期刊文献+

多重基因表达分析系统在氨基糖苷类多重耐药基因检测中的应用 被引量:9

原文传递
导出
摘要 氨基糖苷类抗生素耐药趋势逐年增强,氨基糖苷类耐药基因的研究成为近年来研究的热点问题。与细菌耐药最为密切的是氨基糖苷类修饰酶(aminoglycoside modifying enzymes,AMEs)基因和16S rRNA甲基化酶(16S rRNA methylase)基因,国内最常见的氨基糖苷类抗生素相关的耐药基因有:5种AMEs基因aac(3)-Ⅱ、aac(6’)-Ⅰb、aac(6’)-Ⅱ、ant(3")-Ⅰ、
出处 《中华预防医学杂志》 CAS CSCD 北大核心 2011年第2期181-183,共3页 Chinese Journal of Preventive Medicine
  • 相关文献

参考文献11

  • 1Davies J,Wright GD.Bacterial resistance to aminoglycoside antibiotics.Trends Microbiol,1997.5:234-240.
  • 2吴琼,倪语星.一种新的氨基糖苷类耐药决定因子:质粒介导的16S rRNA甲基化酶[J].微生物与感染,2009,4(1):45-48. 被引量:16
  • 3糜祖煌,陆亚华.氨基糖苷类修饰酶及其基因检测[J].现代实用医学,2004,16(1):13-14. 被引量:143
  • 4Tabone T,Mather DE,Hayden MJ.Temperature switch PCR (TSP):Robust assay design for reliable amplification and genotyping of SNPs.BMC Genomics,2009,10:580-593.
  • 5Rai AJ,Kamath RM,Gerald W,et al.Analytical validation of the GeXP analyzer and design of a workflow for cancer-biomarker discovery using multiplexed gene-expression profiling.Anal Bioanal Chem,2009,393:1505-1511.
  • 6Nagel MA,Gilden D,Shade T,et al.Rapid and sensitive detection of 68 unique varicella zoster virus gene transcripts in five multiplex reverse transcription-polymerase chain xeactions.J Virol Methods,2009,157:62-68.
  • 7Qin M,Wang DY,Huang F,et al.Dection of pandemic influenza A H1N1 virus by multiplex reverse transcription-PCR with a GeXP analyzer.J Virol Methods,2010,168 (1/2):255-258.
  • 8Yokoyama K,Doi Y,Yamane K,et al.Acquisition of 16S rRNA methylase gene in Pseudomonas aeruginosa.Lancet,2003,362:1888-1893.
  • 9Wachino J,Yamane K,Shibayama K,et al.Novel plasmidmediated 165 rRNA methylase,RmtC,found in a proteus mirabilis isolate demonstrating extraordinary high-level resistance against various aminogycosides.Antimicrob Agents Chemother,2006,50:178-184.
  • 10Doi Y,de Oliveira Garcia D,Adams J,et al.Coproduction of novel 16S rRNA methylase RmtD and metallo-beta-lactamase SPM-1 in a panresistant Pseudomonas aeruginosa isolate from Brazil.Antimicrob Agents Chemother,2007,51:852-856.

二级参考文献22

  • 1Gonzalez-Zorn B, Catalan A, Escudero JA ,et al. Genetic basis for dissemination of armA [ J ]. J Antimicrob Chemother,2005,56 (3) :583-585
  • 2Davies J, Wright GD. Bacterial resistance to aminoglycoside antibiotics [ J]. Trends Microbiol, 1997, 5(6) :234-240
  • 3Tanaka N, Matsunaga K, Hirata A,et al. Mechanism of action of arbekacin, a novel amino acid-containing aminoglycoside antibiotic [ J ] . Antimicrob Agents Chemother, 1983,24 ( 5 ) : 797-802
  • 4Beauclerk AA, Cundliffe E. Sites of action of two ribosomal RNA methylases responsible for resistance to aminoglycosides[ J]. J Mol Biol, 1987,193(4) :661-671
  • 5Galimand M,Courvalin P, Lambert T. Plasmid-mediated high level resistance to aminoglycosides in Enterobacteriaceae due to 16S rRNA methylation [ J ] . Antimicrob Agents Chemother, 2003,47 ( 8 ) : 2565-2571
  • 6Gonzalez-zorn B,Teshager T, Casas M,et al. armA and aminoglycoside resistance in Escherichia coli [ J ]. Emerg Infect Dis ,2005,11 ( 6 ) :954-956
  • 7Yamane K, Wachino J, Doi Y, et al. Global spread of multiple aminoglycoside resistance genes [ J ] . Emerg Infect Dis ,2005,11 ( 6 ) :951-953
  • 8Galimand M,Sabtcheva S,Courvalin P,et al. Worldwide disseminated armA aminoglycoside resistance methylase gene is borne by composite transposon Tn1548 [ J ]. Antimicrob Agents Chemother,2005,49 ( 7 ) :2949-2953
  • 9Yan JJ, Wu JJ, Ko WC, et al. Plasmid-mediated 16S rRNA methylases conferring high-level aminoglycoside resistance in Escherichia coil and Klebsiella pneumoniae isolates from two Taiwan Residents hospitals [ J ]. J Antimicrob Chemother, 2004,54 ( 6 ) : 1007-1012
  • 10Lee H, Yong D, Yum JH, Roh KH,et al. Dissemination of 16S rRNA methylase-mediated highly amikacinresistant isolales of Klebsiella pneumoniae and Acinetobacter baumannii in Korea [ J ]. Diagn Microbiol Infect Dis ,2006,56( 3 ) :305-312

共引文献156

同被引文献83

引证文献9

二级引证文献56

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部