期刊文献+

质粒介导氨基糖苷类抗生素新耐药机制:16S rRNA甲基化酶 被引量:8

New mechanism of plasmid-mediated bacterial resistance to aminoglycoside antibiotics:16S rRNA methylation
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出处 《中国感染与化疗杂志》 CAS 2010年第2期155-159,共5页 Chinese Journal of Infection and Chemotherapy
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参考文献29

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  • 2van der Bijl P.Aminoglycoside monitoring:perspective on current trends in the Western Cape[J].S Afr Med J,2005,95(7):474-477.
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  • 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.
  • 6Yokoyama K,Doi Y,Yamane K,et al.Acquisition of 16S rRNA methylase gene in Pseudomonas aeruginosa[J].Lancet,2003,362(9399):1888-1893.
  • 7Doi Y,Yokoyama K,Yamane K,et al.Plasmid-mediated 16S rRNA methylase in Serratia marcescens conferring high-level resistance to aminoglycosides[J].Antimicrob Agents Chemother,2004,48(2):491-496.
  • 8Wachino J,Yamane K,Shibayama K,et al.Novel plasmid-mediated 16S rRNA methylase,RmtC,found in a Proteus mirabilis isolate demonstrating extraordinary high-level resistance against various aminoglycosides[J].Antimicrob Agents Chemother,2006,50(1):178-184.
  • 9Doi Y,Oliveira Garcia D,Adams J,et al.Coproduction of novel 16S rRNA methylase RmtD and metallo-β-lactamase SPM-1 in a panresistant Pseudomonas aeruginosa isolate from Brazil[J].Antimicrob Agents Chemother,2007,51(3):852-856.
  • 10Wachino J,Shibayama K,Kurokawa H,et al.Novel plasmid-mediated 16S rRNA m1A1408 methyltransferase,NpmA,found in a clinically isolated Escherichia coli strain resistant to structurally diverse aminoglycosides[J].Antimicrob Agents Chemother,2007,51(12):4401-4409.

同被引文献94

  • 1糜祖煌,黄支密,秦玲.鲍氏不动杆菌耐药性和氨基糖苷类修饰酶、β-内酰胺酶基因研究[J].中华医院感染学杂志,2004,14(9):968-971. 被引量:136
  • 2赵旺胜,黄珮珺,刘根焰,张巧娣,童明庆.南京地区鲍曼不动杆菌氨基糖苷类药物修饰酶基因类型的调查[J].临床检验杂志,2005,23(5):334-336. 被引量:12
  • 3王红霞.抗真菌中药研发新进展[J].黑龙江医药,2006,19(4):310-311. 被引量:12
  • 4陈琳,陈杖榴,刘健华.氨基糖苷类药物耐药新机制——16S rRNA甲基化酶的研究进展[J].中国兽医科学,2006,36(11):935-939. 被引量:14
  • 5Yu YS, Zhou H, Yang Q, et al. Widespread occurrence of aminoglycoside resistance due to ArmA methylase in imipenem resistant A. baumannii isolates in China[J]. J Antimicrob Chemother, 2007, 60(2):454-455.
  • 6Yan JJ, Wu JJ, Ko WC, et al. Plasmid-mediated 16S rRNA methylases conferring high-level aminoglycoside resistance in E. coli and K. pneurnoniae isolates from two Taiwan Residents hospitals[J]. J Antimierob Chemother, 2004, 54 (6): 1007- 1012.
  • 7Chen L, Chen ZL, Liu JH, et al. Emergence of RmtB meth ylase-producing E. coli and Enterobacter cloacae isolates from pigs in china [J]. J Antimicrob Chemother, 2007, 59 (5) : 880-885.
  • 8Wu QO, Zhang YB, Han LZ, et al. Plasmid-mediated 16S rRNA methylases in aminoglycoside-resistant Enterobacteriaceae isolates in Shanghai, China[J]. Antimicrob Agents Chemother, 2009, 53(1):271-272.
  • 9Kang HY, Kim J, Seol SY, et al. Characterizauon of conjugative plasmids carrying antibiotic resistance genes encoding 16S rRNA methylase, extended-spectrum β-laetamase, and/ or plasmid-mediated AmpC β-lactamase [J]. J Microbiol, 2009, 47(1) :68-75.
  • 10Magnet S, Blanchard JS. Molecular insights into aminoglycoside action and resistance [J]. Chem Rev, 2005, 705(2): 477-498.

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