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首页> 外文期刊>Folia Microbiologica >In Vitro activity of telithromycin and quinupristin/dalfopristin against methicillin-resistant coagulase-negative staphylococci with defined resistance genotypes
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In Vitro activity of telithromycin and quinupristin/dalfopristin against methicillin-resistant coagulase-negative staphylococci with defined resistance genotypes

机译:特石霉素和奎奴普丁/达福普汀对具有确定的耐药基因型的耐甲氧西林的凝固酶阴性葡萄球菌的体外活性

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摘要

We determined the activities of new antibiotics telithromycin (ketolide) and quinupristin/dalfopristin (streptogramins) against 88 macrolide and/or lincosamide resistant coagulase-negative staphylococci (CoNS) isolates with defined resistance gene status. Telithromycin susceptibility was determined only in erythromycin-sensitive isolates (15) indicating the same mechanisms of resistance. In contrast, all erythromycin-resistant isolates (73) were either constitutively resistant to telithromycin (13 isolates with constitutiveerm genes) or demonstrated telithromycin D-shaped zone (60 isolates with induciblemsr(A) and/orerm). However, the level of inducible resistance conferred bymsr(A) (35 isolates) was borderline even after induction by erythromycin. No quinupristin/dalfopristin resistant isolate was observed if tested by disk-diffusion method (DDM) but 18 isolates were intermediate (MIC = 1–3 mg/L) and two isolates resistant (MIC = 8 mg/L) if tested by E-test. All these isolates were resistant to streptogramin A and harboredvga(A) gene (1 isolate) orvga(A)LC gene (19 isolates). MICs for quinupristin/dalfopristin were higher for isolates with combination of streptogramin A resistance and constitutive MLSB resistance (MIC = 3–8 mg/L in 4 isolates) than for streptogramin A-resistant isolates susceptible to streptogramin B (MIC = 0.5–2 mg/L in 16 isolates). In addition toS. haemolyticus, vga(A)LC was newly identified inS. epidermidis andS. warnerii indicating its widespread occurrence in CoNS. Misidentification of low-level resistant isolates by DDM may contribute to dissemination of streptogramin A resistance.
机译:我们确定了新的抗生素telithromycin(酮内酯)和quinupristin / dalfopristin(链霉菌素)对88种大环内酯类和/或林可酰胺耐药性凝固酶阴性葡萄球菌(CoNS)分离株的活性,这些分离株具有确定的耐药基因状态。仅在对红霉素敏感的分离株中测定了泰利霉素的敏感性(15),表明耐药机制相同。相比之下,所有对红霉素具有抗性的菌株(73)都对泰利霉素具有组成型抗性(13个具有组成性基因的菌株)或表现出泰利霉素D形区(60个具有duceriblemsr(A)和/或瘤胃的菌株)。但是,即使在被红霉素诱导后,msms(A)(35个分离株)赋予的诱导抗性水平仍处于临界点。如果采用圆盘扩散法(DDM)进行检测,则未观察到奎奴普丁/达福普汀抗药性分离株,但经E-检验,有18种为中等(MIC = 1-3 mg / L)分离株和两种耐药株(MIC = 8 mg / L)。测试。所有这些菌株均对链霉菌素A具有抗性,并带有vga(A)基因(1个菌株)或带有vga(A)LC 基因(19个菌株)。链霉菌素A耐药和组成型MLSB 结合的菌株对奎奴普丁/达福普汀的MICs较高(4株中MIC = 3–8 mg / L),而对链霉菌素B敏感的耐链霉菌素A的菌株(MIC = 0.5–2 mg / L在16个分离物中)。除了S。在S中新鉴定了溶血性溶血球菌vga(A)LC 。表皮和warnerii表明其广泛存在于CoNS中。 DDM对低水平耐药菌株的错误识别可能有助于传播链霉素A耐药。

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  • 来源
    《Folia Microbiologica 》 |2007年第6期| 593-599| 共7页
  • 作者单位

    Institute of Microbiology Academy of Sciences of the Czech Republic 142 20 Prague Czechia;

    Institute of Microbiology Academy of Sciences of the Czech Republic 142 20 Prague Czechia;

    Institute of Microbiology Academy of Sciences of the Czech Republic 142 20 Prague Czechia;

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