College of Food Science and Engineering, Northwest A&F University, Yangling, Shaanxi 712100, China.
Shandong Key Laboratory of Marine Ecological Restoration, Shandong Marine Resource and Environment Research Institute, No. 216 Changjiang Road, Economic and Technological Development Zone, Shandong, Yantai 264006, China.
Anal Chem. 2024 Jul 2;96(26):10714-10723. doi: 10.1021/acs.analchem.4c01634. Epub 2024 Jun 24.
Excessive intake of estrogen poses significant health risks to the human body; hence, there is a necessity to develop rapid detection methods to monitor its levels of addition. Gold nanoparticles (AuNPs), commonly utilized as colorimetric signal labels, find extensive application in lateral flow immunoassay (LFIA). However, the detection sensitivity of traditional AuNPs-LFIA is typically constrained by low molar extinction coefficients and reliance on a single signal. Herein, in this work, unique spark-type AuCuPt nanoflowers modified with tannic acid (AuCuPt@TA) were precisely designed by reasonable layer-by-layer element composition and green modification. The obtained AuCuPt displays robust broadband absorption spanning the visible to near-infrared spectrum, showcasing a notable molar extinction coefficient of 2.38 × 10 M cm and a photothermal conversion efficiency of 48.5%. Based on this, selecting estriol (E) as a model analyte, colorimetric/photothermal dual-signal LFIA (CLFIA and PLFIA) was developed. Limits of detection (LOD) of the CLFIA and PLFIA were achieved at 0.033 ng mL and 0.021 ng mL, respectively, which represent a 9.3- and 14.6-fold improvement compared to the visual LOD of AuNPs-LFIA. Moreover, the application feasibility of the immunoassay was further evaluated in the milk and pork with satisfactory recoveries ranging from 86.21% to 117.91%. Thus, this work has enhanced the performance of LFIA for E detection and exhibited enormous potential for other sensing platform construction.
过量摄入雌激素会对人体健康造成重大风险;因此,有必要开发快速检测方法来监测其添加水平。金纳米粒子 (AuNPs) 通常用作比色信号标记物,在侧向流动免疫分析 (LFIA) 中得到广泛应用。然而,传统的 AuNPs-LFIA 的检测灵敏度通常受到低摩尔消光系数和依赖单一信号的限制。在这项工作中,通过合理的逐层元素组成和绿色修饰,精确设计了具有单宁酸修饰的独特火花型 AuCuPt 纳米花 (AuCuPt@TA)。所获得的 AuCuPt 表现出跨越可见到近红外光谱的强宽带吸收,表现出显著的摩尔消光系数为 2.38×10 M cm 和 48.5%的光热转换效率。基于此,选择雌三醇 (E) 作为模型分析物,开发了比色/光热双信号 LFIA (CLFIA 和 PLFIA)。CLFIA 和 PLFIA 的检测限 (LOD) 分别达到 0.033 ng mL 和 0.021 ng mL,与 AuNPs-LFIA 的视觉 LOD 相比提高了 9.3 倍和 14.6 倍。此外,还进一步评估了该免疫测定在牛奶和猪肉中的应用可行性,回收率在 86.21%至 117.91%之间。因此,这项工作提高了 LFIA 对 E 检测的性能,并为其他传感平台的构建展示了巨大的潜力。