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首页> 外文期刊>Scientific reports. >A rapid culture system uninfluenced by an inoculum effect increases reliability and convenience for drug susceptibility testing of Mycobacterium tuberculosis
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A rapid culture system uninfluenced by an inoculum effect increases reliability and convenience for drug susceptibility testing of Mycobacterium tuberculosis

机译:被接种效应不受血液影响的快速培养系统提高了结核分枝杆菌药物易感性测试的可靠性和便利性

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The Disc Agarose Channel (DAC) system utilizes microfluidics and imaging technologies and is fully automated and capable of tracking single cell growth to produce Mycobacterium tuberculosis (MTB) drug susceptibility testing (DST) results within 3~7 days. In particular, this system can be easily used to perform DSTs without the fastidious preparation of the inoculum of MTB cells. Inoculum effect is one of the major problems that causes DST errors. The DAC system was not influenced by the inoculum effect and produced reliable DST results. In this system, the minimum inhibitory concentration (MIC) values of the first-line drugs were consistent regardless of inoculum sizes ranging from ~103 to ~108 CFU/mL. The consistent MIC results enabled us to determine the critical concentrations for 12 anti-tuberculosis drugs. Based on the determined critical concentrations, further DSTs were performed with 254 MTB clinical isolates without measuring an inoculum size. There were high agreement rates (96.3%) between the DAC system and the absolute concentration method using L?wenstein-Jensen medium. According to these results, the DAC system is the first DST system that is not affected by the inoculum effect. It can thus increase reliability and convenience for DST of MTB. We expect that this system will be a potential substitute for conventional DST systems.
机译:椎间盘琼脂糖通道(DAC)系统利用微流体和成像技术,并完全自动化,并能够跟踪单细胞生长以产生结核病(MTB)药物敏感性测试(DST)在3〜7天内产生。特别地,该系统可以容易地使用而没有苛刻的MTB细胞造影的痕迹制备而没有进行DST。接种效应是导致DST错误的主要问题之一。 DAC系统不受接种效应的影响,并产生可靠的DST结果。在该系统中,无论接种物尺寸范围为约103至〜108 cfu / ml,都是一致的第一线药物的最小抑制浓度(MIC)值一致。一致的MIC结果使我们能够确定12种抗结核药物的临界浓度。基于确定的临界浓度,通过254mTB的临床分离物进行进一步的DST,而不会测量接种物尺寸。 DAC系统与使用L≥Wenstein-Jensen培养基的绝对浓度法之间存在高协议率(96.3%)。根据这些结果,DAC系统是第一个不受接种效应影响的DST系统。因此,它可以提高MTB DST的可靠性和便利性。我们预计该系统将是传统DST系统的潜在替代品。

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