INCIDENCE AND MECHANISMS OF RESISTANCE TO THE COMBINATION OF AMOXICILLIN AND CLAVULANIC ACID IN ESCHERICHIA-COLI

被引:127
作者
STAPLETON, P [1 ]
WU, PJ [1 ]
KING, A [1 ]
SHANNON, K [1 ]
FRENCH, G [1 ]
PHILLIPS, I [1 ]
机构
[1] UNITED MED & DENT SCH GUYS & ST THOMASS HOSP, DEPT MICROBIOL, LONDON SE1 7EH, ENGLAND
关键词
D O I
10.1128/AAC.39.11.2478
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Among Escherichia coli organisms isolated at St, Thomas's Hospital during the years 1990 to 1994, the frequency of resistance to amoxicillin-clavulanic acid (tested by disk diffusion in a ratio of 2:1) remained constant at about 5% of patient isolates (10 to 15% of the 41 to 45% that were amoxicillin resistant), Mechanisms of increased resistance were determined for 72 consecutively collected such amoxicillin-clavulanic acid-resistant isolates. MICs of the combination were 16-8 mu g/ml for 51 (71%) of these and greater than or equal to 32-16 mu g/ml for the remainder, The predominant mechanism was hyperproduction of enzymes isoelectrically cofocusing with TEM-1 (beta-lactamase activities, >200 nmol of nitrocefin hydrolyzed per min per mg of protein) which was found in 44 isolates (61%); two isolates produced smaller amounts (approximately 150 nmol/min/mg) of such enzymes, and two isolates hyperproduced enzymes cofocusing with TEM-2, Eleven isolates produced enzymes cofocusing with OXA-1 beta-lactamase, which has previously been associated with resistance to amoxicillin-clavulanic acid. Ten isolates produced increased amounts of chromosomal beta-lactamase, and four of these additionally produced TEM-1 or TEM-2. Three isolates produced inhibitor-resistant TEM-group enzymes. In one of the enzymes (pI, 5.4), the amino acid sequence change was Met-67-->Val, and thus the enzyme is identical to TEM-34. Another (pI, 5.4) had the substitution Met-67-->Ile and is identical to IRT-I67, which we propose now be given the designation TEM-40. The third (pI, 5.2) had the substitution Arg-241-->Thr; this enzyme has not been reported previously and should be failed TEM-->41. The rarity and diversity of inhibitor-resistant TEM-group enzymes suggest that they are the result of spontaneous mutations that have not yet spread.
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页码:2478 / 2483
页数:6
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