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Real-time monitoring of viable bioaerosols: capability of the UVAPS to predict the amount of individual microorganisms in aerosol particles

机译:实时监测可行的生物气溶胶:UVAPS预测气溶胶颗粒中单个微生物数量的能力

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摘要

The Ultraviolet Aerodynamic Particle Sizer (UVAPS) is a novel aerosol monitor for enumerating and sizing microbial aerosols. To explore the capability of the method to estimate the number of microorganisms (bacteria) in aerosol particles, and thus to provide information on the concentration of airborne microorganisms, in addition to the total number of microbe carrying particles, a linearity of the UVAPS fluorescent signals with respect to the concentration of the fluorophores was investigated. As the amount of intrinsic fluorophores in bacteria may vary depending on viability status of the cells, the linearity was initially investigated for the non-microbial aerosols (NADH, NADPH, or riboflavin), with preset concentrations of fluorescent material in aerosol particles. The succeeding tests were performed with bacterial aerosols containing carefully washed Bacillus subtilis or Micrococcus luteus vegetative cells. To correlate the fluorescence intensity with particle size, which determines the amount of fluorophores (or cells) in the aerosol particles, the UVAPS data were analysed for each of 64 size-channels individually. The fluorescence intensity was linear with respect to the particle volume at the fluorophore concentrations characteristic to bacterial cells (correlation factors were typically greater than 0.9) and became curvilinear at higher concentrations. As the linearity of the UVAPS signals was confirmed for bacterial aerosols, it was concluded that the UVAPS can be used to estimate the concentration of airborne viable bacterial cells in artificially generated bioaerosols. The predicted concentrations of viable cells in the M. luteus aerosols compared favourably with the results of the AGI-30 sampling for culturable cells.
机译:紫外空气动力学粒径仪(UVAPS)是一种新型的气溶胶监测器,用于枚举和确定微生物气溶胶的尺寸。探索该方法估计气溶胶颗粒中微生物(细菌)数量的能力,从而提供除携带微生物的总数之外的空气传播微生物浓度的信息,以及UVAPS荧光信号的线性关于荧光团的浓度进行了研究。由于细菌中固有荧光团的数量可能会根据细胞的生存状态而变化,因此最初对非微生物气溶胶(NADH,NADPH或核黄素)的线性进行了研究,并预先设定了气溶胶颗粒中荧光物质的浓度。随后的测试是用含有仔细清洗过的枯草芽孢杆菌或黄曲霉营养细胞的细菌气溶胶进行的。为了使荧光强度与颗粒大小相关联,颗粒大小决定了气溶胶颗粒中荧光团(或细胞)的数量,分别对64个尺寸通道中的每一个进行了UVAPS数据分析。荧光强度相对于细菌细胞特有的荧光团浓度(相关因子通常大于0.9)呈线性关系,并在较高浓度时呈曲线。由于已确认细菌气溶胶的UVAPS信号呈线性关系,因此得出结论,UVAPS可用于估算人工产生的生物气溶胶中空气传播的活细菌细胞的浓度。黄体分枝杆菌气溶胶中活细胞的预测浓度与可培养细胞的AGI-30采样结果相比具有优势。

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