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Portable ceria nanoparticle-based assay for rapid detection of food antioxidants (NanoCerac)

机译:基于便携式的纳米粒子的测定用于快速检测食品抗氧化剂(纳米委员会)

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摘要

With increased awareness of nutrition and the advocacy for healthier food choices, there exists a great demand for a simple, easy-to-use test that can reliably measure the antioxidant capacity of dietary products. We report development and characterization of a portable nanoparticle based-assay, similar to a small sensor patch, for rapid and sensitive detection of food antioxidants. The assay is based on the use of immobilized ceria nanoparticles, which change color after interaction with antioxidants by means of redox and surface chemistry reactions. Monitoring corresponding optical changes enables sensitive detection of antioxidants in which the nanoceria provides an optical ‘signature’ of antioxidant power, while the antioxidants act as reducing agents. The sensor has been tested for the detection of common antioxidant compounds including ascorbic acid, gallic acid, vanilic acid, quercetin, caffeic acid, and epigallocatechin gallate and its function has been successfully applied for the assessment of antioxidant activity in real samples (teas and medicinal mushrooms). The colorimetric response was concentration dependent, with detection limits ranging from 20–400 μM depending on the antioxidant involved. Steady-state color intensity was achieved within seconds upon addition of antioxidants. The results are presented in terms of Gallic Acid Equivalents (GAE). The sensor performed favorably when compared with commonly used antioxidant detection methods. This assay is particularly appealing for remote sensing applications, where specialized equipment is not available, and also for high throughput analysis of a large number of samples. Potential applications for antioxidant detection in remote locations are envisioned.
机译:随着人们对营养的认识不断提高,并提倡选择更健康的食物,人们迫切需要一种简单,易用的测试方法,该方法能够可靠地测量膳食产品的抗氧化能力。我们报告了便携式小颗粒纳米检测的发展和特征,类似于小型传感器贴片,可快速,灵敏地检测食品抗氧化剂。该测定法基于固定化的二氧化铈纳米颗粒的使用,该纳米颗粒在与抗氧化剂相互作用后通过氧化还原和表面化学反应而变色。监视相应的光学变化可以灵敏地检测抗氧化剂,其中纳米氧化铈提供了抗氧化剂能力的光学“信号”,而抗氧化剂则充当还原剂。该传感器已经过测试,可以检测常见的抗氧化剂化合物,包括抗坏血酸,没食子酸,香草酸,槲皮素,咖啡酸和表没食子儿茶素没食子酸酯,其功能已成功应用于评估真实样品(茶和药用)中的抗氧化活性蘑菇)。比色反应取决于浓度,检测限范围为20–400μM,具体取决于所涉及的抗氧化剂。加入抗氧化剂后数秒内即可达到稳态颜色强度。结果以没食子酸当量(GAE)表示。与常用的抗氧化剂检测方法相比,该传感器性能良好。这种测定法特别适用于没有专用设备的遥感应用以及大量样品的高通量分析。设想了在偏远地区进行抗氧化剂检测的潜在应用。

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