Photonic lab-on-a-chip with environmental light correction for in situ determination of enteric pathogen contamination

P. Giménez-Gómez, Jordi Sacristan-Riquelme, F. Pujol-Vila, N. Santamaria, N. Vigués, C. Jiménez-Jorquera, J. Mas, X. Muñoz‐Berbel
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Abstract

In situ determination of enteric pathogen bacteria is essential in the prevention of a number of illnesses associated to contaminated water consumption. Current methods for this mostly depend on long incubation times (i.e. Colibert test) or poorly selective/ sensitive protocols (amperometric sensors). Based on the Colilert test, this manuscript presents a low-cost and small-size photonic lab-on-a-chip (PhLoC) containing discrete auxiliary optical elements (i.e. light emitting diodes, LEDs, and detectors) and an external electronic control system for environmental light correction. Preliminary results demonstrate the suitability of the present technology for the sensitive and selective determination of coliform bacteria. These architectures and measurement protocols open the possibility for fast in situ determination of microbial contaminants in drinking and wastewaters.
带有环境光校正的光子芯片实验室,用于肠道病原体污染的原位测定
就地测定肠道病原菌对于预防与饮用受污染的水有关的许多疾病至关重要。目前的方法主要依赖于较长的孵育时间(即Colibert试验)或选择性差/灵敏度低的方案(安培传感器)。基于Colilert测试,本文提出了一种低成本和小尺寸的光子芯片实验室(PhLoC),其中包含离散辅助光学元件(即发光二极管,led和检测器)和用于环境光校正的外部电子控制系统。初步结果表明,该技术可灵敏、选择性地测定大肠菌群。这些结构和测量方案为饮用水和废水中微生物污染物的快速原位测定提供了可能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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