变形链球菌,对其与龋齿相关的生理潜能的评估。

Revue canadienne de biologie Pub Date : 1978-12-01
J D Ruby, M Goldner, J A Hargreaves
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引用次数: 0

摘要

变形链球菌将低水平的蔗糖转化为乳酸,但高水平的蔗糖有利于葡聚糖的合成,以促进斑块的积累。因此,持续暴露于蔗糖通量会选择口腔内具有高度特化适应性和潜在龋齿活性的微生物(变形链球菌为原型)。在这些条件下进化出有效运作的生理系统的细菌是乳酸菌。这些生物在碳水化合物供应不断变化的环境中生存。对酸性环境的高耐受性可能是建立龋病生态的重要决定因素。此外,细胞间的多糖储存(糖原支链胶)和细胞外的聚合物储备(levan和可溶性葡聚糖)在碳水化合物消耗过程中也很重要。此外,不溶性葡聚糖的形成是通过牙菌斑在牙齿光滑表面形成龋的先决条件。这些条件可能导致变形链球菌和致龋齿微生物的增加。因此,这一过程最好被理解为一种两栖生物转变的表现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Streptococcus mutans, an assessment of its physiological potential in relation to dental caries.

Streptococcus mutans converts low levels of sucrose to lactic acid, but at high levels favours synthesis of glucans for plaque accumulation. Thus, the continued exposure to sucrose fluxes would select microorganisms in the oral cavity (S. mutans being a prototype) with highly specialized adaptation and potential dental caries activity. The bacteria that have evolved physiological systems to function efficiently under these conditions are the lactic acid bacteria. These organisms survive in environments where carbohydrate availability is constantly changing. High tolerances to acidic environments may be an important determinant in establishing the ecology of the carious lesion. Also, the intercellular polysaccharide storgae (glycogenamylopectin) and extracellular polymer reserves (levan and soluble glucan) are important during carbohydrate depletion. Further, the formation of insoluble glucans is a prerequisite for the caries process on smooth surfaces of teeth through plaque development. These conditions could result in an increase in S. mutans and cariogenic microorganisms. As a result, this process may be best understood as a manifestation of an amphibiotic shift.

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