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二氧化碳对厌氧菌体外对红霉素敏感性的影响。

Effect of carbon dioxide on in vitro susceptibility of anaerobic bacteria to erythromycin.

作者信息

Goldstein E J, Sutter V L, Kwok Y Y, Lewis R P, Finegold S M

出版信息

Antimicrob Agents Chemother. 1981 Dec;20(6):705-8. doi: 10.1128/AAC.20.6.705.

Abstract

The activity of erythromycin against 317 strains of anaerobic bacteria, including 133 strains of the Bacteroides fragilis group, was tested by the agar dilution method in an anaerobic atmosphere with two different concentrations of carbon dioxide and without CO2. The effect of the atmosphere of incubation on the agar surface pH was also determined. All strains grew well in the GasPak (GP) environment. However, 3.5 and 30.3% of strains failed to grow in the 2 and 0% CO2 environments, respectively. The quality of growth was best in the GP environment and poorest in the 0% CO2 environment. Minimal inhibitory concentrations in the GP and 2% CO2 environments were frequently the same or one dilution lower in the 0% than in the GP environment. In the 0% CO2 atmosphere, minimal inhibitory concentrations were usually two to three dilutions lower than in the GP environment. Consequently, only 24% of B. fragilis strains were susceptible to erythromycin in the GP environment, whereas 77% were susceptible in the 0% CO2 environment. For Fusobacterium species, 12% were susceptible to erythromycin in the GP environment, and 73% were susceptible in the 0% CO2 environment. There was a comparable decrease in pH in all three atmospheres tested. In vitro susceptibility testing of erythromycin against anaerobic bacteria should be performed in an atmosphere containing carbon dioxide.

摘要

采用琼脂稀释法,在含有两种不同二氧化碳浓度的厌氧环境以及无二氧化碳环境中,对包括133株脆弱拟杆菌群在内的317株厌氧菌进行红霉素活性测试。同时还测定了培养环境对琼脂表面pH值的影响。所有菌株在GasPak(GP)环境中生长良好。然而,分别有3.5%和30.3%的菌株在2%和0%二氧化碳环境中无法生长。生长质量在GP环境中最佳,在0%二氧化碳环境中最差。在GP和2%二氧化碳环境中的最低抑菌浓度在0%环境中通常与GP环境相同或低一个稀释度。在0%二氧化碳环境中,最低抑菌浓度通常比GP环境低两到三个稀释度。因此,在GP环境中只有24%的脆弱拟杆菌菌株对红霉素敏感,而在0%二氧化碳环境中77%敏感。对于梭杆菌属,在GP环境中12%对红霉素敏感,在0%二氧化碳环境中73%敏感。在所测试的三种环境中pH值都有类似下降。红霉素对厌氧菌的体外药敏试验应在含二氧化碳的环境中进行。

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引用本文的文献

7
Effect of carbon dioxide on erythromycin.二氧化碳对红霉素的影响。
Antimicrob Agents Chemother. 1983 Feb;23(2):325-7. doi: 10.1128/AAC.23.2.325.
8
Anaerobic media and pH changes during growth.生长过程中的厌氧培养基和pH变化。
J Clin Pathol. 1985 Nov;38(11):1315. doi: 10.1136/jcp.38.11.1315.

本文引用的文献

1
Clinical evaluation of erythromycin.红霉素的临床评估。
AMA Arch Intern Med. 1954 Mar;93(3):397-406. doi: 10.1001/archinte.1954.00240270083008.
2
The antibacterial action of erythromycin.红霉素的抗菌作用。
Proc Soc Exp Biol Med. 1952 Oct;81(1):175-83. doi: 10.3181/00379727-81-19815.

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