Department of Basic Medical Sciences, Purdue University, West Lafayette, IN 47907, USA.
Bindley Bioscience Center, Purdue University, West Lafayette, IN 47907, USA.
Sensors (Basel). 2023 Feb 14;23(4):2135. doi: 10.3390/s23042135.
Real-time detection and disinfection of foodborne pathogens are important for preventing foodborne outbreaks and for maintaining a safe environment for consumers. There are numerous methods for the disinfection of hazardous organisms, including heat treatment, chemical reaction, filtration, and irradiation. This report evaluated a portable instrument to validate its simultaneous detection and disinfection capability in typical laboratory situations. In this challenging study, three gram-negative and two gram-positive microorganisms were used. For the detection of contamination, inoculations of various concentrations were dispensed on three different surface types to estimate the performance for minimum-detectable cell concentration. Inoculations higher than 10~10 CFU/mm and 0.15 mm of detectable contaminant size were estimated to generate a sufficient level of fluorescence signal. The evaluation of disinfection efficacy was conducted on three distinct types of surfaces, with the energy density of UVC light (275-nm) ranging from 4.5 to 22.5 mJ/cm and the exposure time varying from 1 to 5 s. The study determined the optimal energy dose for each of the microorganisms species. In addition, surface characteristics may also be an important factor that results in different inactivation efficacy. These results demonstrate that the proposed portable device could serve as an in-field detection and disinfection unit in various environments, and provide a more efficient and user-friendly way of performing disinfection on large surface areas.
实时检测和消毒食源性病原体对于预防食源性疾病爆发和为消费者保持安全的环境非常重要。有许多危险生物的消毒方法,包括热处理、化学反应、过滤和辐照。本报告评估了一种便携式仪器,以验证其在典型实验室环境中的同时检测和消毒能力。在这项具有挑战性的研究中,使用了三种革兰氏阴性菌和两种革兰氏阳性菌。为了检测污染,将不同浓度的接种物分配到三种不同的表面类型上,以估计最小可检测细胞浓度的性能。估计接种物浓度高于 10~10 CFU/mm 和 0.15 mm 的可检测污染物大小会产生足够水平的荧光信号。在三种不同类型的表面上进行了消毒效果评估,紫外线 C 光(275nm)的能量密度范围为 4.5 至 22.5 mJ/cm,暴露时间从 1 秒至 5 秒不等。该研究确定了每种微生物的最佳能量剂量。此外,表面特性也可能是导致不同灭活效果的一个重要因素。这些结果表明,所提出的便携式设备可以作为各种环境中的现场检测和消毒单元,并提供更高效和用户友好的方法对大面积表面进行消毒。