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在南非一家转诊实验室中,用于一线和二线抗结核药物药敏试验的线性探针分析与BACTEC MGIT 960系统的比较。

Comparison of line probe assay to BACTEC MGIT 960 system for susceptibility testing of first and second-line anti-tuberculosis drugs in a referral laboratory in South Africa.

作者信息

Maningi Nontuthuko E, Malinga Lesibana A, Antiabong John F, Lekalakala Ruth M, Mbelle Nontombi M

机构信息

Department of Medical Microbiology, Faculty of Health Sciences, University of Pretoria, Private Bag X323, Arcadia, 0007, South Africa.

Tuberculosis Platform, South African Medical Research Council, Pretoria, South Africa.

出版信息

BMC Infect Dis. 2017 Dec 28;17(1):795. doi: 10.1186/s12879-017-2898-3.

Abstract

BACKGROUND

The incidence of multidrug-resistant tuberculosis (MDR-TB) is increasing and the emergence of extensively drug-resistant tuberculosis (XDR-TB) is a major challenge. Controlling resistance, reducing transmission and improving treatment outcomes in MDR/XDR-TB patients is reliant on susceptibility testing. Susceptibility testing using phenotypic methods is labour intensive and time-consuming. Alternative methods, such as molecular assays are easier to perform and have a rapid turn-around time. The World Health Organization (WHO) has endorsed the use of line probe assays (LPAs) for first and second line diagnostic screening of MDR/XDR-TB.

METHODS

We compared the performance of LPAs to BACTEC MGIT 960 system for susceptibility testing of bacterial resistance to first-line drugs: rifampicin (RIF), isoniazid (INH), ethambutol (EMB), and second-line drugs ofloxacin (OFL) and kanamycin (KAN). One hundred (100) consecutive non-repeat Mycobacterium tuberculosis cultures, resistant to either INH or RIF or both, as identified by BACTEC MGIT 960 were tested. All isoniazid resistant cultures (n = 97) and RIF resistant cultures (n = 90) were processed with Genotype®MTBDRplus and Genotype®MTBDRsl line probe assays (LPAs). The agar proportion method was employed to further analyze discordant LPAs and the MGIT 960 isolates.

RESULTS

The Genotype ®MTBDRplus (version 2) sensitivity, specificity, PPV and NPV from culture isolates were as follows: RIF, 100%, 87.9, 58.3% and 100%; INH, 100%, 94.4%, 93.5% and 100%. The sensitivity, specificity PPV and NPV for Genotype ® MTBDRsl (version 1 and 2) from culture isolates were as follows: EMB, 60.0%, 89.2%, 68.2% and 85.3%; OFL, 100%, 91.4%, 56.2% and 100%; KAN, 100%, 97.7%, 60.0% and 100%. Line probe assay showed an excellent agreement (k = 0.93) for INH susceptibility testing when compared to MGIT 960 system while there was good agreement (k = 0.6-0.7) between both methods for RIF, OFL, KAN testing and moderate agreement for EMB (k = 0.5). A high RIF mono-resistance (MGIT 960 33/97 and LPA 43/97) was observed.

CONCLUSION

LPAs are an efficient and reliable rapid molecular DST assay for rapid susceptibility screening of MDR and XDR-TB. Using LPAs in high MDR/XDR burden countries allows for appropriate and timely treatment, which will reduce transmission rates, morbidity and improve treatment outcomes in patients.

摘要

背景

耐多药结核病(MDR-TB)的发病率正在上升,广泛耐药结核病(XDR-TB)的出现是一项重大挑战。控制MDR/XDR-TB患者的耐药性、减少传播并改善治疗效果依赖于药敏试验。使用表型方法进行药敏试验 labor intensive 且耗时。诸如分子检测等替代方法操作更简便,周转时间更快。世界卫生组织(WHO)已认可使用线性探针检测(LPA)进行MDR/XDR-TB的一线和二线诊断筛查。

方法

我们比较了LPA与BACTEC MGIT 960系统在检测细菌对一线药物利福平(RIF)、异烟肼(INH)、乙胺丁醇(EMB)以及二线药物氧氟沙星(OFL)和卡那霉素(KAN)耐药性的药敏试验中的表现。对100株经BACTEC MGIT 960鉴定为对INH或RIF或两者耐药的连续非重复结核分枝杆菌培养物进行检测。所有异烟肼耐药培养物(n = 97)和利福平耐药培养物(n = 90)均采用Genotype®MTBDRplus和Genotype®MTBDRsl线性探针检测(LPA)进行处理。采用琼脂比例法进一步分析不一致的LPA和MGIT 960分离株。

结果

来自培养分离株的Genotype®MTBDRplus(版本2)的敏感性、特异性、阳性预测值和阴性预测值如下:RIF,100%、87.9、58.3%和100%;INH,100%、94.4%、93.5%和100%。来自培养分离株的Genotype®MTBDRsl(版本1和2)的敏感性、特异性、阳性预测值和阴性预测值如下:EMB,60.0%、89.2%、68.2%和85.3%;OFL,100%、91.4%、56.2%和100%;KAN,100%、97.7%、60.0%和100%。与MGIT 960系统相比,线性探针检测在INH药敏试验中显示出极佳的一致性(k = 0.93),而在RIF、OFL、KAN检测中两种方法之间有良好的一致性(k = 0.6 - 0.7),在EMB检测中有中等一致性(k = 0.5)。观察到较高的利福平单耐药情况(MGIT 960为33/97,LPA为43/97)。

结论

LPA是一种高效且可靠的快速分子DST检测方法,用于MDR和XDR-TB的快速药敏筛查。在MDR/XDR负担较高的国家使用LPA可实现恰当且及时的治疗,这将降低传播率、发病率并改善患者的治疗效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3de6/5745758/ab98310fbfa1/12879_2017_2898_Fig1_HTML.jpg

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