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Mycobacterium tuberculosis Next-Generation Whole Genome Sequencing: Opportunities and Challenges

机译:结核分枝杆菌下一代全基因组测序:机遇与挑战

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摘要

Mycobacterium tuberculosis drug resistance is a threat to global tuberculosis (TB) control. Comprehensive and timely drug susceptibility determination is critical to inform appropriate treatment of drug-resistant tuberculosis (DR-TB). Phenotypic drug susceptibility testing (DST) is the gold standard for M. tuberculosis drug resistance determination. M. tuberculosis whole genome sequencing (WGS) has the potential to be a one-stop method for both comprehensive DST and epidemiological investigations. We discuss in this review the tremendous opportunities that next-generation WGS presents in terms of understanding the molecular epidemiology of tuberculosis and mechanisms of drug resistance. The potential clinical value and public health impact in the areas of DST for patient management and tracing of transmission chains for timely public health intervention are also discussed. We present the current challenges for the implementation of WGS in low and middle-income settings. WGS analysis has already been adapted routinely in laboratories to inform patient management and public health interventions in low burden high-income settings such as the United Kingdom. We predict that the technology will be adapted similarly in high burden settings where the impact on the epidemic will be greatest.
机译:结核分枝杆菌的耐药性是对全球结核病(TB)控制的威胁。全面,及时的药物敏感性测定对于告知耐药结核病(DR-TB)的正确治疗至关重要。表型药敏试验(DST)是结核分枝杆菌耐药性测定的金标准。结核分枝杆菌全基因组测序(WGS)有可能成为一站式方法,用于全面的DST和流行病学研究。在这篇综述中,我们将讨论下一代WGS在理解结核病的分子流行病学和耐药机制方面带来的巨大机遇。还讨论了DST领域对患者管理和追踪传输链以进行及时公共卫生干预的潜在临床价值和公共卫生影响。我们提出了在中低收入环境中实施WGS的当前挑战。 WGS分析已在实验室中例行调整,以为英国等低负荷高收入地区的患者管理和公共卫生干预提供信息。我们预测,该技术将在高负担的环境中类似地进行适应,在高负担的环境中对流行病的影响最大。

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