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首页> 外文期刊>The Japanese journal of antibiotics >Comparison of foyr reading methods of broth microdilufion based on the Clinical and Laboratory Standards Institute M27-A3 method for Candida spp.
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Comparison of foyr reading methods of broth microdilufion based on the Clinical and Laboratory Standards Institute M27-A3 method for Candida spp.

机译:基于临床和实验室标准研究所M27-A3念珠菌SPP方法比较肉汤微量血液的比较。

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摘要

This study aimed to compare the susceptibilities of 5 reference strains and 28 isolates of Candida spp., to micafungin, amphotericin B, flucytosine, fluconazole, itraconazole, voriconazole, and miconazole, obtained by visually determined minimum inhibitory concentration (MIC) using the agitation method (V-A), as described in the Clinical and Laboratory Standards Institute M27-A3 document; visual determinations without agitation (V-NA); and spectrophotometric determinations for the presence or absence of agitation (SP-A and SP-NA, respectively). Our results indicate that when the V-NA, SP-A, and SP-NA-the 3 alternative microdilution procedures for MIC endpoint determinations-were compared with the V-A, excellent agreements were observed between the V-NA and V-A rather than with the spectrophotometric methods (between the SP-A or SP-NA, and V-A). Furthermore, many errors occurred while using the SP-A method in the presence of agitation and some isolates showed major errors. Three of 5 isolates that showed very major errors between the spectrophotometric SP-A or SP-NA, and the reference V-A method were trailing isolates. Therefore, it was suggested that the MICs of Candida spp. obtained by the V-NA method were more precise than those by the conventional SP-A method.
机译:该研究旨在比较5参考菌株的敏感性和28个分离物的Candida SPP的敏感性。,通过使用搅拌方法的最小抑制浓度(MIC)获得的Micafungin,两性霉素B,氟藻胺,氟康唑,伊丙唑,氟康唑和咪康唑(VA),如临床和实验室标准研究所M27-A3文件所述;无搅拌的视觉测定(V-Na);和分光光度法确定搅拌的存在或不存在(SP-A和SP-NA)。我们的结果表明,当V-NA,SP-A和SP-NA-3替代的微量微稀释程序与VA进行比较时,V-NA和VA之间观察到优异的协议而不是与分光光度法(SP-A或SP-NA和VA之间)。此外,在使用搅拌的情况下使用SP-A方法时发生了许多错误,并且一些分离物显示出主要误差。在分光光度法SP-A或SP-NA之间显示出非常重大误差中的三种分离物中的三种,以及参考V-A方法是尾随隔离。因此,有人建议念珠菌SPP的麦克风。通过V-Na方法获得的比传统SP-A方法更精确。

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