Instituto de Microelectrónica de Barcelona (IMB-CNM, CSIC), Bellaterra (Barcelona) 08193, Spain.
Nanobiotechnology for diagnostics (Nb4D), Department of Chemical and Biomolecular Nanotechnology, Institute for Advanced Chemistry of Catalonia (IQAC, CSIC), Barcelona 08034, Spain.
Anal Chem. 2022 Jan 18;94(2):787-792. doi: 10.1021/acs.analchem.1c03326. Epub 2021 Dec 21.
The detection of living organisms at very low concentrations is necessary for the early diagnosis of bacterial infections, but it is still challenging as there is a need for signal amplification. Cell culture, nucleic acid amplification, or nanostructure-based signal enhancement are the most common amplification methods, relying on long, tedious, complex, or expensive procedures. Here, we present a cyanotype-based photochemical amplification reaction enabling the detection of low bacterial concentrations up to a single-cell level. Photocatalysis is induced with visible light and requires bacterial metabolism of iron-based compounds to produce Prussian Blue. Bacterial activity is thus detected through the formation of an observable blue precipitate within 3 h of the reaction, which corresponds to the concentration of living organisms. The short time-to-result and simplicity of the reaction are expected to strongly impact the clinical diagnosis of infectious diseases.
在非常低的浓度下检测活的生物体对于细菌感染的早期诊断是必要的,但由于需要信号放大,这仍然具有挑战性。细胞培养、核酸扩增或基于纳米结构的信号增强是最常见的放大方法,它们依赖于冗长、繁琐、复杂或昂贵的程序。在这里,我们提出了一种基于蓝图的光化学放大反应,可以检测低至单细胞水平的细菌浓度。可见光诱导光催化,需要细菌代谢铁基化合物来产生普鲁士蓝。因此,通过在反应后 3 小时内形成可观察到的蓝色沉淀来检测细菌活性,这与生物体的浓度相对应。预期该反应的短结果时间和简单性将对传染病的临床诊断产生重大影响。