Lacroix J M, Lamothe F, Malouin F
Antimicrob Agents Chemother. 1984 Nov;26(5):694-8. doi: 10.1128/AAC.26.5.694.
The susceptibility of 46 clinical isolates of Bacteroides bivius to amoxicillin, cefotaxime, cefoxitin, ceftizoxime, cephaloridine, cephalothin, moxalactam, penicillin G, amoxicillin plus clavulanic acid in a ratio of 2:1, carbenicillin, cefamandole, and ceftazidime was determined by an agar dilution technique. For the first eight agents susceptibility testing was also done with the addition of clavulanic acid (0.75 microgram/ml). For all agents, beta-lactamase-positive strains (35, using a nitrocefin slide test) were inhibited at higher concentrations than beta-lactamase-negative strains. Clavulanic acid reduced the susceptibility of the beta-lactamase-positive strains to the level of the beta-lactamase-negative strains to all agents. We prepared crude extracts of beta-lactamase from six strains. Activity against nitrocefin was directly related to their susceptibilities. The beta-lactamase had a mixed-substrate profile, hydrolyzing both penicillins and cephalosporins. Our results suggest a slow inactivation of cefoxitin, ceftizoxime, and moxalactam by the beta-lactamase. Clavulanic acid and cefoxitin inhibited the enzyme, whereas p-hydroxymercuribenzoate and cloxacillin did not. Thus, there was a clear relationship between beta-lactamase activity and susceptibility to beta-lactams, including cefoxitin and third-generation cephalosporins. The substrate and inhibition profiles of the B. bivius beta-lactamase were different from those of enzymes found in the "B. fragilis group."
采用琼脂稀释技术测定了46株双栖拟杆菌临床分离株对阿莫西林、头孢噻肟、头孢西丁、头孢唑肟、头孢菌素、头孢噻吩、莫西沙星、青霉素G、阿莫西林与克拉维酸按2:1比例混合、羧苄青霉素、头孢孟多和头孢他啶的敏感性。对于前8种药物,还在添加克拉维酸(0.75微克/毫升)的情况下进行了药敏试验。对于所有药物,β-内酰胺酶阳性菌株(35株,采用硝基头孢菌素玻片试验)比β-内酰胺酶阴性菌株在更高浓度下受到抑制。克拉维酸使β-内酰胺酶阳性菌株对所有药物的敏感性降低至β-内酰胺酶阴性菌株的水平。我们从6株菌株中制备了β-内酰胺酶粗提物。对硝基头孢菌素的活性与它们的敏感性直接相关。β-内酰胺酶具有混合底物谱,可水解青霉素和头孢菌素。我们的结果表明,头孢西丁、头孢唑肟和莫西沙星被β-内酰胺酶缓慢灭活。克拉维酸和头孢西丁抑制该酶,而对羟基汞苯甲酸和氯唑西林则无此作用。因此,β-内酰胺酶活性与对β-内酰胺类药物(包括头孢西丁和第三代头孢菌素)的敏感性之间存在明显关系。双栖拟杆菌β-内酰胺酶的底物和抑制谱与“脆弱拟杆菌群”中发现的酶不同。