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Screening of Microbial Volatile Organic Compounds for Detection of Disease in Cattle: Development of Lab-scale Method

机译:微生物挥发性有机化合物检测牛疾病的筛选:实验室规模的发展

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The primary hurdle for diagnosis of some diseases is the long incubation required to culture and confirm the presence of bacteria. The concept of using microbial VOCs as "signature markers" could provide a faster and noninvasive diagnosis. Finding biomarkers is challenging due to the specificity required in complex matrices. The objectives of this study were to (1) build/test a lab-scale platform for screening of microbial VOCs and (2) apply it to Mycobacterium avium paratuberculosis; the vaccine strain of M. bovis Bacillus Calmette-Guérin; and M. kansasii to demonstrate detection times greater those typically required for culture. SPME-GC-MS was used for sampling, sample preparation, and analyses. For objective (1), a testing platform was built for headspace sampling of bacterial cultures grown in standard culture flasks via a biosecure closed-loop circulating airflow system. For (2), results show that the suites of VOCs produced by Mycobacteria ssp. change over time and that individual strains produce different VOCs. The developed method was successful in discriminating between strains using a pooled multi-group analysis, and in timepoint-specific multi- and pair-wise comparisons. The developed testing platform can be useful for minimally invasive and biosecure collection of biomarkers associated with human, wildlife and livestock diseases for development of diagnostic point-of-care and field surveillance.
机译:诊断某些疾病的主要障碍是培养并确认细菌存在所需的长孵育。使用微生物VOCS作为“签名标志”的概念可以提供更快和无侵入性的诊断。由于复杂矩阵所需的特异性,发现生物标志物是挑战。本研究的目的是(1)构建/测试一个实验室规模平台,用于筛选微生物VOC和(2)将其施加到分枝杆菌副植物癌中; M. Bovis Bacillus Zhedette-guérin的疫苗菌株;和M. Kansasii以证明通常需要文化所需的检测时间。 SPME-GC-MS用于取样,样品制备和分析。对于客观(1),建立了一种测试平台,用于通过生物安全闭环循环气流系统在标准培养瓶中生长的细菌培养的顶空抽样。对于(2),结果表明Cycobacteria SSP产生的VOC套件。随着时间的推移而变化,个体菌株产生不同的VOC。开发的方法在使用池多组分析中以及特定于时间点特定的多组和配对比较之间的菌株之间成功。开发的测试平台可用于与人,野生动物和畜禽疾病相关的微创和生物标志物收集,以便为诊断护理点和现场监测。

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