Department of Research, Advanta Genetics, 10935 CR 159, Tyler, TX 75703, USA.
Department of Human Resource Development, University of Texas at Tyler, 3900 University Boulevard, Tyler, TX 75799, USA.
Adv Respir Med. 2023 Feb 2;91(1):49-65. doi: 10.3390/arm91010006.
Although it is clinically important for acute respiratory tract (co)infections to have a rapid and accurate diagnosis, it is critical that respiratory medicine understands the advantages of current laboratory methods. In this study, we tested nasopharyngeal samples ( = 29) with a commercially available PCR assay and compared the results with those of a hybridization-capture-based mNGS workflow. Detection criteria for positive PCR samples was Ct < 35 and for mNGS samples it was >40% target coverage, median depth of 1X and RPKM > 10. A high degree of concordance (98.33% PPA and 100% NPA) was recorded. However, mNGS yielded positively 29 additional microorganisms (23 bacteria, 4 viruses, and 2 fungi) beyond PCR. We then characterized the microorganisms of each method into three phenotypic categories using the IDbyDNA Explify Platform (Illumina Inc, San Diego, CA, USA) for consideration of infectivity and trafficking potential to the lower respiratory region. The findings are significant for providing a comprehensive yet clinically relevant microbiology profile of acute upper respiratory infection, especially important in immunocompromised or immunocompetent with comorbidity respiratory cases or where traditional syndromic approaches fail to identify pathogenicity. Accordingly, this technology can be used to supplement current syndrome-based tests, and data can quickly and effectively be phenotypically characterized for trafficking potential, clinical (co)infection, and comorbid consideration-with promise to reduce morbidity and mortality.
虽然对于急性呼吸道(共)感染来说,快速准确的诊断具有重要的临床意义,但呼吸医学理解当前实验室方法的优势至关重要。在这项研究中,我们使用市售的 PCR 检测试剂盒检测鼻咽样本(n = 29),并将结果与杂交捕获型 mNGS 工作流程进行比较。PCR 阳性样本的检测标准为 Ct < 35,mNGS 样本的检测标准为 >40%靶标覆盖率、中位数深度为 1X 和 RPKM > 10。记录到高度一致性(98.33% PPA 和 100% NPA)。然而,mNGS 检测出 PCR 之外的 29 种额外微生物(23 种细菌、4 种病毒和 2 种真菌)呈阳性。然后,我们使用 IDbyDNA Explify 平台(Illumina Inc,圣地亚哥,CA,美国)将每种方法的微生物分为三个表型类别,用于考虑传染性和向下呼吸道区域的运输潜力。这些发现对于提供急性上呼吸道感染的全面而又具有临床相关性的微生物组学图谱具有重要意义,特别是在免疫功能低下或免疫功能正常但伴有合并症的呼吸道病例中,或者传统的综合征方法无法确定致病性时更为重要。因此,该技术可用于补充当前基于综合征的检测方法,并且可以快速有效地对表型特征进行分类,以评估运输潜力、临床(共)感染和合并症的考虑因素,有望降低发病率和死亡率。