Microbiota: its contribution to carcinogenesis and immunity in the lungs

V. Buslaev, V. Minina, L. Matskova
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Abstract

Microbiota (an assembly of bacteria, protists / archaea, fungi, and viruses inhabiting a human body) is currently of great interest for science. It is determined by an association between changes in microbiota composition and malignant transformation in different organs. Lungs have long been considered sterile or free from bacteria; however, due to development of next-generation sequencing, this statement has been reconsidered. The metagenomic approach allowed to identify microorganisms at molecular level both in healthy lung tissues and in malignant ones.The next stage of research is investigation of the effects of microbiota on homeostasis and immune stability in the lungs. The analysis of lung microbiota based on 16S rRNA gene sequencing revealed that microbiota of healthy lungs is mainly presented by bacteria of the phyla Bacteroidetes, Firmicutes, Proteobacteria, and Fusobacteria. In lung cancer, an increase in the number of bacteria of some certain genera and a decrease in microbiota diversity on the whole are noted. Dysbiosis facilitates reproduction of pathogens and development of lung diseases. It was detected that under normal conditions, microbiota maintains resistance of the lungs to bacterial colonization and plays a crucial role in providing a balanced immune response in this organ.
微生物群:对肺部癌变和免疫的贡献
微生物群(寄居在人体内的细菌、原生生物/古细菌、真菌和病毒的集合)是目前科学界非常感兴趣的问题。这是由微生物群组成的变化与不同器官的恶性转化之间的关联决定的。长期以来,肺部被认为是无菌的或没有细菌的;然而,由于下一代测序的发展,这一说法已被重新考虑。宏基因组方法允许在分子水平上识别健康肺组织和恶性肺组织中的微生物。下一阶段的研究是调查微生物群对肺内稳态和免疫稳定性的影响。基于16S rRNA基因测序的肺部微生物群分析显示,健康肺部微生物群主要由拟杆菌门、厚壁菌门、变形菌门和梭菌门细菌组成。在肺癌中,注意到某些属的细菌数量增加而微生物群多样性总体上减少。生态失调促进了病原体的繁殖和肺部疾病的发展。研究发现,在正常条件下,微生物群维持肺部对细菌定植的抵抗力,并在提供该器官平衡的免疫反应中起着至关重要的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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