Departament de Genètica I de Microbiologia, Universitat Autònoma de Barcelona, 08193, Cerdanyola Del Vallès, Spain; Waterologies S.L, C/ Dinamarca, 3 (nave 9), Polígono Industrial Les Comes, 08700, Igualada, Spain; Institut de Microelectrònica de Barcelona, IMB-CNM-CSIC, Campus UAB, 08193, Bellaterra, Spain.
Departament de Genètica I de Microbiologia, Universitat Autònoma de Barcelona, 08193, Cerdanyola Del Vallès, Spain.
Anal Chim Acta. 2022 May 29;1209:339079. doi: 10.1016/j.aca.2021.339079. Epub 2021 Sep 18.
Early detection and identification of microbial contaminants is crucial in many sectors, including clinical diagnostics, food quality control and environmental monitoring. Biosensors have recently gained attention among other bacterial detection technologies due to their simplicity, rapid response, selectivity, and integration/miniaturization potential in portable microfluidic platforms. However, biosensors are limited to the analysis of small sample volumes, and pre-concentration steps are necessary to reach the low sensitivity levels of few bacteria per mL required in the analysis of real clinical, industrial or environmental samples. Many platforms already exist where bacterial detection and separation/accumulation systems are integrated in a single platform, but they have not been compiled and critically analysed. This review reports on most recent advances in bacterial concentration/detection platforms with emphasis on the concentration strategy. Systems based on five concentration strategies, i.e. centrifugation, filtration, magnetic separation, electric separation or acoustophoresis, are here presented and compared in terms of processed sample volume, concentration efficiency, concentration time, ability to work with different types of samples, and integration potential, among others. The critical evaluation presented in the review is envision to facilitate the development of future platforms for fast, sensitive and in situ bacterial detection in real sample.
早期检测和识别微生物污染物在许多领域都至关重要,包括临床诊断、食品质量控制和环境监测。由于生物传感器具有简单、快速响应、选择性以及在便携式微流控平台中集成/小型化的潜力,因此它们在其他细菌检测技术中备受关注。然而,生物传感器仅限于小样本量的分析,并且需要预浓缩步骤才能达到分析实际临床、工业或环境样本所需的每毫升少数细菌的低灵敏度水平。已经存在许多将细菌检测和分离/积累系统集成在单个平台中的平台,但尚未对其进行编译和批判性分析。本综述报告了细菌浓缩/检测平台的最新进展,重点介绍了浓缩策略。本文介绍了基于五种浓缩策略(即离心、过滤、磁分离、电分离或声泳)的系统,并从处理的样品体积、浓缩效率、浓缩时间、处理不同类型样品的能力以及集成潜力等方面对它们进行了比较。综述中提出的批判性评价旨在促进未来用于实际样品中快速、灵敏和原位细菌检测的平台的发展。