首页> 外文期刊>Antimicrobial agents and chemotherapy. >Pharmacodynamic activity of telithromycin at simulated clinically achievable free-drug concentrations in serum and epithelial lining fluid against efflux (mefE)-producing macrolide-resistant Streptococcus pneumoniae for which telithromycin MICs vary.
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Pharmacodynamic activity of telithromycin at simulated clinically achievable free-drug concentrations in serum and epithelial lining fluid against efflux (mefE)-producing macrolide-resistant Streptococcus pneumoniae for which telithromycin MICs vary.

机译:在模拟的临床上可达到的游离药物浓度下,血清和上皮衬里液中的泰利霉素对产生外排量(mefE)的大环内酯耐药肺炎链球菌的耐药性,特利霉素的MICs有所不同。

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摘要

The present study, using an in vitro model, assessed telithromycin pharmacodynamic activity at simulated clinically achievable free-drug concentrations in serum (S) and epithelial lining fluid (ELF) against efflux (mefE)-producing macrolide-resistant Streptococcus pneumoniae. Two macrolide-susceptible (PCR negative for both mefE and ermB) and 11 efflux-producing macrolide-resistant [PCR-positive for mefE and negative for ermB) S. pneumoniae strains with various telithromycin MICs (0.015 to 1 microg/ml) were tested. The steady-state pharmacokinetics of telithromycin were modeled, simulating a dosage of 800 mg orally once daily administered at time 0 and at 24 h (free-drug maximum concentration [C(max)] in serum, 0.7 microg/ml; half-life [t(1/2)], 10 h; free-drug C(max) in ELF, 6.0 microg/ml; t(1/2), 10 h). Starting inocula were 10(6) CFU/ml in Mueller-Hinton Broth with 2% lysed horse blood. Sampling at 0, 2, 4, 6, 12, 24, and 48 h assessed the extent of bacterial killing (decrease in log(10) CFU/ml versus initial inoculum). Free-telithromycin concentrations in serum achieved in the model were C(max) 0.9 +/- 0.08 microg/ml, area under the curve to MIC (AUC(0-24 h)) 6.4 +/- 1.5 microg . h/ml, and t(1/2) of 10.6 +/- 0.6 h. Telithromycin-free ELF concentrations achieved in the model were C(max) 6.6 +/- 0.8 microg/ml, AUC(0-24 h) 45.5 +/- 5.5 microg . h/ml, and t(1/2) of 10.5 +/- 1.7 h. Free-telithromycin S and ELF concentrations rapidly eradicated efflux-producing macrolide-resistant S. pneumoniae with telithromycin MICs up to and including 0.25 microg/ml and 1 microg/ml, respectively. Free-telithromycin S and ELF concentrations simulating C(max)/MIC > or = 3.5 and AUC(0-24 h)/MIC > or = 25 completely eradicated (> or =4 log(10) killing) macrolide-resistant S. pneumoniae at 24 and 48 h. Free-telithromycin concentrations in serum simulating C(max)/MIC > or = 1.8 and AUC(0-24 h)/MIC > or = 12.5 were bacteriostatic (0.1 to 0.2 log(10) killing) against macrolide-resistant S. pneumoniae at 24 and 48 h. In conclusion, free-telithromycin concentrations in serum and ELF simulating C(max)/MIC > or = 3.5 and AUC(0-24 h)/MIC > or = 25 completely eradicated (> or =4 log(10) killing) macrolide-resistant S. pneumoniae at 24 and 48 h.
机译:本研究使用体外模型,在模拟的临床可实现的血清(S)和上皮内衬液(ELF)中,针对产生外排量(mefE)的大环内酯类耐药性肺炎链球菌的自由药物浓度,评估了泰利霉素的药效学活性。测试了两种易感大环内酯类药物(对mefE和ermB均为PCR阴性)和11种产生外排耐药的大环内酯类药物(对mefE呈PCR阳性,而对ermB呈阴性)的肺炎链球菌菌株,并带有各种泰利霉素霉素(0.015至1 microg / ml)。 。对替利霉素的稳态药代动力学进行建模,模拟在0和24小时每天一次口服800 mg的剂量(血清中的最大药物最大浓度[C(max)]为0.7 microg / ml;半衰期) [t(1/2)],10小时; ELF中的游离药物C(max),6.0微克/毫升; t(1/2),10小时)。在Mueller-Hinton肉汤中以10%(6)CFU / ml开始接种,裂解血为2%。在0、2、4、6、12、24和48 h采样以评估细菌杀灭的程度(相对于初始接种量,log(10)CFU / ml减少)。模型中血清中的游离telithromycin浓度为C(max)0.9 +/- 0.08 microg / ml,曲线下面积至MIC(AUC(0-24 h))6.4 +/- 1.5 microg。 h / ml,t(1/2)为10.6 +/- 0.6 h。在模型中获得的不含Telithromycin的ELF浓度为C(max)6.6 +/- 0.8 microg / ml,AUC(0-24 h)45.5 +/- 5.5 microg。 h / ml,t(1/2)为10.5 +/- 1.7 h。游离telithromycin S和ELF的浓度迅速升高,分别使用高达0.25 microg / ml和1 microg / ml的telithromycin MIC消除了产生外排的大环内酯耐药肺炎链球菌。模拟C(max)/ MIC>或= 3.5且AUC(0-24 h)/ MIC>或= 25的完全根除(>或= 4 log(10)杀灭)大环内酯抗性S的游离telithromycin S和ELF浓度。在24和48小时出现肺炎。模拟C(max)/ MIC>或= 1.8和AUC(0-24 h)/ MIC>或= 12.5的血清中游离telithromycin的浓度对大环内酯耐药肺炎链球菌具有抑菌作用(杀灭0.1至0.2 log(10))。在24和48小时。总之,模拟C(max)/ MIC>或= 3.5和AUC(0-24 h)/ MIC>或= 25的血清和ELF中的游离telithromycin浓度已完全消除(>或= 4 log(10)杀灭)大环内酯耐药的肺炎链球菌在24和48小时。

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