Zimenkov Danila V, Kulagina Elena V, Antonova Olga V, Krasnova Maria A, Chernyaeva Ekaterina N, Zhuravlev Vyacheslav Y, Kuz'min Alexey V, Popov Sergey A, Zasedatelev Alexander S, Gryadunov Dmitry A
Engelhardt Institute of Molecular Biology, Russian Academy of Sciences, Moscow, Russian Federation
Engelhardt Institute of Molecular Biology, Russian Academy of Sciences, Moscow, Russian Federation.
J Clin Microbiol. 2015 Apr;53(4):1103-14. doi: 10.1128/JCM.02579-14. Epub 2015 Jan 21.
In addition to the obligatory pathogenic species of the Mycobacterium tuberculosis complex and Mycobacterium leprae, the genus Mycobacterium also includes conditionally pathogenic species that in rare cases can lead to the development of nontuberculous mycobacterial diseases. Because tuberculosis and mycobacteriosis have similar clinical signs, the accurate identification of the causative agent in a clinical microbiology laboratory is important for diagnostic verification and appropriate treatment. This report describes a low-density hydrogel-based microarray containing oligonucleotide probes based on the species-specific sequences of the gyrB gene fragment for mycobacterial species identification. The procedure included the amplification of a 352-nucleotide fragment of the gene and its hybridization on a microarray. The triple-species-specific probe design and the algorithm for hybridization profile recognition based on the calculation of Pearson correlation coefficients, followed by the construction of a profile database, allowed for the reliable and accurate identification of mycobacterial species, including mixed-DNA samples. The assay was used to evaluate 543 clinical isolates from two regions of Russia, demonstrating its ability to detect 35 mycobacterial species, with 99.8% sensitivity and 100% specificity when using gyrB, 16S, and internal transcribed spacer (ITS) fragment sequencing as the standard. The testing of clinical samples showed that the sensitivity of the assay was 89% to 95% for smear-positive samples and 36% for smear-negative samples. The large number of identified species, the high level of sensitivity, the ability to detect mycobacteria in clinical samples, and the up-to-date profile database make the assay suitable for use in routine laboratory practice.
除了结核分枝杆菌复合群和麻风分枝杆菌这些 obligatory 致病菌种外,分枝杆菌属还包括一些条件致病菌种,在罕见情况下可导致非结核分枝杆菌病的发生。由于结核病和分枝杆菌病有相似的临床症状,因此在临床微生物实验室准确鉴定病原体对于诊断验证和恰当治疗很重要。本报告描述了一种基于低密度水凝胶的微阵列,其包含基于分枝杆菌菌种特异性 gyrB 基因片段序列的寡核苷酸探针,用于分枝杆菌菌种鉴定。该流程包括该基因 352 个核苷酸片段的扩增及其在微阵列上的杂交。基于皮尔逊相关系数计算的三物种特异性探针设计和杂交图谱识别算法,随后构建图谱数据库,能够可靠且准确地鉴定分枝杆菌菌种,包括混合 DNA 样本。该检测方法用于评估来自俄罗斯两个地区的 543 份临床分离株,结果表明其能够检测 35 种分枝杆菌菌种,以 gyrB、16S 和内部转录间隔区(ITS)片段测序作为标准时,灵敏度为 99.8%,特异性为 100%。对临床样本的检测表明,该检测方法对涂片阳性样本的灵敏度为 89%至 95%,对涂片阴性样本的灵敏度为 36%。大量已鉴定的菌种、高灵敏度水平、在临床样本中检测分枝杆菌的能力以及最新的图谱数据库使得该检测方法适用于常规实验室实践。