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多孔板用于在 UV-LED 系统中获得快速微生物剂量反应曲线。

Multiwell plates for obtaining a rapid microbial dose-response curve in UV-LED systems.

机构信息

School of Mechanical Engineering, Faculty of Engineering, Tel Aviv University, Tel Aviv 69978, Israel.

Department of Biology and Environment, Faculty of Natural Science, University of Haifa-Oranim, Tivon 3600600, Israel.

出版信息

J Photochem Photobiol B. 2020 Jun;207:111865. doi: 10.1016/j.jphotobiol.2020.111865. Epub 2020 Mar 30.

DOI:10.1016/j.jphotobiol.2020.111865
PMID:32302822
Abstract

UV light-emitting diodes (UV-LEDs) have emerged as a new technology for water disinfection. Multiwell plates are a common tool in biological research, but they have never been used for UVC/UVB-inactivation experiments of microorganisms. In this study, a novel, rapid and simple UVC/UVB-inactivation assay was developed for a UV-LED system using a multiwell plate setup (96- and 24-well plates). The relative incident irradiance distribution across the exposed area was examined by spectroradiometry and nitrate-nitrite uniformity assay. The two methods showed a good correlation and high distribution factors (>0.89 and >0.94 for 96- and 24-well plates, respectively). In addition, the potential of the new system for determining disinfection efficacy of E. coli and MS2 coliphage by UV-LEDs emitting at central wavelengths of 265 nm and 285 nm was demonstrated. The inactivation rate constants were comparable to those obtained using UV-LED systems with the conventional dish (or beaker) setup, but the multiwell plate method allowed for many more repetitions. The proposed system is an alternative for UV-inactivation dose-response assay, especially when screening assays are desired, since it has the advantage of being fast, comprehensive (with a large number of simultaneous replicates) and easily adapted to various applications as UV-LED based photocatalysis experiments, UV effect on biofilm formation and UV-based AOP degradation experiments.

摘要

紫外线发光二极管(UV-LEDs)已成为水消毒的新技术。多微孔板是生物学研究中的常用工具,但从未用于微生物的 UVC/UVB 失活动力学实验。在这项研究中,开发了一种新颖、快速且简单的 UVC/UVB 失活动力学测定法,用于使用多微孔板设置(96 孔和 24 孔板)的 UV-LED 系统。通过分光辐射计和硝酸盐-亚硝酸盐均匀性测定来检查暴露区域的相对入射辐照度分布。这两种方法显示出良好的相关性和高分布因子(对于 96 孔和 24 孔板分别为>0.89 和>0.94)。此外,还证明了新系统在确定大肠杆菌和 MS2 噬菌体的消毒效果方面的潜力,这些噬菌体由波长为 265nm 和 285nm 的 UV-LED 发出。灭活速率常数与使用具有传统盘(或烧杯)设置的 UV-LED 系统获得的结果相当,但多微孔板方法允许进行更多的重复实验。该系统是 UV 失活动力学测定法的替代方法,特别是当需要筛选测定法时,因为它具有快速、全面(同时具有大量重复)的优点,并且可以很容易地适应各种应用,如基于 UV-LED 的光催化实验、UV 对生物膜形成的影响以及基于 UV 的 AOP 降解实验。

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