Institut de Recerca i Tecnologies Agroalimentàries (IRTA), Ctra. Poble Nou km 5.5, Sant Carles de la Ràpita, 43540 Tarragona, Spain.
Department of Fibre and Polymer Technology, KTH Royal Institute of Technology, Teknikringen 56, 10044 Stockholm, Sweden.
Sensors (Basel). 2021 Jan 16;21(2):602. doi: 10.3390/s21020602.
The easy and rapid spread of bacterial contamination and the risk it poses to human health makes evident the need for analytical methods alternative to conventional time-consuming laboratory-based techniques for bacterial detection. To tackle this demand, biosensors based on isothermal DNA amplification methods have emerged, which avoid the need for thermal cycling, thus facilitating their integration into small and low-cost devices for in situ monitoring. This review focuses on the breakthroughs made on biosensors based on isothermal amplification methods for the detection of bacteria in the field of food safety and environmental monitoring. Optical and electrochemical biosensors based on loop mediated isothermal amplification (LAMP), rolling circle amplification (RCA), recombinase polymerase amplification (RPA), helicase dependent amplification (HDA), strand displacement amplification (SDA), and isothermal strand displacement polymerisation (ISDPR) are described, and an overview of their current advantages and limitations is provided. Although further efforts are required to harness the potential of these emerging analytical techniques, the coalescence of the different isothermal amplification techniques with the wide variety of biosensing detection strategies provides multiple possibilities for the efficient detection of bacteria far beyond the laboratory bench.
细菌污染的快速传播及其对人类健康构成的风险,显然需要替代传统耗时的基于实验室的细菌检测技术的分析方法。为了满足这一需求,基于等温 DNA 扩增方法的生物传感器应运而生,它们避免了热循环的需要,从而便于将其集成到用于现场监测的小型和低成本设备中。本综述重点介绍了基于等温扩增方法的生物传感器在食品安全和环境监测领域检测细菌方面的突破。描述了基于环介导等温扩增 (LAMP)、滚环扩增 (RCA)、重组酶聚合扩增 (RPA)、解旋酶依赖性扩增 (HDA)、链置换扩增 (SDA) 和等温链置换聚合 (ISDPR) 的光学和电化学生物传感器,并提供了对它们当前优势和局限性的概述。尽管需要进一步努力利用这些新兴分析技术的潜力,但不同等温扩增技术与各种生物传感检测策略的融合为超越实验室工作台的高效细菌检测提供了多种可能性。