Bejar V, Calvo C, Ramos Cormenzana A
Departamento de Microbiologia, Facultad de Farmacia, Universidad de Granada, España.
Ann Inst Pasteur Microbiol (1985). 1986 Mar-Apr;137A(2):169-77. doi: 10.1016/s0769-2609(86)80022-9.
The beta-lactam antibiotic susceptibility and beta-lactamase activity of 22 Yersinia kristensenii strains were determined in order to compare these properties with those reported for Y. enterocolitica. Carbenicillin, cephaloridine, cefoxitin and cefotaxime were the most active antimicrobial agents tested against Y. kristensenii. All strains were resistant to penicillin G, cephalothin, cephapirin and cephalexin. On the other hand, ampicillin and cefazolin activity could be considerated as intermediate. The influence of incubation temperature was also evaluated. All Y. kristensenii strains were more resistant at 22 degrees C than at 37 degrees C to beta-lactam antibiotics. Susceptibility to cefazolin was not affected by the incubation temperature. All Y. kristensenii strains produce beta-lactamase. The substrate profile of this enzyme is that of a cephalosporinase: its activity was highest on cephalothin, cephapirin, cephaloridine and cefazolin, while hydrolysis of ampicillin and carbenicillin was not detected. beta-Lactamase-resistant cefoxitin and cefotaxime were not hydrolysed. A correlation between beta-lactam antibiotic susceptibility and the hydrolysis rate of these antibiotics by beta-lactamase was observed, except for cephaloridine and cefazolin; these antibiotics were very good beta-lactamase substrates, but their MIC values were low.
为了将22株克氏耶尔森菌的β-内酰胺类抗生素敏感性和β-内酰胺酶活性与小肠结肠炎耶尔森菌的相关特性进行比较,对其进行了测定。羧苄青霉素、头孢啶、头孢西丁和头孢噻肟是测试的对克氏耶尔森菌最具活性的抗菌剂。所有菌株对青霉素G、头孢噻吩、头孢匹林和头孢氨苄耐药。另一方面,氨苄西林和头孢唑林的活性可被视为中等。还评估了培养温度的影响。所有克氏耶尔森菌菌株在22℃时比在37℃时对β-内酰胺类抗生素更耐药。头孢唑林的敏感性不受培养温度影响。所有克氏耶尔森菌菌株均产生β-内酰胺酶。该酶的底物谱为头孢菌素酶的底物谱:其对头孢噻吩、头孢匹林、头孢啶和头孢唑林的活性最高,而未检测到对氨苄西林和羧苄青霉素的水解。耐β-内酰胺酶的头孢西丁和头孢噻肟未被水解。观察到β-内酰胺类抗生素敏感性与这些抗生素被β-内酰胺酶水解的速率之间存在相关性,但头孢啶和头孢唑林除外;这些抗生素是很好的β-内酰胺酶底物,但其MIC值较低。