Tigecycline (TGC) is a last-line drug for multidrug-resistant Enterobacteriaceae We investigated the mechanism(s) underlying TGC nonsusceptibility (TGC resistant/intermediate) in Escherichia coli clinical isolates. The MIC of TGC was determined for 277 fluoroquinolone-susceptible isolates (ciprofloxacin [CIP] MIC, <0.125 mg/liter) and 194 fluoroquinolone-resistant isolates (CIP MIC, >2 mg/liter). The MIC(50) and MIC(90) for TGC in fluoroquinolone-resistant isolates were 2-fold higher than those in fluoroquinolone-susceptible isolates (MIC(50), 0.5 mg/liter versus 0.25 mg/liter; MIC(90), 1 mg/liter versus 0.5 mg/liter, respectively). Two fluoroquinolone-resistant isolates (O25b:H4-ST131-H30R and O125:H37-ST48) were TGC resistant (MICs of 4 and 16 mg/liter, respectively), and four other isolates of O25b:H4-ST131-H30R and an isolate of O1-ST648 showed an intermediate interpretation (MIC, 2 mg/liter). No TGC-resistant/intermediate strains were found among the fluoroquinolone-susceptible isolates. The TGC-resistant/intermediate isolates expressed higher levels of acrA and acrB and had lower intracellular TGC concentrations than susceptible isolates, and they possessed mutations in acrR and/or marR The MICs of acrAB-deficient mutants were markedly lower (0.25 mg/liter) than those of the parental strain. After continuous stepwise exposure to CIP in vitro, six of eight TGC-susceptible isolates had reduced TGC susceptibility. Two of them acquired TGC resistance (TGC MIC, 4 mg/liter) and exhibited expression of acrA and acrB and mutations in acrR and/or marR In conclusion, a population of fluoroquinolone-resistant E. coli isolates, including major extraintestinal pathogenic lineages O25b:H4-ST131-H30R and O1-ST648, showed reduced susceptibility to TGC due to overexpression of the efflux pump AcrAB-TolC, leading to decreased intracellular concentrations of the antibiotics that may be associated with the development of fluoroquinolone resistance.
Tigecycline Nonsusceptibility Occurs Exclusively in Fluoroquinolone-Resistant Escherichia coli Clinical Isolates, Including the Major Multidrug-Resistant Lineages O25b:H4-ST131-H30R and O1-ST648.
替加环素不敏感现象仅发生在对氟喹诺酮类药物耐药的大肠杆菌临床分离株中,包括主要的耐多药菌株 O25b:H4-ST131-H30R 和 O1-ST648
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作者:Sato Toyotaka, Suzuki Yuuki, Shiraishi Tsukasa, Honda Hiroyuki, Shinagawa Masaaki, Yamamoto Soh, Ogasawara Noriko, Takahashi Hiroki, Takahashi Satoshi, Tamura Yutaka, Yokota Shin-Ichi
| 期刊: | Antimicrobial Agents and Chemotherapy | 影响因子: | 4.500 |
| 时间: | 2017 | 起止号: | 2017 Jan 24; 61(2):e01654-16 |
| doi: | 10.1128/AAC.01654-16 | 靶点: | H3、H4 |
| 研究方向: | 微生物学 | ||
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