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培养基成分对酵母大管稀释法抗真菌药敏试验结果的影响。

Effect of medium composition on results of macrobroth dilution antifungal susceptibility testing of yeasts.

作者信息

Doern G V, Tubert T A, Chapin K, Rinaldi M G

出版信息

J Clin Microbiol. 1986 Oct;24(4):507-11. doi: 10.1128/jcm.24.4.507-511.1986.

Abstract

A total of 62 different clinical yeast isolates were examined for susceptibility to four antifungal agents, amphotericin B, 5-fluorocytosine (5-FC), ketoconazole, and miconazole, using synthetic amino acid medium-fungi (SAAM-F), buffered yeast nitrogen broth (BYNB), Kimmig broth, casein-yeast-glucose broth (CYG), antibiotic medium 3-FDA (ANTI-3), and tryptic soy broth (TSB). A macrobroth dilution format was used with MICs determined after incubation for 24 and 48 h. All analyses were performed in duplicate. In general, MICs were more reproducible after 48 h of incubation. Furthermore, with certain medium-antifungal agent combinations, MICs determined after incubation for 48 h were significantly higher than those determined after 24 h. For instance, with 5-FC irrespective of the medium used, greater than 25% of all 48-h MICs were more than one twofold dilution higher than the corresponding MICs determined after incubation for 24 h. Similar observations were made with amphotericin B when tested with BYNB and CYG and with the imidazoles when tested in all of the media except CYG. The actual MICs obtained with the different antifungal agents were clearly influenced by the test medium used. The rank order of amphotericin B MICs according to test medium was as follows: BYNB greater than SAAM-F = Kimmig = CYG = ANTI-3 = TSB. With 5-FC, the following pattern was observed: Kimmig = ANTI-3 greater than SAAM-F = CYG = TSB greater than BYNB. For both imidazoles, ketoconazole and miconazole, the rank order of MICs according to test medium was BYNB = Kimmig = CYG = ANTI-3 = TSB greater than SAAM-F. The results of this investigation suggested that broth dilution susceptibility testing of yeasts is best performed with an incubation period of 48 h. Furthermore, medium composition can significantly influence the results of such testing.

摘要

使用合成氨基酸培养基-真菌(SAAM-F)、缓冲酵母氮肉汤(BYNB)、金米格肉汤、酪蛋白-酵母-葡萄糖肉汤(CYG)、抗生素培养基3-FDA(ANTI-3)和胰蛋白胨大豆肉汤(TSB),对总共62种不同的临床酵母分离株进行了四种抗真菌药物两性霉素B、5-氟胞嘧啶(5-FC)、酮康唑和咪康唑的敏感性检测。采用大管稀释法,在孵育24小时和48小时后测定最低抑菌浓度(MIC)。所有分析均重复进行。一般来说,孵育48小时后MIC的重现性更好。此外,对于某些培养基-抗真菌药物组合,孵育48小时后测定的MIC显著高于24小时后测定的MIC。例如,对于5-FC,无论使用何种培养基,所有48小时MIC中有超过25%比孵育24小时后测定的相应MIC高出一倍以上的稀释度。在用BYNB和CYG检测两性霉素B以及在除CYG之外的所有培养基中检测咪唑类药物时,也观察到了类似的现象。使用的不同抗真菌药物获得的实际MIC明显受到所用测试培养基的影响。根据测试培养基,两性霉素B的MIC排序如下:BYNB>SAAM-F = 金米格 = CYG = ANTI-3 = TSB。对于5-FC,观察到以下模式:金米格 = ANTI-3>SAAM-F = CYG = TSB>BYNB。对于两种咪唑类药物酮康唑和咪康唑,根据测试培养基的MIC排序为BYNB = 金米格 = CYG = ANTI-3 = TSB>SAAM-F。这项研究的结果表明,酵母的肉汤稀释药敏试验最好在孵育48小时后进行。此外,培养基成分可显著影响此类检测的结果。

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