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Antifungal Susceptibility Testing of Dermatophytes: Establishing a Medium for Inducing Conidial Growth and Evaluation of Susceptibility of Clinical Isolates

机译:皮肤癣菌的抗真菌药敏试验:建立诱导分生孢子生长和评估临床分离株药敏性的培养基

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A standardized reference method for dermatophyte in vitro susceptibility testing is lacking. In a previous study, Norris et al. (H. A. Norris, B. E. Elewski, and M. A. Ghannoum, J. Am. Acad. Dermatol. 40(6, part 2):S9–S13) established the optimal medium and other growth variables. However, the earlier study did not address two issues: (i) selection of an optimal medium for conidial formation by dermatophytes and (ii) validation of the method with a large number of dermatophytes. The present study addresses these two points. To select which agar medium best supported conidial growth, representative isolates of dermatophytes were grown on different agars. Preliminary experiments showed that only oatmeal cereal agar supported the production of conidia by Trichophyton rubrum. We tested the abilities of 251 T. rubrum isolates to form conidia using three different cereal agars and potato dextrose agar. Overall, oatmeal cereal and rice agar media were comparable in their abilities to support T. rubrum conidial growth. Next, we used the oatmeal cereal agar for conidial formation along with the optimal conditions for dermatophyte susceptibility testing proposed by Norris et al. and determined the antifungal susceptibilities of 217 dermatophytes to fluconazole, griseofulvin, itraconazole, and terbinafine. Relative to the other agents tested, terbinafine possessed the highest antifungal activity against all of the dermatophytes. The mean ± standard error of the mean MICs of fluconazole, itraconazole, terbinafine, and griseofulvin were 2.07 ± 0.29, 0.13 ± 0.01, 0.002 ± 0.0003, and 0.71 ± 0.05 μg/ml, respectively. This study is the first step in the identification of optimal conditions that could be used for the standardization of the antifungal susceptibility testing method for dermatophytes. Inter- and intralaboratory agreement as well as clinical correlations need to be established.
机译:缺乏皮肤癣菌体外药敏试验的标准参考方法。在先前的研究中,Norris等人。 (H. A. Norris,B。E. Elewski和M. A. Ghannoum,J。Am。Acad。Dermatol。40(6,第2部分):S9–S13)确定了最佳培养基和其他生长变量。但是,较早的研究并未解决两个问题:(i)选择一种由皮肤真菌形成分生孢子的最佳培养基,以及(ii)用大量皮肤真菌来验证该方法。本研究解决了这两点。为了选择哪种琼脂培养基最能支持分生孢子的生长,在不同的琼脂上培养了代表性的皮肤真菌。初步实验表明,只有燕麦谷物琼脂可以支持 Trichophyton rubrum 产生的分生孢子。我们测试了251个 T的能力。用三种不同的谷物琼脂和马铃薯葡萄糖琼脂将红花分离成孢子。总体而言,燕麦谷物和米琼脂培养基在支持 T方面具有可比性。红孢子生孢子生长。接下来,我们将燕麦谷物琼脂用于分生孢子形成,并结合Norris等人提出的最佳皮肤真菌敏感性试验条件。并确定了217种皮肤真菌对氟康唑,灰黄霉素,伊曲康唑和特比萘芬的抗真菌药敏性。相对于测试的其他药物,特比萘芬对所有皮肤真菌具有最高的抗真菌活性。氟康唑,伊曲康唑,特比萘芬和灰黄霉素的平均MIC的平均±标准误差分别为2.07±0.29、0.13±0.01、0.002±0.0003和0.71±0.05μg/ ml。这项研究是确定最佳条件的第一步,该条件可用于皮肤真菌的抗真菌药敏试验方法的标准化。需要建立实验室之间和实验室之间的协议以及临床相关性。

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