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改良的发光菌毒性检测法:基于石墨烯氧化物的新型增敏剂与手机应用程序。

Improved Aliivibrio fischeri based-toxicity assay: Graphene-oxide as a sensitivity booster with a mobile-phone application.

机构信息

Nanobioelectronics & Biosensors Group, Catalan Institute of Nanoscience and Nanotechnology (ICN2), CSIC and BIST, Campus UAB, Bellaterra, 08193 Barcelona, Spain.

Department of Food Hygiene and Control, Faculty of Veterinary Medicine, Beni-Suef University, Beni-Suef 62511, Egypt.

出版信息

J Hazard Mater. 2021 Mar 15;406:124434. doi: 10.1016/j.jhazmat.2020.124434. Epub 2020 Oct 31.

Abstract

Recently, many bioluminescence-based applications have arisen in several fields, such as biosensing, bioimaging, molecular biology, and human health diagnosis. Among all bioluminescent organisms, Aliivibrio fischeri (A. fischeri) is a bioluminescent bacterium used to carry out water toxicity assays since the late 1970s. Since then, several commercial A. fischeri-based products have been launched to the market, as these bacteria are considered as a gold standard for water toxicity assessment worldwide. However, the aforementioned commercial products rely on expensive equipment, requiring several reagents and working steps, as well as high-trained personnel to perform the assays and analyze the output data. For these reasons, in this work, we have developed for the first time a mobile-phone-based sensing platform for water toxicity assessment in just 5 min using two widespread pesticides as model analytes. To accomplish this, we have established new methodologies to enhance the bioluminescent signal of A. fischeri based on the bacterial culture in a solid media and/or using graphene oxide. Finally, we have addressed the biocompatibility of graphene oxide to A. fischeri, boosting the sensitivity of the toxicity assays and the bacterial growth of the lyophilized bacterial cultures for more user-friendly storage.

摘要

近年来,生物发光技术在生物传感、生物成像、分子生物学和人类健康诊断等多个领域得到了广泛的应用。在所有发光生物体中,Aliivibrio fischeri(A. fischeri)是一种发光细菌,自 20 世纪 70 年代末以来就被用于进行水质毒性检测。从那时起,已经推出了几种基于 A. fischeri 的商业产品,因为这些细菌被认为是全球水质毒性评估的黄金标准。然而,上述商业产品依赖于昂贵的设备,需要多种试剂和工作步骤,以及经过培训的专业人员来进行检测和分析输出数据。出于这些原因,在这项工作中,我们首次开发了一种基于智能手机的水质毒性评估传感平台,仅需 5 分钟即可使用两种广泛使用的农药作为模型分析物进行检测。为了实现这一目标,我们建立了新的方法来增强基于固体培养基中的细菌培养物和/或使用氧化石墨烯的 A. fischeri 的生物发光信号。最后,我们研究了氧化石墨烯对 A. fischeri 的生物相容性,提高了毒性检测的灵敏度和冻干细菌培养物的细菌生长,使其更便于用户存储。

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