Anni Bygvrå Hougaard
University of Copenhagen
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Featured researches published by Anni Bygvrå Hougaard.
Applied and Environmental Microbiology | 2015
Ying Wang; Anni Bygvrå Hougaard; Wilhelm Paulander; Leif H. Skibsted; Hanne Ingmer; Mogens L. Andersen
ABSTRACT Detection of free radicals in biological systems is challenging due to their short half-lives. We have applied electron spin resonance (ESR) spectroscopy combined with spin traps using the probes PBN (N-tert-butyl-α-phenylnitrone) and DMPO (5,5-dimethyl-1-pyrroline N-oxide) to assess free radical formation in the human pathogen Staphylococcus aureus treated with a bactericidal antibiotic, vancomycin or ciprofloxacin. While we were unable to detect ESR signals in bacterial cells, hydroxyl radicals were observed in the supernatant of bacterial cell cultures. Surprisingly, the strongest signal was detected in broth medium without bacterial cells present and it was mitigated by iron chelation or by addition of catalase, which catalyzes the decomposition of hydrogen peroxide to water and oxygen. This suggests that the signal originates from hydroxyl radicals formed by the Fenton reaction, in which iron is oxidized by hydrogen peroxide. Previously, hydroxyl radicals have been proposed to be generated within bacterial cells in response to bactericidal antibiotics. We found that when S. aureus was exposed to vancomycin or ciprofloxacin, hydroxyl radical formation in the broth was indeed increased compared to the level seen with untreated bacterial cells. However, S. aureus cells express catalase, and the antibiotic-mediated increase in hydroxyl radical formation was correlated with reduced katA expression and catalase activity in the presence of either antibiotic. Therefore, our results show that in S. aureus, bactericidal antibiotics modulate catalase expression, which in turn influences the formation of free radicals in the surrounding broth medium. If similar regulation is found in other bacterial species, it might explain why bactericidal antibiotics are perceived as inducing formation of free radicals.
Journal of Microbiological Methods | 2013
Anni Bygvrå Hougaard; Nils Arneborg; Mogens L. Andersen; Leif H. Skibsted
In this study, radicals in pure cultures of Lactobacillus acidophilus NCFM and Listeria innocua were detected in a quantitative way by electron spin resonance spectroscopy using spin trapping with 5,5-dimethyl-1-pyrroline-N-oxide (DMPO) or N-tert-butyl-α-phenylnitrone (PBN). No adverse effect of spin trap addition on viability was observed for any of the bacterial strains. L. acidophilus NCFM had a higher production of radicals than L. innocua when incubated in a growth medium. Furthermore, by using DMPO in a buffer system, the radicals produced by L. acidophilus NCFM could be identified as hydroxyl radicals. The presence of polyethylene glycol, impermeable for bacterial cells, decreased the signal intensity of the ESR spectrum of the DMPO-OH adduct in cultures of L. acidophilus NCFM and indicated quenching of hydroxyl radicals outside the bacteria. This suggests that radical production is an extracellular event for L. acidophilus NCFM.
International Journal of Dairy Technology | 2011
Anni Bygvrå Hougaard; Jannie S. Vestergaard; Camilla Varming; Wender L.P. Bredie; Richard Ipsen
Lwt - Food Science and Technology | 2013
Anni Bygvrå Hougaard; Anders J. Lawaetz; Richard Ipsen
International Journal of Dairy Technology | 2010
Marianne Hammershøj; Anni Bygvrå Hougaard; Jannie S. Vestergaard; Ole Poulsen; Richard Ipsen
International Journal of Dairy Technology | 2009
Anni Bygvrå Hougaard; Marianne Hammershøj; Jannie S. Vestergaard; Ole Poulsen; Richard Ipsen
Food Research International | 2016
Anni Bygvrå Hougaard; Helene Pindstrup; Nils Arneborg; Mogens L. Andersen; Leif H. Skibsted
International Dairy Journal | 2014
Camilla Varming; Anni Bygvrå Hougaard; Ylva Ardö; Richard Ipsen
International Dairy Journal | 2017
Abulimiti Kelimu; Denise Felix da Silva; Xiaolu Geng; Richard Ipsen; Anni Bygvrå Hougaard
International Dairy Journal | 2017
Denise Felix da Silva; Flemming H. Larsen; Anni Bygvrå Hougaard; Richard Ipsen