Materials Science and Engineering Program, Faculty of Science, Mahidol University, Bangkok, Thailand.
Nanobiotechnology and Nanobiomaterials Research Laboratory, School of Materials Science and Innovation, Faculty of Science, Mahidol University, Bangkok, Thailand.
Wiley Interdiscip Rev Nanomed Nanobiotechnol. 2020 Jan;12(1):e1584. doi: 10.1002/wnan.1584. Epub 2019 Sep 18.
A late detection of pathogenic microorganisms in food and drinking water has a high potential to cause adverse health impacts in those who have ingested the pathogens. For this reason there is intense interest in developing precise, rapid and sensitive assays that can detect multiple foodborne pathogens. Such assays would be valuable components in the campaign to minimize foodborne illness. Here, we discuss the emerging types of assays based on gold nanoparticles (GNPs) for rapidly diagnosing single or multiple foodborne pathogen infections. Colorimetric and lateral flow assays based on GNPs may be read by the human eye. Refractometric sensors based on a shift in the position of a plasmon resonance absorption peak can be read by the new generation of inexpensive optical spectrometers. Surface-enhanced Raman spectroscopy and the quartz microbalance require slightly more sophisticated equipment but can be very sensitive. A wide range of electrochemical techniques are also under development. Given the range of options provided by GNPs, we confidently expect that some, or all, of these technologies will eventually enter routine use for detecting pathogens in food. This article is categorized under: Diagnostic Tools > Biosensing.
在食品和饮用水中迟发性病原微生物的检测具有很高的可能性,会对摄入病原体的人造成不良的健康影响。出于这个原因,人们强烈希望开发出能够检测多种食源性病原体的精确、快速和敏感的检测方法。此类检测方法将是减少食源性疾病努力的有价值的组成部分。在这里,我们讨论了基于金纳米粒子 (GNP) 的新兴检测方法,用于快速诊断单一或多种食源性病原体感染。基于 GNP 的比色法和横向流动检测方法可以用人眼读取。基于等离子体共振吸收峰位置移动的折射传感器可以用新一代廉价的分光光度计读取。表面增强拉曼光谱和石英晶体微量天平需要稍微更复杂的设备,但可以非常灵敏。电化学技术也在不断发展。鉴于 GNP 提供的多种选择,我们有信心期待其中一些或全部技术最终将进入常规使用,用于检测食品中的病原体。本文属于诊断工具>生物传感类别。