Ibis Biosciences, Abbott, Carlsbad, California, United States of America.
PLoS One. 2012;7(6):e36528. doi: 10.1371/journal.pone.0036528. Epub 2012 Jun 29.
Technology for comprehensive identification of biothreats in environmental and clinical specimens is needed to protect citizens in the case of a biological attack. This is a challenge because there are dozens of bacterial and viral species that might be used in a biological attack and many have closely related near-neighbor organisms that are harmless. The biothreat agent, along with its near neighbors, can be thought of as a biothreat cluster or a biocluster for short. The ability to comprehensively detect the important biothreat clusters with resolution sufficient to distinguish the near neighbors with an extremely low false positive rate is required. A technological solution to this problem can be achieved by coupling biothreat group-specific PCR with electrospray ionization mass spectrometry (PCR/ESI-MS). The biothreat assay described here detects ten bacterial and four viral biothreat clusters on the NIAID priority pathogen and HHS/USDA select agent lists. Detection of each of the biothreat clusters was validated by analysis of a broad collection of biothreat organisms and near neighbors prepared by spiking biothreat nucleic acids into nucleic acids extracted from filtered environmental air. Analytical experiments were carried out to determine breadth of coverage, limits of detection, linearity, sensitivity, and specificity. Further, the assay breadth was demonstrated by testing a diverse collection of organisms from each biothreat cluster. The biothreat assay as configured was able to detect all the target organism clusters and did not misidentify any of the near-neighbor organisms as threats. Coupling biothreat cluster-specific PCR to electrospray ionization mass spectrometry simultaneously provides the breadth of coverage, discrimination of near neighbors, and an extremely low false positive rate due to the requirement that an amplicon with a precise base composition of a biothreat agent be detected by mass spectrometry.
需要开发综合鉴定环境和临床标本中生物威胁的技术,以在发生生物袭击时保护公民。这是一个挑战,因为在生物袭击中可能使用数十种细菌和病毒物种,其中许多都有密切相关的近缘生物,它们是无害的。生物威胁剂及其近缘生物可以被认为是一个生物威胁簇或简称生物簇。需要具备足够分辨率的全面检测重要生物威胁簇的能力,足以区分具有极低假阳性率的近缘生物。通过将生物威胁组特异性 PCR 与电喷雾电离质谱(PCR/ESI-MS)相结合,可以实现该问题的技术解决方案。这里描述的生物威胁检测法检测了 NIAID 优先病原体和 HHS/USDA 选择剂清单上的十个细菌和四个病毒生物威胁簇。通过分析将生物威胁核酸掺入过滤后的环境空气中提取的核酸中制备的广泛的生物威胁生物和近缘生物的集合,对每个生物威胁簇的检测进行了验证。进行了分析实验以确定覆盖范围的广度、检测限、线性、灵敏度和特异性。此外,通过测试来自每个生物威胁簇的不同生物的多样化集合来证明检测法的广度。配置的生物威胁检测法能够检测到所有目标生物簇,并且不会将任何近缘生物错误识别为威胁。将生物威胁簇特异性 PCR 与电喷雾电离质谱相结合,由于需要通过质谱检测具有生物威胁剂精确碱基组成的扩增子,因此同时提供了广泛的覆盖范围、近缘生物的区分度和极低的假阳性率。
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