Li Qingyang, Dasgupta Purnendu K, Temkins Henry K
Department of Chemistry and Biochemistry and Nano Tech Center, Texas Tech University, Lubbock, Texas 79409-1061, USA.
Environ Sci Technol. 2008 Apr 15;42(8):2799-804. doi: 10.1021/es702472t.
Bacterial spore determination by terbium(III)-dipicolinate luminescence has been reported by several investigators. We collected spore samples with a cyclone and extracted dipicolinic acid (DPA) in-line with hot aqueous dodecylamine, added Tb(III) in a continuous-flow system and detected the Tb(III)-DPA with a gated liquid core waveguide fluorescence detector with a flashlamp excitation source. The absolute limit of detection (LOD) for the system was equivalent to 540 B. subtilis spores (for a 1.8 m3 sample volume (t = 2 h, Q = 15 L/min), concentration LOD is 0.3 spores/L air). Extant literature suggests that, from office to home settings, viable spore concentrations range from 0.1 to 10 spores/L; however, these data have never been validated. Previously reported semiautomated instrumentation had an LOD of 50 spores/L. The present system was tested at five different location settings in Lubbock, Texas. The apparent bacterial spore concentrations ranged from 9 to 700 spores/L and only occasionally exhibited the same trend as the simultaneously monitored total optical particle counts in the > or = 0.5 microm size fraction. However, because the apparent spore counts sometimes were very large relative to the 0.5+ microm size particle counts, we investigated potential positive interferences. We show that aromatic acids are very likely large interferents. This interference typically constitutes approximately 70% of the signal and can be as high as 95%. It can be completely removed by prewashing the particles.
几位研究人员报告了通过铽(III)-吡啶二羧酸发光来测定细菌孢子。我们用旋风分离器收集孢子样品,并与热的十二烷基胺水溶液在线提取吡啶二羧酸(DPA),在连续流动系统中加入铽(III),并用带有闪光灯激发源的门控液芯波导荧光检测器检测铽(III)-DPA。该系统的绝对检测限(LOD)相当于540个枯草芽孢杆菌孢子(对于1.8立方米的样品体积(t = 2小时,Q = 15升/分钟),浓度检测限为0.3个孢子/升空气)。现有文献表明,从办公室到家庭环境, viable孢子浓度范围为0.1至10个孢子/升;然而,这些数据从未得到验证。先前报道的半自动仪器的检测限为50个孢子/升。本系统在得克萨斯州拉伯克的五个不同地点进行了测试。表观细菌孢子浓度范围为9至700个孢子/升,并且仅偶尔与同时监测的大于或等于0.5微米尺寸级分中的总光学粒子计数呈现相同趋势。然而,由于表观孢子计数有时相对于0.5 +微米尺寸的粒子计数非常大,我们研究了潜在的正干扰。我们表明芳香酸很可能是大的干扰物。这种干扰通常构成约70%的信号,并且可以高达95%。通过预洗颗粒可以完全消除它。