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牙周龈下生物膜中细菌的原子力显微镜检查:初步研究结果。

Atomic force microscopy of bacteria from periodontal subgingival biofilm: Preliminary study results.

作者信息

Germano Francesco, Bramanti Ennio, Arcuri Claudio, Cecchetti Francesco, Cicciù Marco

机构信息

Odontostomatology Department, University of Roma Torvergata School of Dentistry, RM, Italy.

Odontostomatology Department, University of Messina School of Dentistry, ME, Italy.

出版信息

Eur J Dent. 2013 Apr;7(2):152-158. doi: 10.4103/1305-7456.110155.

Abstract

OBJECTIVE

Atomic force microscope (AFM) is a technology that allows analysis of the nanoscale morphology of bacteria within biofilm and provides details that may be better useful for understanding the role of bacterial interactions in the periodontal disease.

MATERIAL AND METHODS

Five patients with periodontal ≥5 mm pockets diagnosed as generalized periodontitis and five patients with slight gingivitis were selected for the investigation. Bacteria biofilms were collected and morphologically investigated by AFM application.

RESULTS

The investigation revealed how periodontitis bacteria are characterized by specific morphologic features of the cell wall. The major representative species of bacteria causing periodontal diseases have been reproduced by a three-dimensional reconstruction showing the bacteria surface details.

CONCLUSIONS

The presence of complex glycocalyx structures, bacteriophage-like vesicles, spirochetes (classic and cystic morphology) and bacterial co-aggregation has been identified by the AFM analysis. The results suggest that AFM is a reliable technique for studying bacterial morphology and for examining microbial interactions in dental plaque.

摘要

目的

原子力显微镜(AFM)是一种能够分析生物膜内细菌纳米级形态的技术,它所提供的细节对于理解细菌相互作用在牙周疾病中的作用可能更有帮助。

材料与方法

选取5例诊断为广泛性牙周炎且牙周袋≥5mm的患者和5例轻度牙龈炎患者进行研究。收集细菌生物膜并通过应用AFM进行形态学研究。

结果

该研究揭示了牙周炎细菌具有细胞壁的特定形态特征。通过三维重建再现了引起牙周疾病的主要代表性细菌种类,展示了细菌表面细节。

结论

通过AFM分析已确定存在复杂的糖萼结构、噬菌体样囊泡、螺旋体(经典形态和囊状形态)以及细菌共聚集现象。结果表明,AFM是研究细菌形态和检查牙菌斑中微生物相互作用的可靠技术。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3ac4/4023198/08575022101e/EJD-7-152-g001.jpg

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