MALDI-TOF质谱法鉴定临床相关厌氧菌的直接涂片法与化学提取法的比较

David Shafer , Hao Liu , Jinying Dong , Wei Liu , Jason Loft , Tony Phelps , Yang Zhang
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引用次数: 4

摘要

采用化学萃取和直接涂片技术对Bruker Biotyper MALDI-TOF MS (Biotyper)系统进行厌氧细菌鉴定。方法采用两种方法对36种216株厌氧菌进行分析。采用16S rDNA序列分析解决差异。结果化学提取法鉴定出202/216株(93.5%),其中属和种同时鉴定的176株(81.5%)(得分>2.00);另有26株(12%)仅锁定属(得分在1.70 ~ 2.00之间)。直接涂片检出厌氧菌194/216株(89.8%),属和种(分)均确定155株(71.7%);2.0株,而39株(18%)仅鉴定为属(得分在1.70 ~ 2.00之间)。未鉴定菌株14株(score <化学提取后的MALDI-TOF MS鉴定结果为1.70),而直接涂片法未鉴定出22株。虽然直接涂片在评分值>2.00上有较少的分离数,但总体鉴定差异无统计学意义(0.05 <P & lt;0.1)。结论采用直接涂片法的maldi - tof MS鉴定效果优于标准化学提取法。它可能是一种可接受的替代化学提取方法的常规鉴定厌氧细菌在医学微生物学实验室。
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Comparison of direct smear and chemical extraction methods for MALDI-TOF mass spectrometry identification of clinical relevant anaerobic bacteria

Background

The Bruker Biotyper MALDI-TOF MS (Biotyper) system was evaluated for identification of anaerobic bacteria by chemical extraction and the direct smear technique.

Method

A total of 216 strains of anaerobic bacteria representing 36 species were analyzed by two methods. 16S rDNA sequence analysis was used to resolve discrepancies.

Results

The results showed that 202/216 (93.5%) strains were correctly identified following chemical extraction, among them, 176 strains (81.5%) were secured to both genus and species (score > 2.00); another 26 strains (12%) were secured to genus only (score between 1.70 and 2.00). Following direct smear, 194/216 (89.8%) anaerobic bacteria were identified, 155 strains (71.7%) were secured to both genus and species (score) > 2.0 whereas 39 (18%) strains were identified to genus only (score between 1.70 and 2.00). Fourteen strains were not identified (score < 1.70) by MALDI-TOF MS following chemical extraction whereas 22 strains were not identified with the direct smear technique. Although direct smear had a less isolate number for score values >2.00, However the overall identification differences were not statistically significant (0.05 < P < 0.1).

Conclusion

MALDI-TOF MS identification following the direct smear technique appears to be non-inferior to standard chemical extraction. It may be an acceptable alternative to chemical extraction methods for routine identification of anaerobic bacteria in a medical microbiology laboratory.

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