Adami Alexander J, Cervantes Jorge L
Department of Immunology, University of Connecticut Health Center, USA.
Department of Pediatrics, University of Connecticut Health Center, USA; Connecticut Children's Medical Center, USA.
Tuberculosis (Edinb). 2015 Dec;95(6):651-658. doi: 10.1016/j.tube.2015.07.004. Epub 2015 Jul 30.
Advances in next generation sequencing (NGS) technology have provided the tools to comprehensively and accurately characterize the microbial community in the respiratory tract in health and disease. The presence of commensal and pathogenic bacteria has been found to have important effects on the lung immune system. Until relatively recently, the lung has received less attention compared to other body sites in terms of microbiome characterization, and its study carries special technological difficulties related to obtaining reliable samples as compared to other body niches. Additionally, the complexity of the alveolar immune system, and its interactions with the lung microbiome, are only just beginning to be understood. Amidst this complexity sits Mycobacterium tuberculosis (Mtb), one of humanity's oldest nemeses and a significant public health concern, with millions of individuals infected with Mtb worldwide. The intricate interactions between Mtb, the lung microbiome, and the alveolar immune system are beginning to be understood, and it is increasingly apparent that improved treatment of Mtb will only come through deep understanding of the interplay between these three forces. In this review, we summarize our current understanding of the lung microbiome, alveolar immunity, and the interaction of each with Mtb.
下一代测序(NGS)技术的进步提供了全面且准确地表征健康和疾病状态下呼吸道微生物群落的工具。已发现共生菌和病原菌的存在对肺部免疫系统有重要影响。直到最近,相较于身体的其他部位,肺部在微生物组表征方面受到的关注较少,而且与其他身体微环境相比,对其进行研究在获取可靠样本方面存在特殊的技术难题。此外,肺泡免疫系统的复杂性及其与肺部微生物组的相互作用才刚刚开始被了解。在这种复杂性之中存在着结核分枝杆菌(Mtb),它是人类最古老的敌人之一,也是一个重大的公共卫生问题,全球有数以百万计的人感染了Mtb。Mtb、肺部微生物组和肺泡免疫系统之间复杂的相互作用正开始被理解,而且越来越明显的是,只有深入了解这三种力量之间的相互作用,才能改善对Mtb的治疗。在本综述中,我们总结了目前对肺部微生物组、肺泡免疫以及它们各自与Mtb相互作用的理解。