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头孢哌酮-舒巴坦联合制剂。体外特性,包括β-内酰胺酶稳定性、抗菌活性以及纸片扩散法检测的解释标准。

The cefoperazone-sulbactam combination. In vitro qualities including beta-lactamase stability, antimicrobial activity, and interpretive criteria for disk diffusion tests.

作者信息

Jones R N, Barry A L, Thornsberry C, Wilson H W

出版信息

Am J Clin Pathol. 1985 Oct;84(4):496-504. doi: 10.1093/ajcp/84.4.496.

Abstract

Three concentrations of the penicillanic acid sulfone, sulbactam were tested in combination with cefoperazone against 632 recent clinical bacterial isolates. Cefoperazone was effective alone (less than or equal to 16 micrograms/mL) against 95% of Enterobacteriaceae and combined with 4 micrograms/mL sulbactam inhibited 99.5% of strains. This coverage of enteric bacilli was superior to timentin (99.1%), ceftazidime (98.2%), and tobramycin (90.9%). The minimum inhibitory concentrations (MICs) of cefoperazone-susceptible strains also were markedly decreased by sulbactam (overall MIC90s, 8.0 micrograms/mL for cefoperazone and 1.0 microgram/mL for cefoperazone and 4.0 micrograms/mL for sulbactam). Sulbactam also expanded the spectrum of cefoperazone against Acinetobacter species, some rare Pseudomonas species, and Bacteroides fragilis group species. Sulbactam had direct antimicrobial activity against the acinetobacters and Pseudomonas acidovorans, but the increased activity of cefoperazone-sulbactam against some other Pseudomonas species and anaerobes was attributed to beta-lactamase inhibition. The cefoperazone MICs against beta-lactamase producing Staphylococcus species also were lowered to the level of enzyme-deficient strains. Cefoperazone bactericidal activity was improved by 4.0 micrograms/mL sulbactam, and no antagonism was observed. beta-lactamase hydrolysis studies confirmed a slow hydrolysis of cefoperazone only by TEM beta-lactamases and a high-grade resistance to enzyme breakdown by sulbactam. Differential beta-lactamase affinity studies for cefoperazone and sulbactam showed potential efficacy and applications to plasmid-mediated TEM and OXA enzymes and only marginal effective sulbactam inhibition of Pseudomonas and Klebsiella species enzymes. Disk diffusion studies on 556 strains confirmed the applicability of the cefoperazone 75-micrograms disk to testing routine isolates other than enterococci and methicillin-resistant Staphylococcus aureus. The addition of 4.0 micrograms sulbactam/mL in a fixed concentration to dilution test systems and 15 micrograms sulbactam to the 75 micrograms cefoperazone disk were recommended for in vitro tests. Susceptibility and resistant interpretive criteria for the disk and dilution tests can be applied with confidence. Only 0.4% false-susceptibility errors and a 97.5% absolute interpretive agreement were achieved using the 75 micrograms cefoperazone/15 micrograms sulbactam disk.

摘要

对632株近期临床分离的细菌,测试了三种浓度的青霉烷酸砜舒巴坦与头孢哌酮联合使用的效果。头孢哌酮单独使用时(小于或等于16微克/毫升)对95%的肠杆菌科细菌有效,与4微克/毫升舒巴坦联合使用时可抑制99.5%的菌株。这种对肠道杆菌的覆盖范围优于替卡西林(99.1%)、头孢他啶(98.2%)和妥布霉素(90.9%)。舒巴坦还显著降低了头孢哌酮敏感菌株的最低抑菌浓度(MIC)(总体MIC90s,头孢哌酮为8.0微克/毫升,头孢哌酮与4.0微克/毫升舒巴坦联合时为1.0微克/毫升)。舒巴坦还扩大了头孢哌酮对不动杆菌属、一些罕见假单胞菌属以及脆弱拟杆菌群细菌的抗菌谱。舒巴坦对不动杆菌和食酸假单胞菌有直接抗菌活性,但头孢哌酮 - 舒巴坦对其他一些假单胞菌属和厌氧菌活性的增强归因于β - 内酰胺酶抑制作用。头孢哌酮对产β - 内酰胺酶葡萄球菌属的MIC也降至酶缺陷菌株的水平。4.0微克/毫升舒巴坦可提高头孢哌酮的杀菌活性,且未观察到拮抗作用。β - 内酰胺酶水解研究证实,仅TEMβ - 内酰胺酶能缓慢水解头孢哌酮,而舒巴坦对酶分解具有高度抗性。头孢哌酮和舒巴坦的β - 内酰胺酶亲和力差异研究表明,对质粒介导的TEM和OXA酶有潜在疗效和应用,舒巴坦对假单胞菌属和克雷伯菌属细菌的酶仅有微弱抑制作用。对556株菌株的纸片扩散试验证实,75微克头孢哌酮纸片适用于除肠球菌和耐甲氧西林金黄色葡萄球菌以外的常规分离株检测。推荐在稀释试验系统中固定添加4.0微克/毫升舒巴坦,在75微克头孢哌酮纸片中添加15微克舒巴坦用于体外试验。纸片试验和稀释试验的敏感性和耐药性解释标准可放心应用。使用75微克头孢哌酮/15微克舒巴坦纸片时,假敏感错误率仅为0.4%,绝对解释一致性为97.5%。

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