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基于金纳米颗粒增强二维黑磷光热传感材料的高灵敏度热分析免疫层析传感器。

A high-sensitivity thermal analysis immunochromatographic sensor based on au nanoparticle-enhanced two-dimensional black phosphorus photothermal-sensing materials.

机构信息

State Key Laboratory for Food Nutrition and Safety; College of Food Engineering and Biotechnology, Tianjin University of Science and Technology, Tianjin 300457, PR China.

The Biotechnology Research Institute of Chinese Academy of Agricultural Sciences, Beijing 10010, PR China.

出版信息

Biosens Bioelectron. 2019 May 15;133:223-229. doi: 10.1016/j.bios.2019.03.039. Epub 2019 Mar 20.

DOI:10.1016/j.bios.2019.03.039
PMID:30951982
Abstract

For the first time, a quantitative photothermal-sensing immunochromatographic sensor (PT-ICS) is described using Au nanoparticle-enhanced two-dimensional black phosphorus (BP-Au) as signal component for the photothermal-sensing antibody probe. BP-Au has good photothermal properties at 808 nm, and the photothermal conversion efficiency of the BP-Au nanosheet increased by 12.9% over the black phosphorus nanosheet alone. In addition, the antibody was more easily coupled to this nanosheet due to the good physical adsorption capacity of Au nanoparticles. We used this PT-ICS to detect veterinary antibiotics enrofloxacin (ENR), the photothermal-sensing antibody probe was competitive captured by ENR target and antigen coating on test (T) lines of the sensor. This process was exothermic under an 808 nm laser, and the thermal energy decreased as the ENR in the sample increased. This thermal energy was recorded by an infrared thermal imager or an infrared thermometer, and the concentration of the ENR residues in animal-derived foods was obtained by analyzing the temperature changes in T-lines. Under optimal conditions, the PT-ICS exhibited sensitive and specific detection of ENR from 0.03 μg/L to 10 μg/L with detection limits of 0.023 μg/L. The results agreed well with a commercial enzyme-linked-immunosorbent assay kit. This PT-ICS provided a promising strategy for the detection of ENR residues in animal-derived foods and expected to be used for the detection of other highly sensitive biomacromolecules.

摘要

首次描述了一种定量光热传感免疫层析传感器(PT-ICS),该传感器使用金纳米颗粒增强的二维黑磷(BP-Au)作为光热传感抗体探针的信号组件。BP-Au 在 808nm 处具有良好的光热性能,并且 BP-Au 纳米片的光热转换效率比单独的黑磷纳米片提高了 12.9%。此外,由于金纳米颗粒具有良好的物理吸附能力,抗体更容易与这种纳米片结合。我们使用这种 PT-ICS 来检测兽用抗生素恩诺沙星(ENR),光热传感抗体探针被 ENR 靶标和抗原竞争捕获,并固定在传感器的测试(T)线上。在 808nm 激光下,这个过程是放热的,随着样品中 ENR 的增加,热能会减少。这种热能通过红外热像仪或红外温度计记录下来,并通过分析 T 线上的温度变化来获得动物源性食品中 ENR 残留的浓度。在最佳条件下,PT-ICS 对 0.03μg/L 至 10μg/L 的 ENR 表现出敏感和特异性检测,检测限为 0.023μg/L。结果与商业酶联免疫吸附测定试剂盒吻合良好。这种 PT-ICS 为检测动物源性食品中的 ENR 残留提供了一种有前途的策略,预计将用于检测其他高灵敏度的生物大分子。

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