• 제목/요약/키워드: Mycobacterium tuberculosis complex (MTBC)

검색결과 4건 처리시간 0.017초

최근 10년간 광주 2차병원의 호흡기검체에서 분리된 비결핵 항산균의 폐질환 유병률에 대한 연구 (Study on the Prevalence of Lung Disease of Non-Tuberculosis Mycobacterium Isolated from Respiratory Specimens in Gwangju Second Hospital over the Last 10 Years)

  • 백해경
    • 대한임상검사과학회지
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    • 제52권4호
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    • pp.349-355
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    • 2020
  • 최근 호흡기 검체에서 결핵균(Mycobacterium tuberculosis complex, MTBC) 검출은 감소하고 비결핵 항산균(nontuberculous mycobacteria, NTM)은 증가하고 있다. 본 연구는 2010년부터 2019년까지 광주 2차 병원에 의뢰된 호흡기검체 132,359예를 대상으로 NTM 검출 증가 대비 NTM 폐질환 환자의 증가와 연령 및 성별 분포를 조사하였다. 그리고 NTM양성환자의 폐결핵 감염 여부를 확인하고자 하였다. 항산균배양 양성률은 2010년 21.9% (1,624/7,403), 2019년 17.4% (1,937/11,161)였다. NTM 분리 비율은 2010년 38.0% (617/1,624)에서 2019년에 72.4% (1,403/1,937)로 증가하였다. NTM 양성환자의 NTM 폐질환 진단률은 평균 27.1%였다. 이 중 현재 폐결핵에 감염된 사례는 2010년 44.4%에서 2019년 23.5%로 감소하고 과거 진단 또는 치료 사례도 15.6%에서 10.6%로 감소하였다. 전체 NTM 폐질환 중 69.0%가 60대 이상이었으며 남자보다 여자 환자가 더 많았다. 향후 고령화와 결핵 관리 정책에 따라 NTM 검출은 증가하는 반면 MTBC는 감소할 것으로 예상되며, 실험실에서는 이 현상에 세심한 주의를 기울이고 지속적으로 검사 결과를 감시해야 할 것이다.

Detection of Rifampicin- and Isoniazid-Resistant Mycobacterium tuberculosis Using the Quantamatrix Multiplexed Assay Platform System

  • Wang, Hye-young;Uh, Young;Kim, Seoyong;Cho, Eunjin;Lee, Jong Seok;Lee, Hyeyoung
    • Annals of Laboratory Medicine
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    • 제38권6호
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    • pp.569-577
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    • 2018
  • Background: The increasing prevalence of drug-resistant tuberculosis (TB) infection represents a global public health emergency. We evaluated the usefulness of a newly developed multiplexed, bead-based bioassay (Quantamatrix Multiplexed Assay Platform [QMAP], QuantaMatrix, Seoul, Korea) to rapidly identify the Mycobacterium tuberculosis complex (MTBC) and detect rifampicin (RIF) and isoniazid (INH) resistance-associated mutations. Methods: A total of 200 clinical isolates from respiratory samples were used. Phenotypic anti-TB drug susceptibility testing (DST) results were compared with those of the QMAP system, reverse blot hybridization (REBA) MTB-MDR assay, and gene sequencing analysis. Results: Compared with the phenotypic DST results, the sensitivity and specificity of the QMAP system were 96.4% (106/110; 95% confidence interval [CI] 0.9072-0.9888) and 80.0% (72/90; 95% CI 0.7052-0.8705), respectively, for RIF resistance and 75.0% (108/144; 95% CI 0.6731-0.8139) and 96.4% (54/56; 95% CI 0.8718-0.9972), respectively, for INH resistance. The agreement rates between the QMAP system and REBA MTB-MDR assay for RIF and INH resistance detection were 97.6% (121/124; 95% CI 0.9282-0.9949) and 99.1% (109/110; 95% CI 0.9453-1.0000), respectively. Comparison between the QMAP system and gene sequencing analysis showed an overall agreement of 100% for RIF resistance (110/110; 95% CI 0.9711-1.0000) and INH resistance (124/124; 95% CI 0.9743-1.0000). Conclusions: The QMAP system may serve as a useful screening method for identifying and accurately discriminating MTBC from non-tuberculous mycobacteria, as well as determining RIF- and INH-resistant MTB strains.

Rapid Detection and Monitoring Therapeutic Efficacy of Mycobacterium tuberculosis Complex Using a Novel Real-Time Assay

  • Jiang, Li Juan;Wu, Wen Juan;Wu, Hai;Ryang, Son Sik;Zhou, Jian;Wu, Wei;Li, Tao;Guo, Jian;Wang, Hong Hai;Lu, Shui Hua;Li, Yao
    • Journal of Microbiology and Biotechnology
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    • 제22권9호
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    • pp.1301-1306
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    • 2012
  • We combined real-time RT-PCR and real-time PCR (R/P) assays using a hydrolysis probe to detect Mycobacterium tuberculosis complex (MTBC)-specific 16S rRNA and its rRNA gene (rDNA). The assay was applied to 28 non-respiratory and 207 respiratory specimens from 218 patients. Total nucleic acids (including RNA and DNA) were extracted from samples, and results were considered positive if the repeat RT-PCR threshold cycle was ${\leq}35$ and the ratio of real-time RT-PCR and real-time PCR load was ${\geq}1.51$. The results were compared with those from existing methods, including smear, culture, and real-time PCR. Following resolution of the discrepant results between R/P assay and culture, the overall sensitivity, specificity, positive predictive values (PPV), and negative predictive values (NPV) of all samples (including non-respiratory and respiratory specimens) were 98.2%, 97.2%, 91.7%, and 99.4%, respectively, for R/P assay, and 83.9%, 89.9%, 72.3%, and 94.7%, respectively, for real-time PCR. Furthermore, the R/P assay of four patient samples showed a higher ratio before treatment than after several days of treatment. We conclude that the R/P assay is a rapid and accurate method for direct detection of MTBC, which can distinguish viable and nonviable MTBC, and thus may guide patient therapy and public health decisions.

Decadal analysis of livestock tuberculosis in Korea (2013~2022): Epidemiological patterns and trends

  • Yeonsu Oh;Dongseob Tark;Gwang-Seon Ryoo;Dae-Sung Yoo;Woo, H. Kim;Won-Il Kim;Choi-Kyu Park;Won-Keun Kim;Ho-Seong Cho
    • 한국동물위생학회지
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    • 제46권4호
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    • pp.293-302
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    • 2023
  • This study provides a comprehensive analysis of the epidemiological trends and challenges in managing tuberculosis (TB) in livestock in Korea from 2013 to 2022. Tuberculosis, caused by the Mycobacterium tuberculosis complex, is a significant zoonotic disease affecting cattle, deer, and other domesticated animals. Despite the initiation of a test-and-slaughter eradication policy in 1964, TB has continued to persist in Korean livestock, particularly in cattle and deer. This study used data from the Korea Animal Health Integrated System and provincial animal health laboratories to analyze TB incidence in various livestock including different cattle breeds and deer species. The results from 2013 to 2022 showed a peak in TB cases in 2019 with a subsequent decline by 2022. The study highlighted a significant incidence of TB in Korean native cattle and the need for amore inclusive approach towards TB testing and control in different cattle breeds. Additionally, the study underscored the importance of addressing TB in other animals such as goats, wildlife, and companion animals for a holistic approach to TB eradication in Korea. The findings suggest that while the test-and-slaughter strategy has been historically effective, there is a need for adaptation to the current challenges, and learning from successful eradiation stories on other countries like Australia. A collaborative effort involving an expanded surveillance system, active private sector participation, and robust government support essential for the efficient eradication of TB in livestock in Korea.