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Site-related streptococcal attachment to buccocervical tooth surfaces: A correlative micromorphologic and microbiologic study

 

作者: BeveniusJoan,   LinderLars,   HultenbyKjell,  

 

期刊: Acta Odontologica Scandinavica  (Taylor Available online 1994)
卷期: Volume 52, issue 5  

页码: 294-302

 

ISSN:0001-6357

 

年代: 1994

 

DOI:10.3109/00016359409029042

 

出版商: Taylor&Francis

 

关键词: Buccocervical region;replica;scanning electron microscopy;streptococcal attachment

 

数据来源: Taylor

 

摘要:

Bevenius J, Linder L, Hultenby K. Site-related streptococcal attachment to buccocervical tooth surfaces. A correlative micromorphologx and microbiologic study. Acta Odontol Scand 1994;52:294-302. Oslo. ISSN 0001-6357.Scanning electron (SEM) microscopy of epoxy replicas made from dental impressions has shown that in buccal gingival recession the root surfaces are devoid of cementum, leaving the dentin exposed. In this study replication techniques were applied to correlate the micro-morphology of the buccocervical region with early streptococcal attachment. The subjects were 27 healthy young adults. The buccocervical surfaces of all the premolars were meticulously cleaned. The subjects fasted for 2 h before impression-taking. Replicas were made from impressions in hydrophilic A-silicone, and streptococcal attachment was visualized by light microscopy of mitis-salivarius agar replicas incubated anaerobically for 48 h. The surface micromorphology was documented by SEM of corresponding epoxy replicas. Colonization only 2 h after cleaning was very sparse. Sites with healthy or inflamed gingivae had markedly different colonization patterns in the sulcular region. In 4 subjects with a total of 12 sites where gingival recession, undetected clinically, was disclosed by SEM, representative colonies were retrieved and identified microbiologically to species level. Two healthy sites per subject were also sampled.Streptococcus mutansandS. sobrinuswere identified from eight sites with exposed root dentin.S. oralispredominated on the enamel surfaces. The method offers a valuable complement to in situ and in vitro microbiologic studies of exposed dentin and a novel technique for sampling clinical isolates of streptococci.

 

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