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通过将 Sepsityper 标本处理和 Microflex 分析与基质辅助激光解吸电离生物分析仪系统相结合,可直接从阳性血培养物中提高酵母菌种的鉴定能力。

Improved identification of yeast species directly from positive blood culture media by combining Sepsityper specimen processing and Microflex analysis with the matrix-assisted laser desorption ionization Biotyper system.

机构信息

Department of Pathology and Medicine, Vanderbilt University Medical Center, Nashville, Tennessee 37232-5310, USA.

出版信息

J Clin Microbiol. 2011 Jul;49(7):2528-32. doi: 10.1128/JCM.00339-11. Epub 2011 May 4.

Abstract

Current methods for identification of yeast from blood cultures may take several days after these microorganisms have been observed by Gram stain smears from positive blood cultures. We explored the use of a matrix-assisted laser desorption ionization (MALDI) Biotyper system in combination with Sepsityper specimen processing and Microflex analysis for improved detection and identification of yeast species directly from positive blood culture specimens demonstrating yeast-like organisms by Gram stain. The limit of detection of yeast species in blood culture medium was determined to be 5.9 × 10(5) CFU, with intra- and interstrain coefficients of variation of 1.8 to 3.6% and 2.9%, respectively. A total of 42 yeast-containing positive blood culture specimens were processed, and the identification results were compared to those obtained by routinely used phenotypic methods. Specimens with discrepant results between the Biotyper and phenotypic methods were identified on the basis of internal transcribed spacer region sequencing. The MALDI Biotyper system correctly identified the 42 specimens to species level, including 28 (66.7%) Candida albicans, 8 (19.0%) Candida parapsilosis, and 5 (11.9%) Candida tropicalis isolates and 1 (2.4%) Cryptococcus neoformans isolate. The entire procedure, from specimen extraction to final result reporting, can be completed within 1 h. Our data indicated that the Sepsityper specimen processing and Microflex analysis by the MALDI Biotyper system provide a rapid and reliable tool for yeast species identification directly from positive blood culture media.

摘要

目前,从血液培养物中鉴定酵母的方法可能需要在革兰氏染色涂片观察到这些微生物后的几天时间。我们探索了使用基质辅助激光解吸电离(MALDI)生物型系统结合 Sepsityper 标本处理和 Microflex 分析,以直接从革兰氏染色显示酵母样生物体的阳性血培养标本中提高酵母种的检测和鉴定。确定了血培养物中酵母种的检测限为 5.9×10(5)CFU,内株和株间变异系数分别为 1.8%至 3.6%和 2.9%。总共处理了 42 个含酵母的阳性血培养标本,并将鉴定结果与常规使用的表型方法进行比较。根据内部转录间隔区测序,对生物型和表型方法之间结果不一致的标本进行鉴定。MALDI 生物型系统正确鉴定了 42 个标本到种水平,包括 28 株(66.7%)白色念珠菌、8 株(19.0%)近平滑念珠菌和 5 株(11.9%)热带念珠菌以及 1 株(2.4%)新型隐球菌。从标本提取到最终结果报告的整个过程可以在 1 小时内完成。我们的数据表明,Sepsityper 标本处理和 MALDI 生物型系统的 Microflex 分析为直接从阳性血培养物中鉴定酵母种提供了一种快速可靠的工具。

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