[牙周袋内微生物菌群的体外生态系统]。

Ou Daigaku shigakushi Pub Date : 1990-07-01
K Saito
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引用次数: 0

摘要

本研究旨在体外分析牙周袋内微生物菌群生态系统的演替。本研究使用的菌株为核梭菌ATCC 10953、牙龈卟啉单胞菌381、血链球菌ATCC 10557和变形链球菌OMZ 176。在含血红蛋白、维生素k1、l -半胱氨酸盐酸盐和巯基乙酸钠的脑心输注培养基(N2: 80%, CO2: 10%, H2: 10%)中培养具有有益、致病或斑块形成活性的细菌细胞。在单培养和混合培养中研究了环境中Eh和pH对细菌细胞生长的影响,并进行了Eh和pH耐受性试验。环境pH值从pH 7.0下降到pH 4.9,同时变形链球菌OMZ 176和血链球菌ATCC 10557在单培养和混合培养中均有生长。随着血螺ATCC 10557的生长,环境Eh从-308 mV增加到-180 mV。病原菌ATCC 10953和P. gingivalis 381的生长随pH值和Eh值的变化有显著差异,其中pH值在6.0及以下时,P. gingivalis 381的生长受到严重抑制,而pH值在-100 mV时,F. nucleatum ATCC 10953的生长受到强烈抑制。血链球菌ATCC 10557厌氧培养的产氧率为10.8%。因此,我们认为S. sanguis ATCC 10557产生的过氧化氢被还原为氧和水。这些结果表明,细菌代谢产生的高Eh和低pH是牙周袋微生物菌群生态的重要决定因素。
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[Ecosystem of microbial flora in periodontal pockets, in vitro].

This study was designed to analyze the succession of an ecosystem of microbial flora in periodontal pockets, in vitro. Bacterial strains used in this study, were Fusobacterium nucleatum ATCC 10953, Porphyromonas gingivalis 381, Streptococcus sanguis ATCC 10557 and Streptococcus mutans OMZ 176. The bacterial cells, associated with beneficial, pathogenic or plaque forming activity, were cultured in brain heart infusion medium including hemin, vitamin-K1, L-cysteine hydrochloride and sodium thioglycollate under anaerobic condition (N2: 80%, CO2: 10%, H2: 10%). The effect of environmental Eh and pH on the growth of bacterial cells was investigated in single and mixed culture, and Eh and pH tolerance tests were also undertaken. The environmental pH decreased from pH 7.0 to pH 4.9 accompanied with the growth of S. mutans OMZ 176 and S. sanguis ATCC 10557 in both single and mixed culture. The environmental Eh increased from -308 mV to -180 mV accompanied with the growth of S. sanguis ATCC 10557. The growth of pathogenic bacteria, such as F. nucleatum ATCC 10953 and P. gingivalis 381, varied markedly with Eh and pH. Especially, the growth of P. gingivalis 381 was severely inhibited at or below pH 6.0 in an acid tolerance test, whereas the growth of F. nucleatum ATCC 10953 was strongly inhibited at Eh -100 mV in an Eh tolerance test. The oxygen generation (10.8%) was confirmed in the anaerobic culture of S. sanguis ATCC 10557. Therefore, it was suggested that hydrogen peroxide produced by S. sanguis ATCC 10557 was reduced to oxygen and water. These results suggest that the high Eh and the low pH generated from bacterial metabolism is a powerful determinant in ecology of microbial flora in periodontal pockets.

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