期刊文献+

Preliminary molecular analysis of bacterial composition in periapical lesions with primary endodontic infections of deciduous teeth 被引量:7

Preliminary molecular analysis of bacterial composition in periapical lesions with primary endodontic infections of deciduous teeth
原文传递
导出
摘要 Background The bacterial composition of periapical lesions in deciduous teeth has not been well documented.This study was designed to explore the bacterial compositions,especially the dominant bacteria in periapical lesions using 16S rRNA sequencing.Methods Tissue samples were collected from 11 periapical lesions in deciduous teeth with primary endodontic infections.DNA was extracted from each sample and analyzed using 16S rRNA cloning and sequencing for the identification of bacteria.Results All DNA samples were positive for 16S rRNA gene PCR.One hundred and fifty-one phylotypes from 810 clones were identified to eight phyla,and each sample contained an average of 25.9 phylotypes.In addition,59 phylotypes were detected in more than two samples,and Fusobacterium (F.) nucleatum (8/11),Dialister (D.) invisus (8/11),Campylobacter (C.) gracilis (7/11),Escherichia (E.) coil DH1 (6/11),Aggregatibacter (A.) segnis (6/11),and Streptococcus (S.) mitis (6/11) were the most prevalent species.Furthermore,45 as-yet-uncultivated phylotypes were also identified.Conclusions Chronic periapical lesions in deciduous teeth contained polymicrobial infections.F.nucleatum,D.invisus,C.gracilis,E.coli DH1,A.segnis,and S.mitis were the most prevalent species detected by 16S rRNA sequencing. Background The bacterial composition of periapical lesions in deciduous teeth has not been well documented.This study was designed to explore the bacterial compositions,especially the dominant bacteria in periapical lesions using 16S rRNA sequencing.Methods Tissue samples were collected from 11 periapical lesions in deciduous teeth with primary endodontic infections.DNA was extracted from each sample and analyzed using 16S rRNA cloning and sequencing for the identification of bacteria.Results All DNA samples were positive for 16S rRNA gene PCR.One hundred and fifty-one phylotypes from 810 clones were identified to eight phyla,and each sample contained an average of 25.9 phylotypes.In addition,59 phylotypes were detected in more than two samples,and Fusobacterium (F.) nucleatum (8/11),Dialister (D.) invisus (8/11),Campylobacter (C.) gracilis (7/11),Escherichia (E.) coil DH1 (6/11),Aggregatibacter (A.) segnis (6/11),and Streptococcus (S.) mitis (6/11) were the most prevalent species.Furthermore,45 as-yet-uncultivated phylotypes were also identified.Conclusions Chronic periapical lesions in deciduous teeth contained polymicrobial infections.F.nucleatum,D.invisus,C.gracilis,E.coli DH1,A.segnis,and S.mitis were the most prevalent species detected by 16S rRNA sequencing.
出处 《Chinese Medical Journal》 SCIE CAS CSCD 2013年第16期3112-3117,共6页 中华医学杂志(英文版)
基金 This study was supported by the grants from the Beijing Natural Science Foundation (No. 7122079) and the Scientific Research Common Program of Beijing Municipal Commission of Education (No. SQKM 201210025019).
关键词 16S rRNA sequencing BACTERIA deciduous teeth periapical lesions 16S rRNA sequencing bacteria deciduous teeth periapical lesions
  • 相关文献

参考文献1

二级参考文献25

  • 1Gomes BP, Pinheiro ET, Jacinto RC, Zaia AA, Ferraz CR, Souza-Filho FJ. Microbial analysis of canals of root-filled teeth with periapical lesions using polymerase chain reaction. J Endod 2008; 34: 537-540.
  • 2Siqueira JF Jr. Aetiology of root canal treatment failure: why well-treated teeth can fail. Int Endod J 2001; 34: 1-10.
  • 3Hepworth MJ, Friedman S. Treatment outcome of surgical and non-surgical management of endodontic failures. J Can Dent Assoc 1997; 63: 364-371.
  • 4Molander A, Reit C, Dahlén G, Kvist T. Microbiological status of root-filled teeth with apical periodontitis. Int Endod J 1998; 31: 1-7.
  • 5Siqueira JF Jr, Rocas IN. Uncultivated phylotypes and newly named species associated with primary and persistent endodontic infections. J Clin Microbiol 2005; 43: 3314-3319.
  • 6Rocas IN, Siqueira JF Jr, Aboim MC, Rosado AS. Denaturing gradient gel electrophoresis analysis of bacterial communities associated with failed endodontic treatment. Oral Surg Oral Med Oral Pathol Oral Radiol Endod 2004; 98: 741-749.
  • 7Siqueira JF Jr, Rocas IN. Polymerase chain reaction-based analysis of microorganisms associated with failed endodontic treatment. Oral Surg Oral Med Oral Pathol Oral Radiol Endod 2004; 97: 85-94.
  • 8Rolph HL, Lennon A, Riggio MP, Saunders WP, Mackenzie D, Coldero L, et al. Molecular identification of microorganisms from endodontic infections. J Clin Microbiol 2001; 39: 3282-3289.
  • 9Saito D, Leonardo Rde T, Rodrigues JL, Tsai SM, H?fling JF, Gon?alves RB. Identification of bacteria in endodontic infections by sequence analysis of 16S rRNA clone libraries. J Med Microbiol 2006; 55: 101-107.
  • 10Cole JR, Chai B, Marsh TL, Farris RJ, Wang Q, Kulam SA, et al. The Ribosomal Database Project (RDP-II): previewing a new autoaligner that allows regular updates and the new prokaryotic taxonomy. Nucleic Acids Res 2003; 31: 442-443.

共引文献12

同被引文献89

  • 1张微云,叶玮.茶多酚与维生素C联合应用抑制口腔产臭细菌产生挥发性硫化物的体外研究[J].中华临床医师杂志(电子版),2011,5(18):5462-5464. 被引量:16
  • 2李任,仇丽鸿.牙髓卟啉单胞菌内毒素致病性研究进展[J].中国实用口腔科杂志,2009,2(12):756-758. 被引量:22
  • 3赵岩,慕红文,Hong- wen.三种根管充填方法根尖微渗漏的实验研究[J].天津医科大学学报,2010,16(4):659-661. 被引量:5
  • 4王冬梅,沈嵩,高学军.根管细菌渗漏体外模型的建立[J].牙体牙髓牙周病学杂志,2006,16(5):250-253. 被引量:5
  • 5Cordeior MM, Rocha MJ. The effect of periradicular inflammation and infection on a primary tooth and permanent successor[ J ]. J Clin Ped- iatr Dent,2005,29(3) :193-200.
  • 6Brook I. Brain abscess in children:microbiology and management [ J]. J Child Neurol, 1995,10(4) :283-288.
  • 7Brook I. Microbiology of acute sinusitis of odontogenic origin presen- ting with perioibital cellulitis in children [ J ]. An Otol Phinol Laryn- gol,2007,116 ( 5 ) :386-388.
  • 8Kakehashi S, Stanley HR, Ftizgerald RJ. The effect of surgical ex- pousures of dental pulps in germ-free and conventional laboratory rats [J]. J South Calif Dent Assoc, 1965,39 (4 ) :449-451.
  • 9Cao H, Qi Z, Jiang H, et al. Detection of Porphyromonas endodontal- is ,Porphyromonas gingivalis and Prevotella intermedia in primary en- dodontic infections in a Chinese population [ J ]. Int Endod J,2012, 45(8) :773-781.
  • 10Murakami Y, Hanazawa S, Tanaka S, et al. A possible mechanism of maxillofacial abscess formation:involvement of Porphyromonas end- odontalis Lipopolysaccharide via the expression inflammatory cyto- kines[ J]. Oral Microbiol Immunol,2001,16(6) :321-325.

引证文献7

二级引证文献44

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部