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细菌黏附素——它们在小管侵入和牙髓病中的作用。

Bacterial adhesins--their role in tubule invasion and endodontic disease.

作者信息

Love Robert M

机构信息

Department of Stomatology, University of Otago School of Dentistry, PO Box 647, Dunedin, New Zealand.

出版信息

Aust Endod J. 2002 Apr;28(1):25-8. doi: 10.1111/j.1747-4477.2002.tb00363.x.

Abstract

Bacterial invasion of dentinal tubules is critical to the progression of dental caries and the development of pulp and periapical disease, and may also influence the progression of periodontal disease. However, little is known about the host or bacterial mechanisms involved in tubule invasion. Recent work has demonstrated that bacterial interactions with dentine, and salivary and tissue molecules influence invasion. Salivary molecules such as mucin and immunoglobulin G (IgG) co-aggregate with bacterial cells, which inhibits dentine invasion, while deposition of dentinal tubule fluid molecules e.g. albumin, IgG, or fibrinogen within dentinal tubules also inhibits invasion. Dentine invasion by streptococci has been shown to be associated with a bacterial growth response and adhesion to unmineralized collagen, which are mediated by streptococcal cell-surface antigen I/II polypeptides. These adhesins possess diverse binding properties including binding to salivary glycoprotein, other bacteria, and to collagen. Additionally, some antigen I/II polypeptides facilitate species-specific co-invasion between streptococci and obligate anaerobes that lack the ability to invade by themselves. An understanding of the mechanisms involved in bacterial invasion of dentine should allow development of new control strategies.

摘要

细菌侵入牙本质小管对龋齿的进展以及牙髓和根尖周疾病的发展至关重要,并且可能还会影响牙周疾病的进展。然而,关于参与小管侵入的宿主或细菌机制,人们了解甚少。最近的研究表明,细菌与牙本质以及唾液和组织分子之间的相互作用会影响侵入。唾液分子如黏蛋白和免疫球蛋白G(IgG)与细菌细胞共同聚集,从而抑制牙本质侵入,而牙本质小管液分子如白蛋白、IgG或纤维蛋白原在牙本质小管内的沉积也会抑制侵入。已表明链球菌对牙本质的侵入与细菌生长反应以及对未矿化胶原的黏附有关,这是由链球菌细胞表面抗原I/II多肽介导的。这些黏附素具有多种结合特性,包括与唾液糖蛋白、其他细菌以及胶原的结合。此外,一些抗原I/II多肽促进了链球菌与自身缺乏侵入能力的专性厌氧菌之间的种特异性共同侵入。了解细菌侵入牙本质的机制应该有助于开发新的控制策略。

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