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A Metagenomic Approach to the Airways Microbiome of Chronic Obstructive Pulmonary Disease (COPD)

机译:慢性阻塞性肺疾病(COPD)气道微生物组的一种元基因组学方法。

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Current research has shown that different sites of the human body house different bacterial communities. There is a strong correlation between an individual's microbial community profile at a given site and the onset of disease. Chronic Obstructive Pulmonary Disease (COPD) is a progressive lung disease resulting in narrowing of the airways and restricted airflow. Despite being the third leading cause of death in the United States, little is known about the differences in the lung microbial community profiles of healthy individuals vs. COPD patients. Metagenomics is the culture-independent study of genetic material obtained directly from samples. A metagenomic analysis of 56 individuals was conducted. Bronchoalveolar lavage (BAL) samples were collected from COPD patients, active or ex-smokers, and never smokers. 454 pyrosequencing of 16S rRNA was performed and analyzed using a newly designed, modular bioinformatic workflow. Substantial colonization of the lungs was found in all subjects and differentially abundant genera in each group were identified (including Tropheryma in COPD and Sneathia in smokers). These discoveries are promising and may further our understanding of how the structure of the lung microbiome is modified as COPD progresses. It is also anticipated that the results will eventually lead to improved treatments for COPD.
机译:当前的研究表明,人体的不同部位具有不同的细菌群落。在给定部位的个体微生物群落特征与疾病发作之间有很强的相关性。慢性阻塞性肺疾病(COPD)是一种进行性肺部疾病,导致呼吸道狭窄和气流受限。尽管是美国的第三大死亡原因,但对于健康个体与COPD患者的肺部微生物群落特征的差异知之甚少。元基因组学是直接从样品中获得的遗传材料的与文化无关的研究。进行了56个人的宏基因组分析。支气管肺泡灌洗(BAL)样本是从COPD患者,活跃或曾吸烟者,从未吸烟者中收集的。使用新设计的模块化生物信息工作流程对16S rRNA进行454焦磷酸测序。在所有受试者中均发现大量肺部定植,并鉴定出每组中差异丰富的属(包括COPD中的特发性螺旋体病和吸烟者的Sneathia)。这些发现是令人鼓舞的,并且可能使我们进一步了解随着COPD的进展如何改变肺部微生物组的结构。还预期结果将最终导致改善的COPD治疗。

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