Division of Microbiology, Department of Pathology and Microbiology, Nihon University School of Medicine, Tokyo, Japan.
Seoul Clinical Laboratories, Seoul, South Korea.
Eur J Clin Microbiol Infect Dis. 2018 Aug;37(8):1405-1410. doi: 10.1007/s10096-018-3258-y. Epub 2018 Apr 19.
Smear-negative and drug-resistant cases of tuberculosis (TB) disease necessitate the development of new diagnostic methods, especially in resource-limited settings. To improve the current TB situations, sensitive and specific TB point-of-care tests (POCTs) should be developed. This review addresses the current status of TB, novel diagnostic methodologies for TB, and the impact of those new diagnostics on TB control in such situations. Moreover, the perspective of TB management based on laboratory examinations is described. Smear microscopy with sputum samples is the only laboratory examination available in many resource-limited settings and is still used globally. Several nucleic acid amplification tests (NATs) have been developed. The World Health Organization (WHO) endorsed novel diagnostics based on NATs and updated their definition of a bacteriologically confirmed case requiring the biological specimen to be positive by smear microscopy, culture, or the WHO-recommended rapid diagnostic protocols. The use of new diagnostics increased the number of bacteriologically confirmed TB cases. Novel diagnostics are now available, but their sensitivity is still lower than that of conventional liquid culture method. To address the increasing incidence of TB, more resources including novel diagnostics as POCTs with higher sensitivity must be allocated to healthcare systems.
涂阴和耐药结核病病例需要开发新的诊断方法,特别是在资源有限的环境中。为了改善当前的结核病状况,应该开发出敏感和特异的结核病即时检测(POCT)。本综述介绍了结核病的当前状况、结核病的新型诊断方法,以及这些新诊断方法对这些情况下结核病控制的影响。此外,还描述了基于实验室检查的结核病管理视角。在许多资源有限的环境中,仅可使用痰标本的涂片显微镜检查,且这种方法仍在全球范围内使用。已经开发出了几种核酸扩增检测(NAT)。世界卫生组织(WHO)基于 NAT 认可了新型诊断方法,并更新了其定义,即需要通过涂片显微镜检查、培养或 WHO 推荐的快速诊断方案使生物标本呈阳性的细菌学确诊病例。新型诊断方法的使用增加了细菌学确诊的结核病病例数量。现在已经有了新的诊断方法,但它们的灵敏度仍低于传统的液体培养方法。为了应对结核病发病率的上升,必须为医疗保健系统分配更多的资源,包括具有更高灵敏度的新型即时检测作为 POCT。