首页> 外文期刊>Journal of Clinical Microbiology >Use of Molecular Methods To Identify the Mycobacterium tuberculosis Complex (MTBC) and Other Mycobacterial Species and To Detect Rifampin Resistance in MTBC Isolates following Growth Detection with the BACTEC MGIT 960 System
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Use of Molecular Methods To Identify the Mycobacterium tuberculosis Complex (MTBC) and Other Mycobacterial Species and To Detect Rifampin Resistance in MTBC Isolates following Growth Detection with the BACTEC MGIT 960 System

机译:使用分子方法鉴定结核分枝杆菌复合体(MTBC)和其他分枝杆菌种并检测BACTEC MGIT 960系统生长检测后MTBC分离物中的利福平耐药性

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A prospective study was organized by using a total of 1,585 consecutive clinical specimens to determine whether biomass obtained from positive growth in the MGIT 960 system could be used directly in AccuProbe DNA hybridization tests, the PCR-based Inno-LiPA Rif.TB (LiPA) assay, and a PCR-based DNA sequencing of the rpoB gene for the rapid identification of the Mycobacterium tuberculosis complex (MTBC) and other mycobacterial species and for the determination of rifampin (RIF) resistance in MTBC strains. The results were compared to routine culture, identification, and susceptibility testing techniques performed on the same samples. The study results revealed that the DNA AccuProbe assay (on the day of growth positivity) readily identified 95.7%, the LiPA assay readily identified 98.6%, and rpoB sequencing readily identified 97.1% of the 70 MTBC isolates from mycobacterial growth indicator tubes (MGIT). In addition, application of the LiPA for the identification and RIF susceptibility testing of the MTBC in growth-positive MGIT resulted in a turnaround time of less than 2 weeks after specimen receipt. Although DNA sequencing of rpoB required a slightly longer (16 days) turnaround time, this method was capable of identifying several species of nontuberculous mycobacteria in addition to identifying MTBC and determining RIF susceptibility or resistance. The molecular methods were also found to rapidly identify RIF-susceptible and -resistant MTBC in two of the three mixed mycobacterial cultures weeks earlier than conventional methods. In conclusion, the biomass obtained in MGIT at the time of growth positivity in the 960 system is sufficient for use in all three molecular tests, and this approach can reduce the turnaround time for reporting results.
机译:通过使用总共1,585个连续的临床标本来组织一项前瞻性研究,以确定从MGIT 960系统中的阳性生长获得的生物量是否可以直接用于基于PCR的Inno-LiPA Rif.TB(LiPA)AccuProbe DNA杂交测试中化验,并基于PCR的 rpoB 基因的DNA测序,用于快速鉴定结核分枝杆菌复合物(MTBC)和其他分枝杆菌物种,并用于确定利福平( MTBC菌株中的RIF)抗性。将结果与对相同样品进行的常规培养,鉴定和药敏试验技术进行了比较。研究结果表明,在来自70个MTBC分离株中,DNA AccuProbe分析(在生长阳性当天)容易鉴定出95.7%,LiPA分析容易鉴定出98.6%, rpoB 测序容易鉴定出97.1%。分枝杆菌生长指示管(MGIT)。此外,将LiPA应用于生长阳性MGIT中MTBC的鉴定和RIF敏感性测试的结果是,标本接收后的周转时间不到2周。尽管 rpoB 的DNA测序需要稍长的时间(16天),但是该方法除了可以识别MTBC并确定RIF敏感性或耐药性之外,还可以识别多种非结核分枝杆菌。还发现分子方法比常规方法提前数周在三种混合分枝杆菌培养物中的两种中快速鉴定了RIF敏感和耐药MTBC。总之,在960系统中,MGIT在生长阳性时获得的生物量足以用于所有三个分子测试,并且这种方法可以减少报告结果的周转时间。

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