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溶菌酶增强了过氧化物酶系统对变形链球菌葡萄糖代谢的抑制作用。

Lysozyme enhances the inhibitory effects of the peroxidase system on glucose metabolism of Streptococcus mutans.

作者信息

Lenander-Lumikari M, Månsson-Rahemtulla B, Rahemtulla F

机构信息

Department of Community and Public Health Dentistry, University of Alabama School of Dentistry, Birmingham 35294.

出版信息

J Dent Res. 1992 Mar;71(3):484-90. doi: 10.1177/00220345920710031201.

Abstract

The combined effect of the salivary peroxidase system and lysozyme on the glucose uptake of Streptococcus mutans NCTC 10449 was investigated. The bacteria were grown to late-exponential phase, washed, re-suspended in buffer at pH6, and incubated with (1) 50 micrograms/mL lysozyme from human milk for 60 min; (2) 7-15 mumol/L hypothiocyanous acid/hypothiocyanite for 10 min; and (3) lysozyme for 60 min prior to addition of and incubation with hypothiocyanous acid/hypothiocyanite for 10 min. Glucose uptake was initiated by adding the bacterial suspensions to 10 mL of pre-warmed 50 mumol/L glucose containing 0.98 mumol/L D-(U-14C-)-glucose, and the mixture was incubated in a shaking water-bath at 37 degrees C. Samples were withdrawn at various time intervals, rapidly filtered through 0.45-microns membranes, washed with ice-chilled buffer, and the incorporated radioactivity determined. Lysozyme stimulated S. mutans glucose uptake slightly, but significantly inhibited S. rattus glucose metabolism. A 20-30% inhibition of radiolabeled glucose incorporation was observed with hypothiocyanous acid/hypothiocyanite alone. Incubation of the bacteria with lysozyme prior to addition of hypothiocyanous acid/hypothiocyanite containing peroxidase resulted in a total inhibition of the glucose uptake. In contrast, lysozyme in combination with hypothiocyanous acid/hypothiocyanite without peroxidase gave only a 30-50% inhibition. The addition of 5 mmol/L dithiothreitol after incubation with lysozyme and hypothiocyanous acid/hypothiocyanite eliminated the inhibition of the bacterial glucose uptake. The viability of S. mutans was not affected by treatment with any of the components used. Our results indicate that physiological concentrations of lysozyme and the salivary peroxidase system components have a synergistic effect which results in a significant inhibition of glucose metabolism by S. mutans.

摘要

研究了唾液过氧化物酶系统和溶菌酶对变形链球菌NCTC 10449葡萄糖摄取的联合作用。将细菌培养至指数后期,洗涤后,重悬于pH6的缓冲液中,并分别与以下物质孵育:(1) 50微克/毫升人乳溶菌酶,孵育60分钟;(2) 7 - 15微摩尔/升次硫氰酸/次硫氰酸盐,孵育10分钟;(3) 先与溶菌酶孵育60分钟,再加入次硫氰酸/次硫氰酸盐并孵育10分钟。通过将细菌悬液加入到10毫升预热的含0.98微摩尔/升D-(U-14C-)-葡萄糖的50微摩尔/升葡萄糖中启动葡萄糖摄取,混合物在37℃的振荡水浴中孵育。在不同时间间隔取样,通过0.45微米的膜快速过滤,用冰冷缓冲液洗涤,并测定掺入的放射性。溶菌酶对变形链球菌的葡萄糖摄取有轻微刺激作用,但对大鼠链球菌的葡萄糖代谢有显著抑制作用。单独使用次硫氰酸/次硫氰酸盐时,观察到放射性标记葡萄糖掺入受到20 - 30%的抑制。在加入含过氧化物酶的次硫氰酸/次硫氰酸盐之前,先将细菌与溶菌酶孵育,导致葡萄糖摄取完全被抑制。相比之下,溶菌酶与不含过氧化物酶的次硫氰酸/次硫氰酸盐联合使用时,仅产生30 - 50%的抑制作用。在用溶菌酶和次硫氰酸/次硫氰酸盐孵育后加入5毫摩尔/升二硫苏糖醇,可消除对细菌葡萄糖摄取的抑制作用。所用任何一种成分的处理均未影响变形链球菌的活力。我们的结果表明,生理浓度的溶菌酶和唾液过氧化物酶系统成分具有协同作用,可显著抑制变形链球菌的葡萄糖代谢。

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