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Colorimetric/fluorescent bacterial sensing by agarose-embedded lipid/polydiacetylene films

机译:琼脂糖包埋的脂质/聚二乙炔薄膜的比色/荧光细菌感测

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Aim: Development of a new chromatic (colorimetric/fluorescence) bacterial sensor, for rapid, sensitive and versatile detection of bacterial proliferation. Methods and Results: We constructed agarose-embedded chromatic films which produce dramatic colour changes and fluorescence transformations in response to bacterial growth. The sensing constructs comprise glass-supported Langmuir-Schaeffer phospholipid/polydiacetylene films that undergo both blue-red transformations and induction of intense fluorescence following interactions with bacterially secreted amphiphilic compounds that diffuse through the agarose. The agarose matrix coating the sensor film further contains growth nutrients, facilitating signal amplification through promotion of bacterial culture proliferation. The agarose layer also constitutes an effective barrier for reducing background signals not associated with the bacteria. We demonstrate the applications of the new sensor for the detection of Gram-negative and Gram-positive bacteria, and for screening specimens of physiological fluids (blood and urine) and foods (meat) for bacterial contaminations. Conclusions: The experiments demonstrate that the new agarose-embedded film constructs are capable of bacterial detection through visible colour transitions and fluorescence emission recorded in conventional apparatuses. Significance and Impact of the Study: This work demonstrated a new simple chromatic platform for bacterial detection, based on the generation of easily recorded colour and fluorescence changes. The new bacterial detection scheme is highly generic and could be employed for varied practical uses, in which, rapid reporting on bacterial presence is required.
机译:目的:开发一种新的彩色(比色/荧光)细菌传感器,用于快速,灵敏和多功能地检测细菌增殖。方法和结果:我们构建了琼脂糖包埋的彩色膜,该膜可响应细菌的生长而产生显着的颜色变化和荧光转换。传感构建体包含玻璃支撑的Langmuir-Schaeffer磷脂/聚二乙炔薄膜,该薄膜在与细菌分泌的两性化合物(通过琼脂糖扩散)相互作用后会发生蓝红色转换并诱导强烈的荧光。覆盖传感器膜的琼脂糖基质还包含生长养分,通过促进细菌培养物增殖来促进信号放大。琼脂糖层还构成了减少与细菌无关的背景信号的有效屏障。我们演示了这种新型传感器在革兰氏阴性和革兰氏阳性细菌检测中的应用,以及在筛查生理性液体(血液和尿液)和食物(肉类)样本中是否存在细菌污染的应用。结论:实验表明,新的琼脂糖包埋膜构建体能够通过常规设备中记录的可见颜色转变和荧光发射来检测细菌。研究的意义和影响:这项工作展示了一种易于检测的颜色和荧光变化的产生的新的用于细菌检测的简单的彩色平台。新的细菌检测方案具有很高的通用性,可用于各种实际用途,其中需要快速报告细菌的存在。

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