| Literature DB >> 21503840 |
M Reil1, M Erhard, E J Kuijper, M Kist, H Zaiss, W Witte, H Gruber, S Borgmann.
Abstract
During the last decade, Clostridium difficile infection (CDI) increased markedly inside as well as outside of hospitals. In association with the occurrence of new hypervirulent C. difficile strains, CDI became more important. Until now typing of C. difficile strains has been enabled by PCR-ribotyping. However, this method is restricted to specialized laboratories combined with high maintenance cost. Therefore, we tested MALDI-TOF mass spectrometry for typing of C. difficile to provide a fast method for surveillance of CDI. Using a standard set of 25 different C. difficile PCR ribotypes a database was made by different mass spectra recorded in the SARAMIS software (AnagnosTec, Zossen, Germany). The database was validated with 355 C. difficile strains belonging to 29 different PCR ribotypes collected prospectively from all submitted feces samples in 2009. The most frequent PCR ribotypes were type 001 (70%), 027 (4.8%) and 078/126 (4.7%). All three types were recognized by MALDI-TOF MS. We conclude that an extended MALDI-TOF system was capable to recognize specific markers for ribotypes 001, 027 and 078/126 allowing an effective identification of these strains.Entities:
Mesh:
Year: 2011 PMID: 21503840 PMCID: PMC3191295 DOI: 10.1007/s10096-011-1238-6
Source DB: PubMed Journal: Eur J Clin Microbiol Infect Dis ISSN: 0934-9723 Impact factor: 3.267
Number of tested C. difficile isolates (double measurement) and distribution of the detected masses
green specific masses of PCR-ribotype 001, magenta specific masses of PCR-ribotype 027, blue specific masses of PCR-ribotypes 078 and 126, yellow highly frequent masses among sporadic strains, RT ribotype, m/z mass-to-charge-relation
Fig. 1Overview of the mass spectra of C. difficile PCR-ribotypes 001 (A), 027 (B) and 126/078 (C) in comparison to the mass spectrum of Clostridium orbiscindens (D). Each peak represents the mass of an intact protein detected in the analyses while the height of the peak depends on the amount of proteins measured. Specific masses are indicated by stars. RT ribotype, Int. intensity, m/z mass-to-charge-relation