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Lytic enzymes as selectivity means for label-free, microfluidic and impedimetric detection of whole-cell bacteria using ALD-Al2O3 passivated microelectrodes

机译:裂解酶是使用ALD-Al2O3钝化微电极对全细胞细菌进行无标记,微流控和阻抗检测的选择性手段

摘要

Point-of-care (PoC) diagnostics for bacterial detection offer tremendous prospects for public health care improvement. However, such tools require the complex combination of the following performances: rapidity, selectivity, sensitivity, miniaturization and affordability. To meet these specifications, this paper presents a new selectivity method involving lysostaphin together with a CMOS-compatible impedance sensor for genus-specific bacterial detection. The method enables the sample matrix to be directly flown on the polydopamine-covered sensor surface without any pre-treatment, and considerably reduces the background noise. Experimental proof-of-concept, explored by simulations and confirmed through a setup combining simultaneous optical and electrical real-time monitoring, illustrates the selective and capacitive detection of Staphylococcus epidermidis in synthetic urine also containing Enterococcus faecium. While providing capabilities for miniaturization and system integration thanks to CMOS compatibility, the sensors show a detection limit of ca. 108 (CFU/mL).min in a 1.5 μL microfluidic chamber with an additional setup time of 50 min. The potentials, advantages and limitations of the method are also discussed.
机译:用于细菌检测的即时诊断(PoC)诊断为改善公共卫生保健提供了广阔的前景。但是,这样的工具需要以下性能的复杂组合:快速性,选择性,灵敏度,小型化和负担能力。为了满足这些规格要求,本文提出了一种新的选择性方法,该方法涉及溶葡萄球菌素以及与CMOS兼容的阻抗传感器,用于特定属细菌的检测。该方法使样品基质无需任何预处理即可直接在聚多巴胺覆盖的传感器表面上流动,并大大降低了背景噪声。通过仿真探索的实验概念验证,并通过同时进行光学和电气实时监控的设置加以证实,说明了在也包含粪便肠球菌的合成尿液中选择性和电容性检测表皮葡萄球菌的方法。由于具有CMOS兼容性,在提供小型化和系统集成功能的同时,这些传感器的检测极限约为。在1.5μL微流控室中为108(CFU / mL).min,另外的设置时间为50 min。还讨论了该方法的潜力,优势和局限性。

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