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外排泵对铜绿假单胞菌临床分离株多药耐药性的贡献。

Efflux pump contribution to multidrug resistance in clinical isolates of Pseudomonas aeruginosa.

机构信息

Department of Clinical Pharmacy, University of Colorado Denver, Aurora, Colorado, USA.

出版信息

Pharmacotherapy. 2010 Jul;30(7):632-8. doi: 10.1592/phco.30.7.632.

Abstract

STUDY OBJECTIVE

To determine if increased expression of efflux pumps, mutations in the genes encoding regulatory proteins for efflux pumps, or the combination is associated with multidrug-resistant (MDR) Pseudomonas aeruginosa isolates.

DESIGN

Microbiologic evaluation of prospectively collected Pseudomonas aeruginosa isolates.

SETTING

University teaching hospital. ISOLATES: One hundred eight unique P. aeruginosa isolates-50 non-MDR and 58 MDR isolates-obtained from pulmonary or blood sources from patients admitted to the intensive care unit between January 1, 1999, and December 31, 2004.

MEASUREMENTS AND MAIN RESULTS

Isolates were considered MDR if they were resistant to at least three of the following four drugs: ciprofloxacin, tobramycin, ceftazidime, or imipenem. Possible mutations in efflux regulatory genes mexR, nfxB, and mexZ were analyzed by using polymerase chain reaction amplification and DNA sequencing. Determination of the expression of outer membrane proteins OprM and OprJ was performed by using sodium dodecyl sulfate- polyacrylamide gel electrophoresis immunoblotting. Differences in regulatory gene mutations and outer membrane protein expression were compared between non-MDR and MDR isolates. Among the 108 P. aeruginosa isolates, the MDR isolates were more likely to overexpress OprM compared with non-MDR isolates (64% vs 2%, p<0.001). Mutations in mexR and mexZ were present in 64% and 26% of MDR strains, respectively, but were not associated with OprM overexpression or multidrug resistance. Expression of OprJ was not associated with MDR isolates (odds ratio [OR] 3.7, 95% confidence interval [CI] 0.7-18.5, p=0.11). Mutations in nfxB (12% of MDR strains) were also not associated with multidrug resistance (OR 3.5, 95% CI 0.7-17.8, p=0.13). Eight (100%) of 8 isolates with OprJ expression plus OprM overexpression, 12 (92%) of 13 isolates with combined mexR and mexZ mutations, 5 (100%) of 5 isolates with nfxB plus mexZ mutations, and 16 (100%) of 16 isolates with OprM overexpression plus mexZ mutations were MDR isolates.

CONCLUSION

The presence of one regulatory gene mutation or simple expression of a single outer membrane protein was not linked to multidrug resistance. However, OprM overexpression and multiple efflux regulatory gene mutations or efflux protein expression were associated with MDR P. aeruginosa isolates.

摘要

研究目的

确定外排泵表达增加、编码外排泵调节蛋白的基因突变、或两者的组合是否与多药耐药(MDR)铜绿假单胞菌分离株有关。

设计

前瞻性收集铜绿假单胞菌分离株的微生物学评估。

地点

大学教学医院。

分离株

108 个独特的铜绿假单胞菌分离株-50 个非 MDR 和 58 个 MDR 分离株-从 1999 年 1 月 1 日至 2004 年 12 月 31 日期间入住重症监护病房的肺部或血液来源的患者中获得。

测量和主要结果

如果分离株对至少以下四种药物中的三种有耐药性,则认为是 MDR:环丙沙星、妥布霉素、头孢他啶或亚胺培南。使用聚合酶链反应扩增和 DNA 测序分析外排调节基因 mexR、nfxB 和 mexZ 的可能突变。通过十二烷基硫酸钠-聚丙烯酰胺凝胶电泳免疫印迹法测定外膜蛋白 OprM 和 OprJ 的表达。比较非 MDR 和 MDR 分离株之间的调节基因突变和外膜蛋白表达差异。在 108 个铜绿假单胞菌分离株中,MDR 分离株与非 MDR 分离株相比,更可能过度表达 OprM(64%对 2%,p<0.001)。mexR 和 mexZ 的突变分别存在于 64%和 26%的 MDR 菌株中,但与 OprM 过度表达或多药耐药无关。OprJ 的表达与 MDR 分离株无关(比值比[OR]3.7,95%置信区间[CI]0.7-18.5,p=0.11)。nfxB(12%的 MDR 菌株)的突变也与多药耐药无关(OR 3.5,95%CI0.7-17.8,p=0.13)。8 个(100%)具有 OprJ 表达和 OprM 过度表达的分离株、13 个(92%)具有 mexR 和 mexZ 突变组合的分离株、5 个(100%)具有 nfxB 和 mexZ 突变的分离株、16 个(100%)具有 OprM 过度表达和 mexZ 突变的分离株都是 MDR 分离株。

结论

单个外排泵调节基因突变或单个外膜蛋白的简单表达与多药耐药无关。然而,OprM 过度表达和多个外排泵调节基因突变或外排蛋白表达与 MDR 铜绿假单胞菌分离株有关。

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