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根尖周炎:通过16S rRNA高通量扩增子靶向测序对微生物群进行初步评估。

Apical periodontitis: preliminary assessment of microbiota by 16S rRNA high throughput amplicon target sequencing.

作者信息

Mussano Federico, Ferrocino Ilario, Gavrilova Natalija, Genova Tullio, Dell'Acqua Alessandro, Cocolin Luca, Carossa Stefano

机构信息

CIR Dental School, Department of Surgical Sciences, University of Turin, via Nizza 230, 10126, Turin, Italy.

DISAFA - Microbiology and Food Technology sector, University of Turin, Largo Paolo Braccini n°2, 10095, Grugliasco, TO, Italy.

出版信息

BMC Oral Health. 2018 Apr 2;18(1):55. doi: 10.1186/s12903-018-0520-8.

Abstract

BACKGROUND

Apical periodontitis includes periapical granulomas and radicular cysts, which are histologically distinguished by the absence and the presence of an epithelial lining, respectively. The main cause of apical periodontitis is the bacterial colonization of the root canal space. This research aimed at assessing whether and how periapical granulomas and radicular cysts differ in terms of microbiota using high throughput amplicon target sequencing (HTS) techniques.

METHODS

This study included 5 cases of Periapical Granulomas (PGs) and 5 cases of Radicular Cysts (RCs) selected on the base of histology out of 37 patients from January 2015 to February 2016. Complete medical history, panoramic radiograms (OPTs) and histologic records of each patient were assessed. Only lesions greater than 1 cm in diameter and developed in proximity to teeth with bad prognosis were included. The microbiota present in periapical granulomas and radicular cysts thus retrieved was finely characterized by pyrosequencing of the 16S rRNA genes.

RESULTS

The core of OTUs shared between periapical granulomas and radicular cysts was dominated by the presence of facultative anaerobes taxa such as: Lactococcus lactis, Propionibacterium acnes, Staphylococcus warneri, Acinetobacter johnsonii and Gemellales. L. lactis, the main OTUs of the entire datasets, was associated with periapical granuloma samples. Consistently with literature, the anaerobic taxa detected were most abundant in radicular cyst samples. Indeed, a higher abundance of presumptive predicted metabolic pathways related to Lipopolysaccharide biosynthesis was found in radicular cyst samples.

CONCLUSIONS

The present pilot study confirmed the different microbial characterization of the two main apical periodontitis types and shade light on the possible role of L. lactis in periapical granulomas.

摘要

背景

根尖周炎包括根尖周肉芽肿和根囊肿,在组织学上分别以有无上皮内衬来区分。根尖周炎的主要病因是根管空间的细菌定植。本研究旨在使用高通量扩增子靶向测序(HTS)技术评估根尖周肉芽肿和根囊肿在微生物群方面是否存在差异以及如何存在差异。

方法

本研究从2015年1月至2016年2月的37例患者中,根据组织学选择了5例根尖周肉芽肿(PGs)和5例根囊肿(RCs)。评估了每位患者的完整病史、全景X线片(OPTs)和组织学记录。仅纳入直径大于1 cm且在预后不良的牙齿附近形成的病变。通过对16S rRNA基因进行焦磷酸测序,对由此获得的根尖周肉芽肿和根囊肿中的微生物群进行了精细表征。

结果

根尖周肉芽肿和根囊肿之间共享的OTU核心以兼性厌氧菌属的存在为主,如:乳酸乳球菌、痤疮丙酸杆菌、沃氏葡萄球菌、约翰逊不动杆菌和孪生球菌目。乳酸乳球菌是整个数据集中的主要OTU,与根尖周肉芽肿样本相关。与文献一致,在根囊肿样本中检测到的厌氧菌类最为丰富。事实上,在根囊肿样本中发现了与脂多糖生物合成相关的推定预测代谢途径的丰度更高。

结论

本初步研究证实了两种主要根尖周炎类型的不同微生物特征,并揭示了乳酸乳球菌在根尖周肉芽肿中可能的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1885/5879750/542758123873/12903_2018_520_Fig1_HTML.jpg

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