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β-溶血性链球菌的青霉素耐受性以及群特异性碳水化合物、溶血素、透明质酸酶和脱氧核糖核酸酶的产生。

Penicillin tolerance among beta-hemolytic streptococci and production of the group carbohydrates, hemolysins, hyaluronidases and deoxyribonucleases.

作者信息

Avelino C C, Benchetrit L C

机构信息

Escola de Farmácia e Odontologia de Alfenas, MG, Brasil.

出版信息

Mem Inst Oswaldo Cruz. 1995 Jul-Aug;90(4):529-34. doi: 10.1590/s0074-02761995000400021.

Abstract

Penicillin tolerance among 67 strains of beta-hemolytic streptococci was examined by determining the ratio of the minimal bactericidal concentration to the minimal inhibitory concentration as 32 or greater. Tolerance was demonstrated in 15 group A strains and in 11.7, and 4 of groups B, C and G, respectively. Thereafter the effects of a subminimal inhibitory concentration (1/2 MIC) of penicillin on the bacterial products of four tolerant and four nontolerant strains (two of each Lancefield group) were analyzed and compared. The antibiotic caused a marked increase in the expression of the group carbohydrates for strains of group B. Penicillin was found to reduce the cell-bound hemolysin activities of the four tolerant strains and to increase the activity of the other (free) form of nontolerant groups A, C and G hemolysins. Penicillin caused an increase in the extracellular hyaluronidase activities of one group A and groups B, C and G streptococci. With added antibiotic the production of deoxyribonuclease by tolerant groups A, C and G was greatly enhanced and that of the group B streptococcus was arrested.

摘要

通过测定最低杀菌浓度与最低抑菌浓度之比为32或更高,对67株β溶血性链球菌的青霉素耐受性进行了检测。在15株A组菌株以及分别在11.7株B组、C组和G组菌株中证实了耐受性。此后,分析并比较了青霉素亚最低抑菌浓度(1/2 MIC)对4株耐受菌株和4株非耐受菌株(每个兰斯菲尔德组各2株)的细菌产物的影响。该抗生素使B组菌株的群碳水化合物表达显著增加。发现青霉素可降低4株耐受菌株的细胞结合溶血素活性,并增加非耐受的A组、C组和G组溶血素其他(游离)形式的活性。青霉素使1株A组以及B组、C组和G组链球菌的细胞外透明质酸酶活性增加。添加抗生素后,耐受的A组、C组和G组的脱氧核糖核酸酶产生大大增强,而B组链球菌的脱氧核糖核酸酶产生则被抑制。

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