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Competitive displacement of mutans streptococci and inhibition of tooth decay by Streptococcus salivarius TOVE-R.

机译:变形链球菌的竞争性置换和唾液链球菌TOVE-R抑制蛀牙。

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摘要

The ability of Streptococcus salivarius TOVE-R to displace virulent representatives of the most prevalent human mutans streptococci from the teeth of rats, and thereby to inhibit caries, was studied. Streptococcus mutans 10449S- or Streptococcus sobrinus 6715-13WT-infected specific-pathogen-free rats consuming a high-sucrose diet were inoculated by TOVE-R. The infectants were differentially recovered from swabs of the teeth over the time course of infection and from sonically treated material of extracted teeth and excised tongues. Despite initial colonization of the teeth by the mutans streptococci, TOVE-R colonized the teeth, unlike other essentially nonvirulent plaque formers already described. It did not colonize the tongues of the rats. TOVE-R emerged and persisted as a prominent member of the plaque ecology. There was an associated decline in the mutans streptococci on the teeth, and this decline was associated with significant inhibition of the caries component attributable to 10449S infection (56%) and to 6715-13WT infection (52%). TOVE-R did not reliably inhibit the component of fissure caries attributable to the nonmutans indigenous flora of the rats. TOVE-R itself induced no detectable decay. The data suggest the potential therapeutic utility of TOVE-R to inhibit caries by displacement of mutans streptococci from the teeth. These results supplement the already reported ability of TOVE-R to preempt initial colonization of teeth by the mutans streptococci.
机译:研究了唾液链球菌TOVE-R从大鼠牙齿置换最普遍的人类变形链球菌的有毒代表,从而抑制龋齿的能力。用TOVE-R接种变形链球菌10449S或sobrinus sobrinus 6715-13WT感染的食用高蔗糖饮食的无特定病原体的大鼠。在感染的整个过程中,从牙签以及从超声处理过的拔出的牙齿和切除的舌头材料中差异性地回收了感染物。尽管变形链球菌最初在牙齿上定植,但TOVE-R仍在牙齿上定植,这与已经描述的其他基本无毒菌斑形成剂不同。它没有定居在老鼠的舌头上。 TOVE-R作为斑块生态学的重要成员出现并持续存在。牙齿上的变形链球菌有相关的减少,并且这种减少与可归因于10449S感染(56%)和6715-13WT感染(52%)的龋齿成分的显着抑制有关。 TOVE-R不能可靠地抑制可归因于大鼠非突变体原生菌群的裂痕龋的成分。 TOVE-R本身未引起可检测的衰减。数据表明TOVE-R潜在的治疗用途可通过从牙齿置换变形链球菌来抑制龋齿。这些结果补充了已经报道的TOVE-R防止变形链球菌引起的牙齿最初定植的能力。

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