC)方法获得的那些。基于Cu NCS的方法提供了以下优点:设计简单,纳米材料的设计,实验成本低。

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