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两种方法测定几种β-内酰胺类抗生素对厌氧菌的比较活性

Comparative activity of several beta-lactam antibiotics against anaerobes determined by two methods.

作者信息

Zabransky R J, Birk R J

机构信息

Department of Pathology and Laboratory Medicine, University of Wisconsin Medical School at Sinai Samaritan Medical Center, Milwaukee.

出版信息

Clin Ther. 1987;10(1):107-25.

PMID:3450391
Abstract

The susceptibility of 120 strains of several species of anaerobes to a number of second and third generation beta-lactam antibiotics was determined by the National Committee for Clinical Laboratory Standards reference agar dilution and microdilution methods. The antibiotics tested were cefoperazone, cefotaxime, cefotetan, ceftizoxime, cefoxitin, and imipenem. The MIC50s ranged from 0.125 to 16 micrograms/ml. The MIC90s were lowest with imipenem at 0.5 micrograms/ml, followed by cefoxitin at 32 micrograms/ml; they were highest with cefotetan at 128 micrograms/ml and were 64 micrograms/ml with the others. In vitro drug activity varied with the antibiotic, the organism, the method used, and the breakpoint selected. Rates of resistance varied considerably between the taxonomic groups of organisms tested and also among species within a group. Overall, reproducibility with the agar dilution method ranged from 44% to 85%; testing with ceftizoxime was the least reproducible. Microdilution results agreed within +/- 1 dilution of the agar dilution mode 79% to 95% of the time, with some variation between drugs and organisms tested. Because there were distinct differences in the activity of some drugs against certain species, no antibiotic can substitute for others in in vitro testing.

摘要

采用美国国家临床实验室标准委员会推荐的琼脂稀释法和微量稀释法,测定了120株几种厌氧菌对多种第二代和第三代β-内酰胺类抗生素的敏感性。所测试的抗生素有头孢哌酮、头孢噻肟、头孢替坦、头孢唑肟、头孢西丁和亚胺培南。MIC50范围为0.125至16微克/毫升。MIC90最低的是亚胺培南,为0.5微克/毫升,其次是头孢西丁,为32微克/毫升;最高的是头孢替坦,为128微克/毫升,其他几种为64微克/毫升。体外药物活性随抗生素、微生物、所用方法和选定的折点而变化。在所测试的微生物分类组之间以及组内不同物种之间,耐药率差异很大。总体而言,琼脂稀释法的重现性范围为44%至85%;用头孢唑肟测试的重现性最差。微量稀释结果在79%至95%的时间内与琼脂稀释法结果在±1个稀释度内一致,不同药物和所测试的微生物之间存在一些差异。由于某些药物对某些物种的活性存在明显差异,在体外测试中没有一种抗生素可以替代其他抗生素。

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