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Rapid Detection of Mycobacterium Tuberculosis in Lung Tissue and Analysis of Drug Resistance

机译:快速检测肺组织中结核分枝杆菌分枝杆菌分析及耐药性分析

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This study investigated the methods for optimizing the workflow for improving the diagnostic efficiency for detection of Mycobacterium tuberculosis (MTB) in lung tissue specimens. A total of 278 specimens were used in this study. M. tuberculosis in fresh lung tissue samples was detected by BACTEC MGIT 960 culture system, culturing L-form MTB, rifampicin (RFP) and levofloxacin (LVFX) susceptibility test, and ribonucleic acid (RNA) simultaneous amplification and testing (SAT). Specimen samples were embedded in paraffin and serially sectioned. The sections were subjected to Ziehl-Neelsen staining and Intensified Kinyoun (IK) acid-fast staining. The suspected MTB or L-form MTB specimens were further investigated by deoxyribonucleic acid (DNA) sequencing and fluorescence polymerase chain reaction (PCR) melting curve method to detect the mutations in rpoB gene and gyrA gene. Thirteen specimens were suspected as MTB positive, and 37 specimens were suspected to be L-form MTB positive by Ziehl-Neelsen staining and IK acid-fast staining. Among the 50 specimens, the number of MTB positive specimens detected by SAT, DNA sequencing, and fluorescence PCR melting curve method was 43, 44, and 45, respectively. Only 11 MTB positive specimens were detected by BACTEC MGIT 960 culture system or by culturing L-form MTB. Mutations detected in rpoB gene and gyrA gene by fluorescence PCR melting curve method were similar to those detected by DNA sequencing. Some specimens, detected by melting curve method, exhibited varied drug resistance to RFP, suggesting heterogeneous resistance. Among the remaining 228 specimens, there was no MTB or L-form MTB detected by BACTEC MGIT 960 culture system. However, 5 specimens were detected to be MTB positive by the SAT method. The fluorescent PCR melting curve method, which has a high level of automation and high sensitivity and specificity, could effectively detect heterozygous drug resistance of MTB in lung tissue samples, which is important for clinicians to effectively formulate a therapeutic strategy.
机译:本研究研究了优化工作流程的方法,以提高肺组织标本中诊断效率检测结核病(MTB)的诊断效率。本研究共使用278个标本。通过Bactec Mgit 960培养系统检测到新鲜肺组织样品中的结核病,培养L形MTB,利福平(RFP)和左氧氟沙星(LVFX)敏感性试验和核糖核酸(RNA)同时扩增和试验(SAT)。将样品样品嵌入石蜡中并连续切开。将这些部分进行Ziehl-Neelsen染色并加剧Kinyoun(IK)酸快染色。通过脱氧核糖核酸(DNA)测序和荧光聚合酶链反应(PCR)熔化曲线方法进一步研究疑似MTB或L形式MTB样本,以检测RPOB基因和Gyra基因中的突变。将13种样本称为MTB阳性,37个样本被Ziehl-Neelsen染色和Ik酸快染色阳性为L形MTB阳性。在50个样本中,SAT,DNA测序和荧光PCR熔化曲线方法检测的MTB阳性样本的数量分别为43,44和45。 Bactec Mgit 960培养系统或通过培养L形MTB仅检测11mtB阳性标本。通过荧光PCR熔化曲线方法在RPOB基因和Gyra基因中检测到的突变与通过DNA测序检测的那些。通过熔化曲线法检测的一些标本表现出对RFP的不同耐药性,表明异质性。在剩余的228个标本中,Bactec Mgit 960培养系统检测到没有MTB或L形式MTB。然而,通过SAT方法检测5个样本以MTB阳性。荧光PCR熔化曲线法具有高度自动化和高灵敏度和特异性,可以有效地检测MTB在肺组织样品中的杂合药物抗性,这对于临床医生有效配制治疗策略是重要的。

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