| Literature DB >> 24720586 |
Asa Johansson, Josefine Ekelöf, Christian G Giske1, Martin Sundqvist.
Abstract
BACKGROUND: The increase in carbapenemase producing Enterobacteriaceae and Pseudomonas aeruginosa is a significant threat to modern medicine. A rapid detection of carbapenemase production in Klebsiella pneumoniae and Pseudomonas aeruginosa is of importance for the institution of correct antibiotic treatment and infection control measures.Entities:
Mesh:
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Year: 2014 PMID: 24720586 PMCID: PMC3997439 DOI: 10.1186/1471-2180-14-89
Source DB: PubMed Journal: BMC Microbiol ISSN: 1471-2180 Impact factor: 3.605
Figure 1Mass spectrum showing the non hydrolysed pattern of ertapenem (top), the full hydrolysis of ertapenem of a KPC producing after 15 min (middle) and the effect of the supplement of APBA inhibiting the KPC mediated hydrolysis of ertapenem (bottom).
Figure 2Mass spectrum showing the non hydrolysed pattern of ertapenem (top), The non hydrolysed pattern of ertapenem after 15 min incubation together with NDM producing (middle top), the full hydrolysis of ertapenem of a NDM-producing after 120 min (middle bottom) and the effect of the supplement of DPA inhibiting the NDM mediated hydrolysis of ertapenem (bottom).
Figure 3Mass spectrum showing the non hydrolysed pattern of ertapenem (top), The non hydrolysed pattern of ertapenem after 15 min incubation together with VIM producing (middle top), the full hydrolysis of ertapenem of a VIM-producing after 120 min (middle bottom) and the effect of the supplement of DPA inhibiting the VIM mediated hydrolysis of ertapenem (bottom).
A synthesis of the results showing the basic data in relation to hydrolysis
| KPC-2 (4) | | 4 - >32 | 4 - >32 | 2 - >32 | ||
| KPC-3 (2) | 10/10 | |||||
| KPC (4) | 15 min | |||||
| VIM-1 (3) | 3/3 | >32 | 32 - >32 | 8 - >32 | ||
| 120 min | ||||||
| NDM-1 (4) | 4/4 | >32 | >32 | >32 | ||
| 120 min | ||||||
| Classic ESBL (6) | 0/6 | na | na | 0.016 - 0.125 | ||
| 120 min | ||||||
| Acquired AmpC 6) | 0/6 | 0.064 - 0.125 | 0.064 - 0.25 | 0.032 - 2 | ||
| 120 min | ||||||
| VIM-1 (2) | | >32 | >32 | >32 | ||
| VIM-2 (6) | 6/10 | |||||
| VIM (2) | 120 min | |||||
| IMP-14 (1) | | |||||
| Carba R | 0/10 | 8 - >32 | 4 - >32 | >32 | ||
| (non-MBL) (10) | 120 min | |||||
| OXA 23-like (n = 2) | 4/4 | >32 | >32 | >32 | ||
| OXA 24-like (n = 1) | 24 h | |||||
| OXA 58-like (n = 1) | | |||||
| VIM-1 (3) | 2/4 | >32 | >32 | >32 | ||
| VIM-2 (1) | 120 min | |||||
| OXA-48 (3) | 3/3 24 h | 4 - >32 | 4 - >32 | 1 - >32 | ||
| KPC-2 (4) | 4/4 15 min | >32 | >32 | >32 | ||
| VIM-1 (2) | 2/2 120 min | >32 | >32 | >32 | ||
| NDM-1 (2) | 2/2 | >32 | >32 | >32 | ||
| 120 min | ||||||
| OXA-48 (1) | 1/1 24 h | 16 | 8 | 4 | ||
| CTX-M-15 (n = 1) | 0/2 | 0.125 - 0.25 | 0.25 - 0.5 | 0.064 - 0.125 | ||
| CTX-M-15+ CIT (n = 1) | 120 min and 24 h |
*peaks m/z: 476.5, 498.5, 520.5 and 542.5 Da.
A synthesis of the results showing the species, resistance mechanism and MIC range in the test panel and validation panel in relation to the results in the hydrolysis assay based on ertapenem.