Ghasemi Fatemeh, Kardan-Yamchi Jalil, Heidary Mohsen, Karami-Zarandi Morteza, Akrami Sousan, Maleki Abbas, Khoshnood Saeed, Kazemian Hossein
Division of Microbiology, Department of Pathobiology, School of Public Health, Tehran University of Medical Sciences, Tehran, Iran.
Quality Control and Screening Management Office, Deputy of Technical and New Technologies, Iranian Blood Transfusion Organization, Tehran, Iran.
J Clin Tuberc Other Mycobact Dis. 2024 May 4;36:100451. doi: 10.1016/j.jctube.2024.100451. eCollection 2024 Aug.
The bacterial pathogen is responsible for the ongoing global tuberculosis (TB) epidemic. Bacille Calmette-Guérin (BCG), the only currently approved TB vaccine, is successful in preventing disseminated disease in newborns. However, it has a variable efficacy against pulmonary TB in adults. This protective effect of the vaccine varies greatly among different populations and geographical areas, which the increased exposure of particular populations to non-tuberculous mycobacteria (NTM) is considered as one of the reasons for this issue. Numerous studies have shown that exposure to NTM species causes the host immune system to be improperly primed. It has also been suggested that NTM species may be blamed for reduction in BCG vaccine effectiveness against . The increased exposure of certain populations to NTM has diverse effects on BCG efficacy. Moreover, the exposure to NTM can induce opposite effects on BCG efficacy depending on the NTM exposure route and survivability. A detailed understanding of the impact of NTM exposure on the efficacy of the BCG vaccine is essential for ongoing efforts to develop new TB vaccines as it may ultimately be a crucial success factor. The aim of this study was to review the findings of the studies focusing on the effects of NTM on BCG vaccine efficacy in animal models.
这种细菌性病原体是导致全球结核病疫情持续的原因。卡介苗(BCG)是目前唯一获批的结核病疫苗,在预防新生儿播散性疾病方面取得了成功。然而,它对成人肺结核的预防效果存在差异。该疫苗的这种保护作用在不同人群和地理区域差异很大,特定人群对非结核分枝杆菌(NTM)接触增加被认为是导致这一问题的原因之一。大量研究表明,接触NTM会使宿主免疫系统启动不当。也有人认为,NTM可能是卡介苗预防效果下降的原因。特定人群对NTM接触增加对卡介苗效果有多种影响。此外,根据NTM接触途径和生存能力,接触NTM对卡介苗效果可产生相反影响。深入了解NTM接触对卡介苗效果的影响对于当前开发新型结核病疫苗的努力至关重要,因为这最终可能是一个关键的成功因素。本研究的目的是综述聚焦于NTM对动物模型中卡介苗效果影响的研究结果。