School of Interdisciplinary Bioscience and Bioengineering, Pohang University of Science and Technology, Pohang, Gyeongbuk 37673, Korea.
Section of Microbiology, International Tuberculosis Research Center, Masanhappogu, Changwon, Gyeongnam, 51755, Korea.
Sci Rep. 2017 Apr 19;7:46090. doi: 10.1038/srep46090.
Tuberculosis (TB) has severely threatened public health via emerging multidrug-resistant (MDR) and extensively drug-resistant (XDR) Mycobacterium tuberculosis (MTB) strains. For effective TB treatment, rapid, accurate, and multiplex detection of drug resistance is extremely important. However, conventional methods for TB diagnosis are time consuming and have a limited effect on treatment. Nucleic acid-based molecular detection methods have been developed as an effective MDR/XDR-TB diagnosis technology. Among the nucleic acid-based methods, ligation-dependent methods are attractive as MDR/XDR-MTB detection technologies, but multiplex analysis is limited by the detection method. Although an electrophoresis-based method is considered for multiple target detection because it is free from the errors pertaining to hybridization-based systems, the procedure of multiplex analysis is quite complicated owing to the DNA size-based separation system. In this study, we report an accurate, rapid, and simple multiple MDR/XDR-MTB detection technology using gap-filling ligation reaction coupled with high-resolution capillary electrophoresis-based single-strand conformation polymorphism. Using this system, rapid and accurate MDR/XDR-MTB detection is feasible via similar length probes without the complicated step of probe design. We found that this method could accurately and effectively detect highly polymorphic regions in specific codons associated with drug resistance.
结核病(TB)通过新兴的耐多药(MDR)和广泛耐药(XDR)结核分枝杆菌(MTB)菌株严重威胁公众健康。为了进行有效的结核病治疗,快速、准确和多重耐药性检测非常重要。然而,传统的结核病诊断方法耗时且对治疗效果有限。基于核酸的分子检测方法已作为一种有效的 MDR/XDR-TB 诊断技术得到了发展。在基于核酸的方法中,连接依赖性方法作为 MDR/XDR-MTB 检测技术很有吸引力,但多重分析受到检测方法的限制。虽然电泳法被认为是一种用于多重目标检测的方法,因为它不受基于杂交系统的错误影响,但由于基于 DNA 大小的分离系统,多重分析的过程相当复杂。在这项研究中,我们报告了一种使用缺口填充连接反应结合基于高分辨率毛细管电泳的单链构象多态性的准确、快速和简单的多重 MDR/XDR-MTB 检测技术。使用该系统,通过类似长度的探针进行快速和准确的 MDR/XDR-MTB 检测是可行的,而无需探针设计的复杂步骤。我们发现,该方法可以准确有效地检测与耐药性相关的特定密码子中高度多态性的区域。