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在儿童中,鼻咽和支气管肺泡灌洗液的微生物群既相似又不同。

In children, the microbiota of the nasopharynx and bronchoalveolar lavage fluid are both similar and different.

机构信息

Section of Pediatric Pulmonology, Allergy and Sleep Medicine, Department of Pediatrics, Indiana University School of Medicine, Indianapolis, Indiana.

Department of Biology,, Center of Genomics and Bioinformatics, Indiana University Bloomington, Bloomington, Indiana.

出版信息

Pediatr Pulmonol. 2018 Apr;53(4):475-482. doi: 10.1002/ppul.23953. Epub 2018 Feb 6.


DOI:10.1002/ppul.23953
PMID:29405661
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6542268/
Abstract

RATIONALE: Sputum and bronchoalveolar lavage fluid (BALF) are often obtained to elucidate the lower airway microbiota in adults. Acquiring sputum samples from children is difficult and obtaining samples via bronchoscopy in children proves challenging due to the need for anesthesia and specialized procedural expertise; therefore nasopharyngeal (NP) swabs are often used as surrogates when investigating the pediatric airway microbiota. In adults, the airway microbiota differs significantly between NP and BALF samples however, minimal data exist in children. OBJECTIVES: To compare NP and BALF samples in children undergoing clinically indicated bronchoscopy. METHODS: NP and BALF samples were collected during clinically indicated bronchoscopy. Bacterial DNA was extracted from 72 samples (36 NP/BALF pairs); the bacterial V1-V3 region of the 16S rRNA gene was amplified and sequenced on the Illumina Miseq platform. Analysis was performed using mothur software. RESULTS: Compared to NP samples, BALF had increased richness and diversity. Similarity between paired NP and BALF (intra-subject) samples was greater than inter-subject samples (P = 0.0006). NP samples contained more Actinobacteria (2.2% vs 21%; adjusted P = 1.4 × 10 ), while BALF contained more Bacteroidetes (29.5% vs 3.2%; adjusted P = 1.2 × 10 ). At the genus level several differences existed, however Streptococcus abundance was similar in both sample types (NP 37.3% vs BAL 36.1%; adjusted P = 0.8). CONCLUSION: Our results provide evidence that NP samples can be used to distinguish differences between children, but the relative abundance of organisms may differ between the nasopharynx and lower airway in pediatric patients. Studies utilizing NP samples as surrogates for the lower airway should be interpreted with caution.

摘要

背景:痰和支气管肺泡灌洗液(BALF)常用于阐明成人下呼吸道微生物群。获取儿童的痰样本很困难,而且由于需要麻醉和专门的程序专业知识,通过支气管镜获取样本在儿童中也具有挑战性;因此,当研究儿科气道微生物群时,通常使用鼻咽(NP)拭子作为替代物。在成人中,NP 和 BALF 样本之间的气道微生物群有很大差异,但在儿童中数据很少。

目的:比较行有临床指征的支气管镜检查的儿童的 NP 和 BALF 样本。

方法:在有临床指征的支气管镜检查期间收集 NP 和 BALF 样本。从 72 个样本(36 对 NP/BALF)中提取细菌 DNA;使用 Illumina Miseq 平台扩增和测序 16S rRNA 基因的 V1-V3 区。使用 mothur 软件进行分析。

结果:与 NP 样本相比,BALF 具有更高的丰富度和多样性。配对的 NP 和 BALF(个体内)样本之间的相似性大于个体间样本(P = 0.0006)。NP 样本中含有更多的放线菌(2.2%对 21%;调整后 P = 1.4×10),而 BALF 样本中含有更多的拟杆菌(29.5%对 3.2%;调整后 P = 1.2×10)。在属水平上存在一些差异,但两种样本类型中的链球菌丰度相似(NP 37.3%对 BAL 36.1%;调整后 P = 0.8)。

结论:我们的结果提供了证据,表明 NP 样本可用于区分儿童之间的差异,但在儿科患者的鼻咽部和下呼吸道中,生物体的相对丰度可能不同。使用 NP 样本作为下呼吸道替代物的研究应谨慎解释。

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本文引用的文献

[1]
Concordance between upper and lower airway microbiota in infants with cystic fibrosis.

Eur Respir J. 2017-3-29

[2]
The microbiota in bronchoalveolar lavage from young children with chronic lung disease includes taxa present in both the oropharynx and nasopharynx.

Microbiome. 2016-7-7

[3]
Swarm v2: highly-scalable and high-resolution amplicon clustering.

PeerJ. 2015-12-10

[4]
Official American Thoracic Society technical standards: flexible airway endoscopy in children.

Am J Respir Crit Care Med. 2015-5-1

[5]
Spatial Variation in the Healthy Human Lung Microbiome and the Adapted Island Model of Lung Biogeography.

Ann Am Thorac Soc. 2015-6

[6]
Analysis of the upper respiratory tract microbiotas as the source of the lung and gastric microbiotas in healthy individuals.

mBio. 2015-3-3

[7]
Assessment of airway microbiota and inflammation in cystic fibrosis using multiple sampling methods.

Ann Am Thorac Soc. 2015-2

[8]
Reagent and laboratory contamination can critically impact sequence-based microbiome analyses.

BMC Biol. 2014-11-12

[9]
Swarm: robust and fast clustering method for amplicon-based studies.

PeerJ. 2014-9-25

[10]
Development of a dual-index sequencing strategy and curation pipeline for analyzing amplicon sequence data on the MiSeq Illumina sequencing platform.

Appl Environ Microbiol. 2013-6-21

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