首页> 外文期刊>The Journal of Antimicrobial Chemotherapy >Pharmacodynamic activity of azithromycin against macrolide-susceptible and -resistant Streptococcus pneumoniae simulating clinically achievable free serum, epithelial lining fluid and middle ear fluid concentrations.
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Pharmacodynamic activity of azithromycin against macrolide-susceptible and -resistant Streptococcus pneumoniae simulating clinically achievable free serum, epithelial lining fluid and middle ear fluid concentrations.

机译:模拟临床上可达到的游离血清,上皮内衬液和中耳液浓度,阿奇霉素对大环内酯类易感和耐药肺炎链球菌的药效活性。

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BACKGROUND: The association between macrolide resistance mechanisms and bacteriological eradication of Streptococcus pneumoniae remains poorly studied. The present study, using an in vitro pharmacodynamic model, assessed azithromycin activity against macrolide-susceptible and -resistant S. pneumoniae simulating clinically achievable free serum (S), epithelial lining fluid (ELF) and middle ear fluid (MEF) concentrations. MATERIALS AND METHODS: Two macrolide-susceptible [PCR-negative for both mef(A) and erm(B)] and six macrolide-resistant [five mef(A)-positive/erm(B)-negative displaying various degrees of macrolide resistance and one mef(A)-negative/erm(B)-positive] S. pneumoniae were tested. Azithromycin was modelled simulating a dosage of 500 mg/250 mg by mouth, once a day [free S: maximum concentration (Cmax) 0.2 mg/L, t1/2 68 h; free ELF Cmax 1.0 mg/L, t1/2 68 h] and 10 mg/kg by mouth, once a day (free MEF: Cmax 1.0 mg/L, t1/2 68 h) using a one compartment model. Starting inocula were 1 x 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 log10 cfu/mL versus initial inoculum). RESULTS: Free azithromycin concentrations in serum, ELF and MEF simulating time above the MIC (T > MIC) of 100% [area under the curve to MIC (AUC0-24/MIC] > or = 36.7] were bactericidal (> or = 3 log10 killing) at 24 and 48 h versus macrolide-susceptible S. pneumoniae. Against macrolide-resistant S. pneumoniae, free serum concentrations providing T > MIC of 0% or AUC0-24/MIC < or = 1.1 demonstrated no bacterial inhibition followed by regrowth at 24 and 48 h, whereas free ELF and MEF providing T > MIC of 0% or AUC0-24/MIC of 4.6 produced a bacteriostatic (0.2-0.5 log10 killing at 24 h) effect with a mef(A) strain with an azithromycin MIC of 2 mg/L. Against mef(A)-positive S. pneumoniae strains with azithromycin MICs > or = 4 mg/L, no bacterial killing occurred at any time point and rapid regrowth was observed simulating ELF or MEF T > MIC of 0% or AUC0-24/MIC < or = 2.3. CONCLUSION: Azithromycin serum, ELF and MEF concentrations rapidly eradicated macrolide-susceptible S. pneumoniae but did not eradicate macrolide-resistant S. pneumoniae regardless of resistance phenotype.
机译:背景:对大环内酯类耐药机制与肺炎链球菌的细菌根除之间的关联研究仍很少。本研究使用体外药效学模型,通过模拟临床上可达到的游离血清(S),上皮内衬液(ELF)和中耳液(MEF)浓度,评估了阿奇霉素对大环内酯类易感和耐药肺炎链球菌的活性。材料和方法:两种对大环内酯敏感的[对mef(A)和erm(B)均为PCR阴性]和对6种耐大环内酯的[5个对mef(A)呈阳性/对erm(B)呈阴性的化合物,表现出不同程度的对大环内酯的抵抗力并测试了一个mef(A)阴性/ erm(B)阳性]肺炎链球菌。对阿奇霉素进行建模,模拟每天口服一次500 mg / 250 mg的剂量[游离S:最大浓度(Cmax)0.2 mg / L,t1 / 2 68小时;使用单隔室模型,每天一次,口服一次的游离ELF Cmax 1.0 mg / L,t1 / 2 68 h]和10 mg / kg(一次免费的MEF:Cmax 1.0 mg / L,t1 / 2 68 h)。在含2%溶解马血的Mueller-Hinton肉汤中,起始接种量为1 x 10(6)cfu / mL。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,log10 cfu / mL降低)。结果:高于MIC(T> MIC)100%[至MIC曲线下面积(AUC0-24 / MIC]>或= 36.7)的时间,血清中的自由阿奇霉素浓度,ELF和MEF模拟时间具有杀菌作用(>或= 3与大环内酯敏感的肺炎链球菌相比,在24和48小时时log10杀灭)针对抗大环内酯的肺炎链球菌,游离血清浓度提供T> MIC为0%或AUC0-24 / MIC <或= 1.1时,无细菌抑制作用,随后在24和48小时再生长,而游离ELF和MEF的T> MIC为0%或AUC0-24 / MIC为4.6,则产生了抑菌作用(在24 h杀死0.2-0.5 log10),而mef(A)菌株具有阿奇霉素的MIC为2 mg / L。针对阿奇霉素MIC>或= 4 mg / L的mef(A)阳性肺炎链球菌菌株,在任何时间点均未发生细菌杀伤现象,并且模拟ELF或MEF T> MIC观察到快速再生长0%或AUC0-24 / MIC <或= 2.3。结论:阿奇霉素血清,ELF和MEF浓度可迅速根除大环内酯易感性肺炎链球菌,但不论耐药表型如何,均未根除对大环内酯类耐药的肺炎链球菌。

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