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A multifunctional SERS sticky note for real-time quorum sensing tracing and inactivation of bacterial biofilms

机译:一种多功能SERS粘滞便笺,用于实时批量传感跟踪和灭活细菌生物膜

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Quorum sensing (QS) is crucial for bacterial survival and activity. Although detecting related signaling metabolites can reveal QS, a versatile platform for convenient real-time imaging of their secretion in the context of bacterial biofilms along with inhibition to the growth of biofilms is still highly desired. Here we develop a flexible sticky note with a sandwich structure by encapsulating gold nanostars between two pieces of hexagonal boron nitride layers, which can be easily pasted on natural biofilms to monitor in real-time the secreted signaling molecule by SERS imaging with high sensitivity and spatiotemporal resolution. Using Pseudomonas aeruginosa and its pyocyanin secretion as a model and an internal standard for self-calibration of SERS signals, the sticky note achieves reliable quantification and a rapid response to the secretion as early as 1?h biofilm growth. With antibiotic loading, the multifunctional SERS sticky note also demonstrated effective inactivation of the bacterial biofilm with simultaneous evaluation of the inactivation effect. This multifunctional SERS sticky note provides a versatile platform for investigating bacterial behaviors and developing antibacterial therapeutics.
机译:仲裁感测(Qs)对于细菌存活和活性至关重要。虽然检测相关的信号传导代谢物可以揭示QS,但是对于在细菌生物膜的背景下,仍然非常需要在细菌生物膜的上下文中分泌的方便平台。在这里,我们通过封装两片六边形氮化硼层之间的金纳米壳体开发一个具有夹层结构的灵活的粘滞便笺,这可以容易地粘贴在天然生物膜上,以通过具有高灵敏度和时空的SERS成像来实时监测分泌的信号分子。解析度。使用假单胞菌铜绿假单胞菌及其碧粘素分泌作为模型和内部标准的SERS信号的自校准,粘性票据达到可靠的定量和对分泌的快速反应早于1?H生物膜生长。随着抗生素负载,多功能SERS粘性额表还证明了细菌生物膜的有效灭活,同时评估灭活效果。这种多功能SERS粘性纸条提供了一种用于研究细菌行为和显影抗菌治疗的通用平台。

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