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首页> 外文期刊>Journal of Clinical Microbiology >Comparison of a photometric method with standardized methods of antifungal susceptibility testing of yeasts.
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Comparison of a photometric method with standardized methods of antifungal susceptibility testing of yeasts.

机译:酵母抗真菌药敏试验的光度法与标准方法的比较。

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We determined the fluconazole MICs for 101 clinical isolates of Candida and Cryptococcus neoformans using the macro- and microdilution methods recommended by the National Committee for Clinical Laboratory Standards. We compared the MICs obtained by these methods with those obtained by a photometric assay that quantified the reduction of 3-(4,5-dimethyl-2-thiazolyl)-2,5-diphenyl-2H-tetrazolium bromide (MTT) by viable fungi. The MIC determined by this method was defined as the highest fluconazole concentration associated with the first precipitous drop in optical density. For Candida, both the MTT and the microdilution methods demonstrated excellent agreement with the standard macrodilution method. The MTT method, however, generated MICs at 24 h that were comparable to those generated by the standard macrodilution method, whereas the microdilution method required 48 h. For C. neoformans, the levels of agreement between the MICs determined by the MTT and microdilution methods after 48 h and those determined by the standard 72-h macrodilution method were 94% (29 of 31) and 94% (29 of 31), respectively. The MTT method therefore provided results comparable to those of currently recommended methods and had the advantages of a more rapid turnaround time and potential adaptability to use as an automated system. Furthermore, the MICs determined by the MTT method were determined photometrically, thereby eliminating reader bias.
机译:我们使用国家临床实验室标准委员会推荐的宏观和微量稀释方法,确定了101株假丝酵母和新型隐球菌的氟康唑MIC。我们将通过这些方法获得的MIC与通过光度测定获得的MIC进行了比较,该方法定量了有活力的真菌对3-(4,5-二甲基-2-噻唑基)-2,5-二苯基-2H-四唑溴化物(MTT)的还原作用。通过这种方法测定的MIC定义为与光密度的第一个急剧下降有关的最高氟康唑浓度。对于念珠菌而言,MTT和微量稀释方法均与标准的宏观稀释方法显示出极好的一致性。然而,MTT方法在24小时内产生的MIC与标准的宏观稀释方法所产生的MIC相当,而微量稀释法则需要48小时。对于新孢梭菌,在48小时后通过MTT和微量稀释方法确定的MIC与标准72-h宏观稀释方法确定的MIC之间的一致性水平分别为94%(31中的29)和94%(31中的29),分别。因此,MTT方法提供的结果可与当前推荐的方法相媲美,并且具有更快的周转时间和潜在的适应性,可以用作自动化系统。此外,通过光度法确定了通过MTT方法确定的MIC,从而消除了读者的偏见。

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