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Real-Time Detection of Staphylococcus Aureus Using Whispering Gallery Mode Optical Microdisks

机译:使用耳语画廊模式光盘实时检测金黄色葡萄球菌

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摘要

Whispering Gallery Mode (WGM) microresonators have recently been studied as a means to achieve real-time label-free detection of biological targets such as virus particles, specific DNA sequences, or proteins. Due to their high quality (Q) factors, WGM resonators can be highly sensitive. A biosensor also needs to be selective, requiring proper functionalization of its surface with the appropriate ligand that will attach the biomolecule of interest. In this paper, WGM microdisks are used as biosensors for detection of Staphylococcus aureus. The microdisks are functionalized with LysK, a phage protein specific for staphylococci at the genus level. A binding event on the surface shifts the resonance peak of the microdisk resonator towards longer wavelengths. This reactive shift can be used to estimate the surface density of bacteria that bind to the surface of the resonator. The limit of detection of a microdisk with a Q-factor around 104 is on the order of 5 pg/mL, corresponding to 20 cells. No binding of Escherichia coli to the resonators is seen, supporting the specificity of the functionalization scheme.
机译:耳语回廊模式(WGM)微谐振器最近已被研究为实现对生物目标(例如病毒颗粒,特定DNA序列或蛋白质)进行实时无标签检测的一种手段。由于其高质量(Q)因素,WGM谐振器可能非常敏感。生物传感器还需要具有选择性,需要用合适的配体将其表面适当功能化,该配体将附着目标生物分子。在本文中,WGM磁盘被用作检测金黄色葡萄球菌的生物传感器。微型磁盘使用LysK(一种属葡萄球菌的噬菌体蛋白)功能化。表面上的结合事件使微盘谐振器的谐振峰移向更长的波长。该反应性位移可用于估计结合到谐振器表面的细菌的表面密度。 Q因子约为10 4 的微型磁盘的检出限为5 pg / mL,相当于20个细胞。没有看到大肠杆菌与共振器的结合,支持了功能化方案的特异性。

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