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论文摘要

含碘的乳过氧化物酶-过氧化氢-硫氰化物系统对变异链球菌致龋性的影响

In vitro study of the effect of a lactoperoxidase-peroxidase-thiocyanate system with iodine on the cariogenicinity of Streptococcus mutans

作者:刘学军 刘瑶梁 晶史璐 楚金普 李蓓蕾

Author:Liu Xuejun, Liu Yao, Liang Jing, Shi Lu, Chu Jinpu, Li Beilei

收稿日期:          年卷(期)页码:2014,32(4):404-404-408

期刊名称:华西口腔医学杂志

Journal Name:West China Journal of Stomatology

关键字:变异链球菌,乳过氧化物酶,碘离子,硫氰酸根离子,葡萄糖基转移酶,水不溶性细胞外多糖,

Key words:Streptococcus mutans,lactoperoxidase,iodine,thiocyanate,glucosyltransferase,insoluble exopolysaccharides,

基金项目:

河南省科技厅基础与前沿基金资助项目(122300410371)

中文摘要

目的 研究含不同浓度碘(I-)的乳过氧化物酶-过氧化氢-硫氰化物系统(LPO-H2O2-SCN-)对变异链球菌生长、黏附、产水不溶性细胞外多糖以及葡萄糖基转移酶(GTF)活性的影响。方法 选用 S.mutans ATCC 25175为实验菌株。采用菌落形成单位(CFU)计数法进行生长实验;用分光光度计法测定细菌的黏附抑制率;用蒽酮法测定水不溶性细胞外多糖的质量浓度;用蒽酮法测定还原糖量,计算 GTF活性。结果 随着 I-浓度的增高,含I-的 LPO-H2O2-SCN-抗菌系统对 S.mutans致龋力的抑制作用增强。当I-≥100 μmol•L-1时,对 S.mutans的生长抑制明显高于对照组( P结论 通过增加 I-的浓度,可以抵消生理浓度的 SCN-的抑制作用,使含I-的LPO-H2O2-SCN-系统能显著抑制变异链球菌的生长、黏附、水不溶性细胞外多糖生成和GTF活性。

英文摘要

Objective This study aimed to investigate the effect of a lactoperoxidase-peroxidase-thiocyanate (LPO-H2O2-SCN-) systemwith different concentrationsof iodine (I-) on Streptococcus mutans (S.mutans),particularlyon various parameters, includinggrowth, adhesion, glucosyltransferase (GTF)enzyme activity,and insoluble exopolysaccharidesynthesis.MethodsS.mutans ATCC 25175 was used as experimental species. Clonal formation unit (CFU) were counted to investigate the inhibi-tory effect on bacterial growth. The inhibition rate of bacterial adherence was calculated to analyze the effect on adhesion. Anthrone method was used to determine the content of insoluble exopolysaccharides and the amount of reducing saccharides. GTF activity and enzyme activity were then determined.ResultsThe inhibitory ability of the LPO-H2O2-SCN-system with I-on the cariogenicinity of S.mutans was strengthened as I-concentration was increased. At I-concentration≥100 μmol•L-1, the antibacterial effects were significantly increased compared with those of the control group (P50%; insoluble exopolysaccharide synthesis and GTF enzyme activity were reduced (PConclusionThe antibacterial effects of the LPO-H2O2-I-system were enhanced by adding I-to overcome the antagonistic effect of physiological SCN-concentration. LPO-H2O2-SCN-system with different concentrations of I-showed statistically significant inhibitory effectson growth, adhesion, insoluble exopolysac-charide synthesis,andGTF enzyme activity.

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