Morten Kjos
Associate professor
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About
Morten Kjos is an Associate Professor at the Norwegian University of Life Sciences in Norway. His research interests encompass microbial physiology and genetics, particularly focusing on the behavior of bacteria in various environments, including their interactions and resistance mechanisms. Recent publications include studies on transcriptomic responses in bacteria, antimicrobial strategies involving bacteriocins, and the genetic analysis of Staphylococcus aureus fitness determinants.
Articles (26)
Exploring the feasibility of bacteriocins EntK1 and EntEJ97s in treatment of systemic vancomycin resistant enterococci infections in mice
Aims Enterocins K1 and EJ97 have specific antimicrobial activity against Enterococcus faecium and Enterococcus faecalis, respectively. The aim of this study was to investigate the utility of these enterocins for in vivo treatment of systemic enterococcal infections. Methods and results The antimicrobial effect in blood was analysed and compared against the effect in saline. Colony forming unit counts revealed that the enterocins killed all the bacteria within 1 hour. Additionally, the bactericidal effect against E. faecalis was more rapid in blood, indicating a possible synergy between EntEJ97 and blood. Importantly, no enterocin resistant mutants emerged in these experiments. Injecting the enterocins intraperitoneally in an in vivo mouse model and using fluorescence and minimum inhibitory concentration determination to estimate concentrations of the peptides in plasma, indicate that the enterocins exist in circulation in therapeutic concentrations. Alanine aminotransferase detection, and haemolysis analysis indicates that there is no detectable liver damage or haemolytic effect after injection. Conclusions The study revealed that EntK1 and EntEJ97 are able to kill all bacteria ex vivo in the presence of blood. In vivo experiments determine that the enterocins exist in circulation in therapeutic concentrations without causing liver damage or haemolysis. Future experiments should test these peptides for treatment of infection in a relevant in vivo model.
Year:
2024
Collaborators (9)
Stavros Panagiotou
Lecturer
The University of Manchester
Harald Carlsen
Norwegian University of Life Sciences
Christian Lentz
Professor at UiT The Arctic University of Norway
UiT The Arctic University of Norway
Magnus Arntzen
Norwegian University of Life Sciences (NMBU)
Jan-Willem Veening
Professor
University of Lausanne
Åsa Frostegård
Professor
Norwegian University of Life Sciences
Marie Yang
University of Liverpool
Daniel Straume
Norwegian University of Life Sciences
Dzung B. Diep
Norwegian University of Life Sciences

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