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Investigating Oral Microbiome Profiles in Children with Cleft Lip and Palate for Prognosis of Alveolar Bone Grafting

In this study, we sought to investigate the oral microbiota structure of children with cleft lip and palate (CLP) and explore the pre-operative oral bacterial composition related to the prognosis of alveolar bone grafting. In total, 28 patients (19 boys, 9 girls) with CLP who were scheduled to under...

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Published in:PloS one 2016-05, Vol.11 (5), p.e0155683-e0155683
Main Authors: Liu, Luwei, Zhang, Qian, Lin, Jiuxiang, Ma, Lian, Zhou, Zhibo, He, Xuesong, Jia, Yilin, Chen, Feng
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Zhang, Qian
Lin, Jiuxiang
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Zhou, Zhibo
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Jia, Yilin
Chen, Feng
description In this study, we sought to investigate the oral microbiota structure of children with cleft lip and palate (CLP) and explore the pre-operative oral bacterial composition related to the prognosis of alveolar bone grafting. In total, 28 patients (19 boys, 9 girls) with CLP who were scheduled to undergo alveolar bone grafting for the first time were recruited. According to the clinical examination of operative sites at the third month after the operation, the individuals were divided into a non-inflammation group (n = 15) and an inflammation group (n = 13). In all, 56 unstimulated saliva samples were collected before and after the operation. The v3-v4 hypervariable regions of the 16S rRNA gene were sequenced using an Illumina MiSeq sequencing platform. Based on the beta diversity of the operational taxonomic units (OTUs) in the inflammation and non-inflammation samples, the microbial variation in the oral cavity differed significantly between the two groups before and after the operation (P < 0.05). Analysis of the relative abundances of pre-operative OTUs revealed 26 OTUs with a relative abundance higher than 0.01%, reflecting a significant difference of the relative abundance between groups (P < 0.05). According to a principal component analysis of the pre-operative samples, the inflammation-related OTUs included Tannerella sp., Porphyromonas sp., Gemella sp., Moraxella sp., Prevotella nigrescens, and Prevotella intermedia, most of which were enriched in the inflammation group and showed a significant positive correlation. A cross-validated random forest model based on the 26 different OTUs before the operation was able to fit the post-operative status of grafted sites and yielded a good classification result. The sensitivity and specificity of this classified model were 76.9% and 86.7%, respectively. These findings show that the oral microbiota profile before alveolar bone grafting may be related to the risk of post-operative inflammation at grafted sites.
doi_str_mv 10.1371/journal.pone.0155683
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In total, 28 patients (19 boys, 9 girls) with CLP who were scheduled to undergo alveolar bone grafting for the first time were recruited. According to the clinical examination of operative sites at the third month after the operation, the individuals were divided into a non-inflammation group (n = 15) and an inflammation group (n = 13). In all, 56 unstimulated saliva samples were collected before and after the operation. The v3-v4 hypervariable regions of the 16S rRNA gene were sequenced using an Illumina MiSeq sequencing platform. Based on the beta diversity of the operational taxonomic units (OTUs) in the inflammation and non-inflammation samples, the microbial variation in the oral cavity differed significantly between the two groups before and after the operation (P &lt; 0.05). Analysis of the relative abundances of pre-operative OTUs revealed 26 OTUs with a relative abundance higher than 0.01%, reflecting a significant difference of the relative abundance between groups (P &lt; 0.05). According to a principal component analysis of the pre-operative samples, the inflammation-related OTUs included Tannerella sp., Porphyromonas sp., Gemella sp., Moraxella sp., Prevotella nigrescens, and Prevotella intermedia, most of which were enriched in the inflammation group and showed a significant positive correlation. A cross-validated random forest model based on the 26 different OTUs before the operation was able to fit the post-operative status of grafted sites and yielded a good classification result. The sensitivity and specificity of this classified model were 76.9% and 86.7%, respectively. These findings show that the oral microbiota profile before alveolar bone grafting may be related to the risk of post-operative inflammation at grafted sites.</abstract><cop>United States</cop><pub>Public Library of Science</pub><pmid>27191390</pmid><doi>10.1371/journal.pone.0155683</doi><oa>free_for_read</oa></addata></record>
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ispartof PloS one, 2016-05, Vol.11 (5), p.e0155683-e0155683
issn 1932-6203
1932-6203
language eng
recordid cdi_plos_journals_1789766306
source Publicly Available Content Database; PubMed Central(OpenAccess)
subjects Abundance
Adolescent
Alveolar bone
Alveolar Bone Grafting
Analysis
Antibiotics
Bacteria
Biodiversity
Biofilms
Biology and Life Sciences
Bone composition
Bone grafts
Care and treatment
Child
Children
Cleft lip
Cleft Lip - microbiology
Cleft Lip - surgery
Cleft lip/palate
Cleft Palate - microbiology
Cleft Palate - surgery
Ecology and Environmental Sciences
Female
Fistula
Gene expression
Gene sequencing
Girls
Grafting
Hospitals
Humans
Infections
Inflammation
Investigations
Laboratories
Male
Maxillofacial surgery
Medical prognosis
Medicine and Health Sciences
Metagenome
Metagenomics - methods
Microbiomes
Microbiota
Microbiota (Symbiotic organisms)
Microorganisms
Mouth - microbiology
Oral cavity
Orthodontics
Pathogenesis
Patient outcomes
Physical growth
Physiological aspects
Porphyromonas gingivalis
Preoperative Period
Principal components analysis
Prognosis
Relative abundance
RNA, Ribosomal, 16S - genetics
rRNA 16S
Saliva
Saliva - microbiology
Skin & tissue grafts
Studies
Substitute bone
Surgery
title Investigating Oral Microbiome Profiles in Children with Cleft Lip and Palate for Prognosis of Alveolar Bone Grafting
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