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Potato Dextrose Agar Antifungal Susceptibility Testing for Yeasts and Molds: Evaluation of Phosphate Effect on Antifungal Activity of CMT-3

机译:酵母和霉菌的马铃薯右旋糖琼脂抗真菌药敏试验:评估磷酸盐对CMT-3的抗真菌活性的影响

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摘要

The broth macrodilution method (BMM) for antifungal susceptibility testing, approved by the National Committee for Clinical Laboratory Standards (NCCLS), was found to have deficiencies in testing of the antifungal activity of a new type of antifungal agent, a nonantibacterial chemically modified tetracycline (CMT-3). The high content of phosphate in the medium was found to greatly increase the MICs of CMT-3. To avoid the interference of phosphate in the test, a new method using potato dextrose agar (PDA) as a culture medium was developed. Eight strains of fungi, including five American Type Culture Collection strains and three clinical isolates, were used to determine the MICs of amphotericin B and itraconazole with both the BMM and the PDA methods. The MICs of the two antifungal agents determined with the PDA method showed 99% agreement with those determined with the BMM method within 1 log2 dilution. Similarly, the overall reproducibility of the MICs with the PDA method was above 97%. Three other antifungal agents, fluconazole, ketoconazole, and CMT-3, were also tested in parallel against yeasts and molds with both the BMM and the PDA methods. The MICs of fluconazole and ketoconazole determined with the PDA method showed 100% agreement within 1 log2 dilution of those obtained with the BMM method. However, the MICs of CMT-3 determined with the BMM method were as high as 128 times those determined with the PDA method. The effect of phosphate on the antifungal activity of CMT-3 was evaluated by adding Na2HPO4 to PDA in the new method. It was found that the MIC of CMT-3 against a Penicillium sp. increased from 0.5 μg/ml (control) to 2.0 μg/ml when the added phosphate was used at a concentration of 0.8 mg/ml, indicating a strong interference of Na2HPO4 with the antifungal activity of CMT-3. Except for fluconazole, all the other antifungal agents demonstrated clear end points among the yeasts and molds tested. Nevertheless, with its high reproducibility, good agreement with NCCLS proposed MIC ranges, and lack of interference of phosphate, the PDA method shows promise as a useful assay for antifungal susceptibility testing and screening for new antifungal agents, especially for drugs that may be affected by high (supraphysiologic) phosphate concentrations.
机译:经国家临床实验室标准委员会(NCCLS)批准的用于抗真菌药敏试验的肉汤大量稀释法(BMM)在检测新型抗真菌药(一种非细菌化学修饰的四环素)的抗真菌活性方面存在缺陷。 CMT-3)。发现培养基中高含量的磷酸盐可大大提高CMT-3的MIC。为避免磷酸盐干扰测试,开发了一种新的方法,该方法使用马铃薯葡萄糖琼脂(PDA)作为培养基。使用BMM和PDA方法,使用八种真菌菌株,包括五种美国典型培养物保藏中心菌株和三种临床分离株,来测定两性霉素B和伊曲康唑的MIC。用PDA方法测定的两种抗真菌剂的MIC在1 log2稀释度内显示与用BMM方法测定的MIC一致。同样,用PDA法测定的MIC的总体重现性高于97%。还使用BMM和PDA方法同时测试了三种其他抗真菌剂fluconazole,ketoconazole和CMT-3对抗酵母和霉菌。用PDA方法测定的氟康唑和酮康唑的MICs在用BMM方法测定的1 log2稀释度内显示100%一致。但是,用BMM方法测定的CMT-3的MIC高达用PDA方法测定的MIC的128倍。通过在新方法中向PDA中添加Na2HPO4,评估了磷酸盐对CMT-3的抗真菌活性的影响。发现CMT-3对青霉菌的MIC。当添加的磷酸盐浓度为0.8 mg / ml时,浓度从0.5μg/ ml(对照)增加到2.0μg/ ml,表明Na2HPO4对CMT-3的抗真菌活性产生了强烈干扰。除氟康唑外,所有其他抗真菌剂在测试的酵母和霉菌中均具有明确的终点。然而,PDA方法具有很高的重现性,与NCCLS拟议的MIC范围吻合良好,并且无磷酸盐干扰,因此有望作为抗真菌药敏试验和筛选新的抗真菌药,尤其是可能受药物影响的药物的有用检测方法。高(超生理)磷酸盐浓度。

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