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Effectiveness of a novel UV light emitting diode based technology for the microbial inactivation of Bacillus subtilis in model food systems

机译:基于UV发光二极管基于微生物灭活的新型UV发光二极管的有效性,枯草芽孢杆菌模型食品系统

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摘要

The objective of this study was to assess the effectiveness of a novel UV multiwavelength light emitting diode (LED) based technology for the inactivation of B. subtilis in two model food systems. The LED based system was used to treat B. subtilis bacterial cultures using various combinations of UV wavelengths (285, 365, 405, 285/365, 285/405, 365/405, 285/365/405 nm) for two treatment durations (5 & 10 min). Bacterial enumerations, post-treatment analysis and SEM imaging were carried out. UV treatment at 285 nm was found to be the most efficient individual wavelength for inactivation resulting in > 6 log(10) reductions. Treatments at other wavelengths investigated also resulted in bacteriostatic effects. Synergistic effects were observed for treatment at a 285/405 nm combination in one model system. Growth kinetics were investigated using a modified Gompertz model and model fit was assessed by root mean squared error, accuracy factor and bias factor. Experimental data showed good fit with the model employed with RMSE values ranging from 0.01 x 10(-2) to 1.367 x 10(-2) for 5 min treatment, and 0.01 x 10(-2) to 0.210 x 10(-2) for 10 min treatment. Multivariate analysis was also carried out using principal component analysis and explained 100% of the variation observed using 3 principal components. This study shows that UV-LED technology is effective as a bactericidal and bacteriostatic technology depending on the wavelength used.
机译:本研究的目的是评估基于新型UV多波长发光二极管(LED)技术的效果,用于两种模型食品系统中的B.枯草芽孢杆菌的灭活。使用基于LED的系统用于治疗B.枯草芽孢杆菌细菌培养物,其使用紫外波长的各种组合(285,365,405,285 / 365,285/445,365/405,285/365/405nm)进行两次治疗持续时间( 5分钟)。进行了细菌枚举,进行后治疗分析和SEM成像。发现285nm处的紫外线处理是灭活的最有效的单个波长,导致> 6对数(10)减少。研究的其他波长的治疗也导致抑菌效应。在一个模型系统中以285/405 nm组合治疗,观察到协同作用。使用改进的Gompertz模型研究了生长动力学,通过根均匀误差,精度因子和偏置因子来评估模型拟合。实验数据显示良好的型号适合于使用的RMSE值,5分钟的0.01×10(2)至1.367×10(-2),0.01×10(-2)至0.210×10(-2) 10分钟治疗。还使用主成分分析进行多变量分析,并解释了使用3个主成分观察到的100%变异。本研究表明,取决于所用的波长,UV-LED技术作为杀菌和抑菌技术是有效的。

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