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利用金纳米材料构建用于食品危害检测的先进多色比色生物传感器。

Harnessing gold nanomaterials for advanced multicolor colorimetric biosensors in food hazards detection.

作者信息

Xie Longyingzi, Guo Chenxi, Yang Lu, He Yue

机构信息

Key Laboratory of Quality and Safety Control of Citrus Fruits, Ministry of Agriculture and Rural Affairs, Southwest University, Chongqing, 400712, PR China.

Laboratory of Quality & Safety Risk Assessment for Citrus Products (Chongqing), Ministry of Agriculture and Rural Affairs, Citrus Research Institute, Southwest University, Chongqing, 400712, PR China.

出版信息

J Food Drug Anal. 2024 Sep 13;32(3):274-295. doi: 10.38212/2224-6614.3511.

Abstract

Hazards such as pathogenic bacteria, mycotoxins, pesticides, antibiotics, heavy metal ions, etc., cause serious food safety problems worldwide due to their toxicity and frequent contamination. Rapid screening is an effective way for food safety control, which highly relies on the development of sensitive, specific, and convenient detection methods. The multicolor colorimetric biosensors based on gold nanomaterials have evolved into advanced tools for detecting various hazards in food, with intuitive readout. The excellent localized surface plasmon resonance (LSPR) properties of gold nanomaterials enable them to exhibit bright colors when used as chromophores. In addition, the small changes in the morphology of gold nanomaterials can lead to significant changes in the wavelength of the LSPR peak, resulting in vivid color changes. Since the color discrimination ability of the normal human eye is usually superior to the intensity change ability, the way in which different concentrations of targets represent vivid color changes makes it feasible to fabricate sensors with improved accuracy in visual semi-quantitative detection. By combining with various signal amplification strategies, the detection sensitivity of the constructed sensors can be further improved, even reaching the level of pg/mL. In this review, two strategies for changing the morphology of gold nanomaterials in constructing multicolor colorimetric biosensors, namely the etching strategy and the growth strategy were discussed. We also highlight current progress in developing different gold nanomaterial-based multicolor colorimetric biosensors for detecting various hazards in food. The hazards in food samples are classified as pathogens, mycotoxins, indicators of food freshness, pesticides, antibiotics, heavy metal ions, food additives, and hazards from food processing and packaging. The multicolor colorimetric biosensors based on gold nanomaterials represent a promising tool for visual detection of hazardous materials in food.

摘要

诸如致病细菌、霉菌毒素、农药、抗生素、重金属离子等危害,因其毒性和频繁污染在全球范围内引发了严重的食品安全问题。快速筛查是食品安全控制的有效途径,这高度依赖于灵敏、特异且便捷的检测方法的发展。基于金纳米材料的多色比色生物传感器已发展成为用于检测食品中各种危害的先进工具,具有直观的读数。金纳米材料优异的局域表面等离子体共振(LSPR)特性使其作为发色团使用时能呈现明亮颜色。此外,金纳米材料形态的微小变化会导致LSPR峰波长的显著变化,从而产生明显的颜色变化。由于正常人眼的颜色辨别能力通常优于强度变化能力,不同浓度目标物呈现明显颜色变化的方式使得制造视觉半定量检测中精度更高的传感器成为可能。通过与各种信号放大策略相结合,所构建传感器的检测灵敏度可进一步提高,甚至达到pg/mL水平。在本综述中,讨论了在构建多色比色生物传感器时改变金纳米材料形态的两种策略,即蚀刻策略和生长策略。我们还重点介绍了目前开发不同的基于金纳米材料的多色比色生物传感器用于检测食品中各种危害的进展。食品样品中的危害分为病原体、霉菌毒素、食品新鲜度指标、农药、抗生素、重金属离子、食品添加剂以及食品加工和包装产生的危害。基于金纳米材料的多色比色生物传感器是用于视觉检测食品中有害物质的一种很有前景的工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6723/11464037/16c23535244e/jfda-32-03-274f1.jpg

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