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Rolling Circle Amplification for Direct Detection of rpoB Gene Mutations in Mycobacterium tuberculosis Isolates from Clinical Specimens

机译:滚环扩增技术用于直接检测临床标本中结核分枝杆菌中rpoB基因突变

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Rapid and accurate detection of multidrug resistance (MDR) in Mycobacterium tuberculosis is essential to improve treatment outcomes and reduce global transmission but remains a challenge. Rifampin (RIF) resistance is a reliable marker of MDR tuberculosis (TB) since by far the majority of RIF-resistant strains are also isoniazid (INH) resistant. We have developed a rapid, sensitive, and specific method for detecting the most common mutations associated with RIF resistance, in the RIF resistance determining region (RRDR) of rpoB, using a cocktail of six padlock probes and rolling circle amplification (RCA). We used this method to test 46 stored M. tuberculosis clinical isolates with known RIF susceptibility profiles (18 RIF resistant, 28 susceptible), a standard susceptible strain (H37Rv, ATCC 27294) and 78 M. tuberculosis culture-positive clinical (sputum) samples, 59 of which grew RIF-resistant strains. All stored clinical isolates were correctly categorized, by the padlock probe/RCA method, as RIF susceptible or resistant; the sensitivity and specificity of the method, for direct detection of phenotypically RIF-resistant M. tuberculosis in clinical specimens, were 96.6 and 89.5%, respectively. This method is rapid, simple, and inexpensive and has the potential for high-throughput routine screening of clinical specimens for MDR M. tuberculosis, particularly in high prevalence settings with limited resources.
机译:快速准确地检测结核分枝杆菌中的多药耐药性(MDR)对于改善治疗效果和减少全球传播至关重要,但仍然是一个挑战。利福平(RIF)耐药性是耐多药结核(TB)的可靠标志,因为到目前为止,大多数耐RIF菌株也具有异烟肼(INH)耐药性。我们开发了一种快速,灵敏且特定的方法,使用六个挂锁探针并滚动,检测 rpoB 的RIF耐药性确定区域(RRDR)中与RIF耐药性相关的最常见突变。圆放大(RCA)。我们使用此方法测试了46具已知RIF敏感性谱(18 RIF耐药,28易感),标准易感菌株(H37Rv,ATCC 27294)和78结核分枝杆菌培养阳性临床(痰)样本的结核分枝杆菌临床分离株,其中59株生长了抗RIF的菌株。通过挂锁探针/ RCA方法将所有储存的临床分离株正确分类为RIF易感或耐药。直接检测临床标本中具有表型抗RIF的结核分枝杆菌的方法的灵敏度和特异性分别为96.6和89.5%。该方法快速,简便且廉价,并且具有对耐多药结核分枝杆菌的临床标本进行高通量常规筛查的潜力,尤其是在资源有限的高流行地区。

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