首页> 美国卫生研究院文献>Antimicrobial Agents and Chemotherapy >Anidulafungin Is Fungicidal and Exerts a Variety of Postantifungal Effects against Candida albicans C. glabrata C. parapsilosis and C. krusei isolates
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Anidulafungin Is Fungicidal and Exerts a Variety of Postantifungal Effects against Candida albicans C. glabrata C. parapsilosis and C. krusei isolates

机译:Anidulafungin具有杀真菌作用对白念珠菌光滑念珠菌副念珠菌和克鲁斯梭菌均具有多种真菌后作用。

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摘要

Anidulafungin targets the cell walls of Candida species by inhibiting β-1,3-glucan synthase, thereby killing isolates and exerting prolonged postantifungal effects (PAFEs). We performed time-kill and PAFE experiments on Candida albicans (n = 4), C. glabrata (n = 3), C. parapsilosis (n = 3), and C. krusei (n = 2) isolates and characterized the PAFEs in greater detail. MICs were 0.008 to 0.125 μg/ml against C. albicans, C. glabrata, and C. krusei and 1.0 to 2.0 μg/ml against C. parapsilosis. During time-kill experiments, anidulafungin caused significant kills at 16× MIC (range, log 2.68 to 3.89) and 4× MIC (log 1.87 to 3.19), achieving fungicidal levels (≥log 3) against nine isolates. A 1-hour drug exposure during PAFE experiments resulted in kills ranging from log 1.55 to 3.47 and log 1.18 to 2.89 (16× and 4× MIC, respectively), achieving fungicidal levels against four isolates. Regrowth of all 12 isolates was inhibited for ≥12 h after drug washout. Isolates of each species collected 8 h after a 1-hour exposure to anidulafungin (16× and 4× MIC) were hypersusceptible to sodium dodecyl sulfate (0.01 to 0.04%) and calcofluor white (40 μg/ml). Moreover, PAFEs were associated with major cell wall disturbances, as evident in electron micrographs of viable cells, and significant reductions in adherence to buccal epithelial cells (P ≤ 0.01). Finally, three of four PAFE isolates tested were hypersusceptible to killing by J774 macrophages (P ≤ 0.007). Our data suggest that the efficacy of anidulafungin in the treatment of candidiasis might stem from both direct fungicidal activity and indirect PAFEs that lessen the ability of Candida cells to establish invasive disease and to persist within infected hosts.
机译:Anidulafungin通过抑制β-1,3-葡聚糖合酶靶向念珠菌物种的细胞壁,从而杀死分离株并发挥延长的真菌后作用(PAFE)。我们在白色念珠菌(n = 4),光滑念珠菌(n = 3),副念珠菌(n = 3)和克鲁氏梭菌(n = 2)分离株上进行了时间杀灭和PAFE实验,并对PAFEs进行了表征更详细的信息。相对于白色念珠菌,光滑念珠菌和克鲁斯梭菌,MICs为0.008至0.125μg/ ml,对于副寄生念珠菌,MICs为1.0至2.0μg/ ml。在时间杀灭实验中,阿地芬净在16倍MIC(范围,对数2.68至3.89)和4倍MIC(对数1.87至​​3.19)处引起明显的杀灭,对9个分离株达到杀真菌水平(≥log3)。在PAFE实验期间暴露1小时的药物导致的杀灭范围为log 1.55至3.47和log 1.18至2.89(分别为16x和4x MIC),对四种分离株达到杀真菌水平。药物洗脱后,所有12个分离株的再生长均被抑制≥12h。暴露于阿地芬净(1x和4x MIC)1小时后8小时收集的每个物种的分离物对十二烷基硫酸钠(0.01至0.04%)和钙氟荧光白(40μg/ ml)高度敏感。此外,PAFEs与主要的细胞壁紊乱有关,这在活细胞的电子显微照片中很明显,并且对颊上皮细胞的粘附性显着降低(P≤0.01)。最后,测试的四个PAFE分离物中的三个对J774巨噬细胞的杀伤作用极高(P≤0.007)。我们的数据表明,阿尼芬净在治疗念珠菌病中的功效可能源于直接的杀真菌活性和间接的PAFEs,它们降低了念珠菌细胞建立侵袭性疾病并在感染宿主内持续存在的能力。

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