论文标题

PLOMBOX-开发用于环境监控的低成本CMOS设备

PlomBOX -- development of a low-cost CMOS device for environmental monitoring

论文作者

Aguilar-Arevalo, A., Posse, E. Alba, Alvarez, M., Arnaldi, H., Asorey, H., Bertou, X., Colque, A., Deisting, A., Dias, A., D'Olivo, J. C., Favela-Pérez, F., Gándola, Y., Garcés, E. A., Gasulla, J., Berisso, M. Gómez, Muñoz, A. González, Guerra-Pulido, J. O., Gutierrez, S., Jois, S., Lipovetzky, J., Lovera, J., Lovino, M. B., Marín-Lámbarri, D. J., Marpegan, L., Martín, D., Montero, M. Martinez, Muñoz, S. Mejía, Monroe, J., Nadra, A., Paling, S., Pregliasco, R., Rumi, G., Rossen, A., Santos, J., Scovell, P. R., Tallis, M., Teijeiro, A., Triana, M., Vázquez-Jáuregui, E.

论文摘要

本文报告了采用铅敏感细菌来测定饮用水中的铅铅的新型CMOS设备的开发。 PLOMBOX项目的目的是开发低成本传感器(10英镑),该传感器可以加速使用按需测定方法,从而有助于通过受污染的饮用水来减轻铅的摄入量。该项目遵循三个发展路径:a)在存在铅的情况下,某些细菌会荧光或改变颜色。正在开发一种对铅浓度敏感的大肠杆菌的转基因菌株,该菌株正在开发高达10 ppb的铅浓度。这构成了与铅的存在成比例的生物传感器。 b)使用带有摄像头模块的微处理器(ESP32)对细菌反应进行成像。这构成了plombox的光学计量分量。 c)通过与Plomapp(自定义开发的手机应用程序)的蓝牙连接来实现PLOMBOX的数据采集和控制。数据从PLOMAPP发送到数据库,在该数据库中,定制的自动分析软件提供了水样品中铅浓度的结果。本文报告了开发Plombox和第一个原型的电子设备的仪器挑战。

This paper reports on the development of a novel CMOS device employing lead-sensing bacteria to assay lead in drinking water. The objective of the PlomBOX project is to develop a low-cost sensor (£10) which can expedite access to on-demand assay methods and thus help mitigate lead intake through contaminated drinking water. The project follows three development paths: a) Certain bacteria can fluoresce or change colour when in the presence of lead. A genetically modified strain of Escherichia coli sensitive to lead concentrations up to 10 ppb is being developed. This constitutes the biosensor that fluoresces in proportion to the presence of lead. b) Bacteria response is imaged using a microprocessor (ESP32) with a camera module. This constitutes the optical metrology component of the PlomBOX. c) Data acquisition and control of the PlomBOX is achieved through a Bluetooth connection with the PlomApp, a custom-developed mobile phone application. Data are sent from the PlomApp to a database where a bespoke automated analysis software provides a result of the lead concentration in a sample of water. This paper reports on the instrumentation challenges of developing the electronics for the PlomBOX and on the first prototype.

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