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Detecting Fingerprints of Waterborne Bacteria on a Sensor

机译:检测传感器上水性细菌的指纹

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Human fecal contamination is a crucial threat that results in difficulties in access to clean water. Enterococcus faecalis is a bacteria which is utilized as an indicator in polluted water. Nevertheless, existing strategies face several challenges, including low affinity and the need for labelling, which limit their access to large scale applications. Herein, a label-free fingerprint of the surface proteins of waterborne bacteria on a sensor was demonstrated for real-time bacteria detection from aqueous and water samples. The kinetic performance of the sensor was evaluated and shown to have a range of detection that spanned five orders of magnitude, having a low detection limit (3.4 × 10 4 cfu/mL) and a high correlation coefficient (R 2 = 0.9957). The sensor also designated a high selectivity while other competitor bacteria were employed. The capability for multiple usage and long shelf-life are superior to other modalities. This is an impressive surface modification method that uses the target itself as a recognition element, ensuring a broad range of variability to replicate others with different structure, size and physical and chemical properties.
机译:人类粪便污染是一种至关重要的威胁,导致进入清洁水的困难。肠球菌粪便是一种被用作污染水中指标的细菌。尽管如此,现有的策略面临着几种挑战,包括低亲和力和标签的需要,这限制了他们对大规模应用的访问。在此,对传感器上的水性细菌的表面蛋白的无标记指纹用于从水性和水样中进行实时细菌检测。评估传感器的动力学性能并显示出具有跨越五个数量级的检测范围,具有低检测极限(3.4×10 4 CFU / mL)和高相关系数(R 2 = 0.9957)。传感器还指定了高选择性,而使用其他竞争对子细菌。多种使用和长货架 - 生活的能力优于其他方式。这是一种令人印象深刻的表面修改方法,它使用目标本身作为识别元件,确保具有不同结构,尺寸和物理和化学性质的广泛的变化来复制他人。

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