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Updated: Apr 3, 2026

Demonstrating a Multi-drug Resistant Mycobacterium tuberculosis Amplification Microarray
Published on: April 25, 2014
Pyrosequencing analysis for mutations in embB codon306 among clinical mycobacterium tuberculosis isolates from
Huaqiang Zhang1, Xiaoguang Chen2, Zhongdong Wang1
1Qingdao Center for Disease Control and Prevention Qingdao, Shandong, China.
Abstract:
In this study, our objectives was to analyze the molecular characteristics of mutation at embB codon306 in Mycobacterium tuberculosis in Qingdao by pyrosequencing technology, and to assess the value of embB codon306 used as a molecular marker to diagnose multidrug resistant (MDR) TB strains. Pyrosequencing was used to detect mutations at embB codon306 among M. tuberculosis isolates from tuberculosis (TB) patients in Qingdao. The correlation between embB306 mutation and MDR phenotype was evaluated by comparing with conventional drug susceptibility testing results. 60.9% of MDR strains and 15.2% of non-MDR strains carried embB306 mutation, respectively. The percentage of MDR-TB harboring embB306 mutation was significantly higher than that of non- MDR-TB (χ(2)=15.09, P < 0.01). EmbB306 mutation serving as a marker to diagnose MDR-TB comparing with the traditional susceptibility test, the specificity, sensitivity and accuracy were 85%, 61%, and 77%, respectively. EmbB306 mutation is the main mechanism of TB resistance to multidrug in Qingdao, showing an association with the MDR. Pyrosequencing should be a good diagnostic tool for MDR-TB in Qingdao.

