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龋齿模型中的唾液因素。

Salivary factors in caries models.

作者信息

Hay D I

机构信息

Department of Biochemistry, Forsyth Dental Center, Boston, MA 02115, USA.

出版信息

Adv Dent Res. 1995 Nov;9(3):239-43. doi: 10.1177/08959374950090030801.

Abstract

Consideration of salivary factors in caries models rarely extends beyond viewing saliva as a sink or diluent for plaque metabolic products, or as a source of buffering, for neutralizing plaque acids. In reality, saliva has a complex chemistry and a wide range of biochemical activities that may significantly affect plaque chemistry and microbiology. Thus, saliva is a major source of microbial nutrients, without which bacterial acid production is diminished. Buffering by salivary bicarbonate, and base production from urea and basic amino acids and peptides, significantly affect Stephan curves. Saliva is supersaturated with respect to basic calcium phosphate salts and contains novel inhibitors of calcium phosphate precipitation, while specific salivary proteins bind calcium. It seems important to consider if this system is reflected in plaque. Saliva, with contributions from serum and bacterial constituents, provides most of the precursors for the acquired enamel pellicle, which acts to slow demineralization during caries attack. Pellicle constituents appear to influence initial bacterial colonization of tooth surfaces and, therefore, may affect the microbial composition of plaque, but their detailed effects on plaque are poorly understood. Microbial adaptations to the anti-bacterial systems also seem important but are poorly investigated. Thus, saliva possesses an array of activities that have substantial actual or potential impact on plaque and, therefore, merit consideration for inclusion in systems intended to model dental caries.

摘要

在龋齿模型中,对唾液因素的考量很少超出将唾液视为菌斑代谢产物的汇集处或稀释剂,或者视为用于中和菌斑酸的缓冲剂来源的范畴。实际上,唾液具有复杂的化学组成和广泛的生化活性,可能会显著影响菌斑的化学性质和微生物学特性。因此,唾液是微生物营养的主要来源,没有唾液,细菌产酸就会减少。唾液中的碳酸氢盐缓冲作用以及尿素、碱性氨基酸和肽产生的碱,会显著影响斯蒂芬曲线。唾液相对于碱性磷酸钙盐是过饱和的,并且含有新型的磷酸钙沉淀抑制剂,同时特定的唾液蛋白会结合钙。考虑这个系统是否在菌斑中有所体现似乎很重要。唾液在血清和细菌成分的共同作用下,为获得性釉质 pellicle 提供了大部分前体物质,该 pellicle 在龋齿发作期间起到减缓脱矿的作用。Pellicle 成分似乎会影响牙齿表面的初始细菌定植,因此可能会影响菌斑的微生物组成,但其对菌斑的详细影响尚不清楚。微生物对抗菌系统的适应性似乎也很重要,但研究较少。因此,唾液具有一系列对菌斑具有实际或潜在重大影响的活性,因此在旨在模拟龋齿的系统中值得考虑将其纳入。

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