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一种基于智能手机的便携式比色传感器,利用双重放大作用实现现场检测空气中的细菌。

A portable smartphone-based colorimetric sensor that utilizes dual amplification for the on-site detection of airborne bacteria.

机构信息

Bionanotechnology Research Center, Korea Research Institute of Bioscience and Biotechnology (KRIBB), Daejeon 34141, Republic of Korea; Center for Systems Biology, Massachusetts General Hospital, Harvard Medical School, Boston, MA 02114, USA.

Safety Measurement Institute, Korea Research Institute of Standards and Science, Daejeon 34113, Republic of Korea.

出版信息

J Hazard Mater. 2023 Oct 15;460:132398. doi: 10.1016/j.jhazmat.2023.132398. Epub 2023 Aug 25.

Abstract

Over the past few years, infections caused by airborne pathogens have spread worldwide, infecting several people and becoming an increasingly severe threat to public health. Therefore, there is an urgent need for developing airborne pathogen monitoring technology for use in confined environments to enable epidemic prevention. In this study, we designed a colorimetry-based bacterial detection platform that uses a clustered regularly interspaced short palindromic repeat-associated protein 12a system to amplify signals and a urease enzyme to induce color changes. Furthermore, we have developed a smartphone application that can distinguish colors under different illumination conditions based on the HSV model and detect three types of disease-causing bacteria. Even synthetic oligomers of a few picomoles of concentration and genomic DNA of airborne bacteria smaller than several nanograms can be detected with the naked eye and using color analysis systems. Furthermore, in the air capture model system, the bacterial sample generated approximately a 2-fold signal difference compared with that in the control group. This colorimetric detection method can be widely applied for public safety because it is easy to use and does not require complex equipment.

摘要

在过去的几年中,空气传播病原体引起的感染在全球范围内传播,感染了数人,对公众健康构成了日益严重的威胁。因此,迫切需要开发用于封闭环境的空气传播病原体监测技术,以实现疫情防控。在这项研究中,我们设计了一种基于比色法的细菌检测平台,该平台使用簇状规则间隔短回文重复相关蛋白 12a 系统来放大信号,并使用脲酶诱导颜色变化。此外,我们开发了一种智能手机应用程序,该程序可以根据 HSV 模型区分不同光照条件下的颜色,并检测三种致病细菌。即使是浓度为几个皮摩尔的合成寡核苷酸和小于几个纳克的空气传播细菌的基因组 DNA,也可以用肉眼和颜色分析系统检测到。此外,在空气捕获模型系统中,与对照组相比,细菌样本产生的信号差异约为 2 倍。这种比色检测方法由于易于使用且不需要复杂的设备,因此可广泛应用于公共安全领域。

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