Author:
Che Nanying,Qu Yang,Zhang Chen,Zhang Li,Zhang Haiqing
Abstract
BackgroundA pathological examination plays an important role in the confirmation of a diagnosis of tuberculosis, especially for smear- and culture-negative cases. However, conventional Ziehl–Neelsen staining and histological tests lack sensitivity and specificity.ObjectiveTo evaluate the diagnostic value of immunohistochemical staining to detect Mycobacterium tuberculosis protein Ag85B and a newly developed double staining (ZC staining) method that can simultaneously detect acid-fast bacilli and M. tuberculosis antigen in the same histological section.MethodsA total of 282 formalin-fixed paraffin-embedded lung tissues were identified following histological examination, including 212 cases of pulmonary tuberculosis and 70 other pulmonary diseases. Ziehl–Neelsen staining, Ag85B-immunohistochemistry and the newly developed ZC staining were performed on serial sections of all the specimens.ResultsExpression patterns of Ag85B were consistent with the distribution patterns of acid-fast bacilli. The signal produced by Ag85B-immunohistochemistry was much stronger than that produced by Ziehl–Neelsen staining. The sensitivity of Ag85B-immunohistochemistry was significantly higher than that of Ziehl–Neelsen staining, 53.8% (95% CI 47.0% to 60.5%) vs 34.4% (95% CI 28.0% to 40.9%). The newly developed ZC staining, integrating advantages of both Ziehl–Neelsen staining and immunohistochemistry, further improved the rate of sensitivity up to 65.6% (95% CI 59.1% to 72.0%).ConclusionsThis new method, detecting both acid-fast bacilli and M. tuberculosis antigen, is a simple and sensitive method for the pathological diagnosis of tuberculosis and can be easily incorporated into routine tests of pathological laboratories.
Subject
General Medicine,Pathology and Forensic Medicine
Reference25 articles.
1. World Health Organization. Global tuberculosis report 2014. Geneva, Switzerland: WHO Press, 2014.
2. Pathogen-derived biomarkers for active tuberculosis diagnosis;Tucci;Front Microbiol,2014
3. Modern approaches to a rapid diagnosis of tuberculosis: Promises and challenges ahead
4. World Health Organization. Policy statement: automated realtime nucleic acid amplification technology for rapid and simultaneous detection of tuberculosis and rifampicin resistance: Xpert MTB/RIF System. Geneva, Switzerland: WHO Press, 2011.
5. Rapid Molecular Detection of Tuberculosis and Rifampin Resistance
Cited by
17 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献