We present a new platform for visual and spectroscopic detection of bacteria. The detection scheme is based on the interaction of membrane-active compounds secreted by bacteria with agar-embedded nanoparticles comprising phospholipids and the chromatic polymer polydiacetylene (PDA). We demonstrate that PDA undergoes dramatic visible blue-to-red transformations together with an intense fluorescence emission that are induced by molecules released by multiplying bacteria. The chromatic transitions are easily identified by the naked eye and can also be recorded by conventional high-throughput screening instruments. Furthermore, the color and fluorescence changes generally occur in shorter times than the visual appearance of bacterial colonies on the agar. The chromatic technology is generic and simple, does not require identification a priori of specific bacterial recognition elements, and can be applied for detection of both gram-negative and gram-positive bacteria. We demonstrate applications of the new platform for reporting on bacterial contaminations in foods and for screening for bacterial antibiotic resistance.

译文

我们提出了一个用于细菌视觉和光谱检测的新平台。检测方案基于细菌分泌的膜活性化合物与包含磷脂和彩色聚合物聚二乙炔 (PDA) 的琼脂包埋纳米颗粒的相互作用。我们证明了PDA经历了明显的可见蓝色到红色的转变,以及由细菌繁殖释放的分子诱导的强烈荧光发射。色度转变很容易通过肉眼识别,也可以通过常规的高通量筛选仪器进行记录。此外,颜色和荧光变化通常比琼脂上细菌菌落的视觉出现时间短。色度技术是通用且简单的,不需要先验地识别特定的细菌识别元素,并且可以用于检测革兰氏阴性细菌和革兰氏阳性细菌。我们演示了新平台在报告食品中细菌污染和筛查细菌抗生素耐药性方面的应用。

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