Usachev Evgeny V, Agranovski Igor E
Griffith School of Engineering, Griffith University, Brisbane, 4111, QLD, Australia.
J Environ Monit. 2012 May;14(6):1631-7. doi: 10.1039/c2em30019b. Epub 2012 May 8.
Recently, we reported the outcomes of feasibility studies of a technological approach allowing rapid detection of a wide range of bioaerosols by combining a personal bioaerosol sampler with a real-time PCR technology. The protocol was found suitable for detection of targeted microorganisms within relatively short time periods. Considering the crucial importance of the PCR procedure quality control, the current paper reports the results of the development of an internally controlled PCR system for utilization by the above technology. The suggested strategy is based on utilization of only two fluorescent dyes, which are used respectively for target and internal amplification control (IAC) DNA amplification. A bacteriophage T4 and recombinant phage fd (M13) were used in this research as target and IAC, respectively. The constructed IAC was added directly to the collection liquid of the personal bioaerosol sampler enabling quality control to be present throughout the entire sampling-analysis procedures. For performance evaluation, serial ten-fold dilutions of T4 phage were aerosolized and sampled over a 10 minutes time period. The results showed that T4 phage could be reliably detected at the concentration of around 200 PFU per litre of air over the 10 minutes sampling period. The developed PCR assay demonstrated high specificity and no cross reaction. It is concluded that the recombinant phage fd is suitable for utilization as an internal control enabling to significantly minimize false negative results for bioaerosol detection procedures.
最近,我们报道了一项技术方法的可行性研究结果,该方法通过将个人生物气溶胶采样器与实时聚合酶链反应(PCR)技术相结合,能够快速检测多种生物气溶胶。该方案被发现适用于在相对较短的时间内检测目标微生物。考虑到PCR程序质量控制的至关重要性,本文报道了一种供上述技术使用的内控PCR系统的开发结果。所建议的策略基于仅使用两种荧光染料,它们分别用于目标DNA和内参扩增对照(IAC)DNA的扩增。在本研究中,分别使用噬菌体T4和重组噬菌体fd(M13)作为目标和IAC。构建的IAC直接添加到个人生物气溶胶采样器的收集液中,使得在整个采样 - 分析过程中都能进行质量控制。为了进行性能评估,将T4噬菌体的系列十倍稀释液雾化,并在10分钟的时间段内进行采样。结果表明,在10分钟的采样期内,每升空气中约200个噬菌斑形成单位(PFU)的浓度下,T4噬菌体能够被可靠地检测到。所开发的PCR检测方法显示出高特异性且无交叉反应。结论是,重组噬菌体fd适合用作内参,能够显著减少生物气溶胶检测程序中的假阴性结果。