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Published on: August 4, 2023
Biofilm formation by Propionibacterium acnes is a characteristic of invasive isolates
A Holmberg1, R Lood, M Mörgelin
1Department of Clinical Sciences, Division of Infection Medicine, Lund University, 221 84 Lund, Sweden.
Abstract:
Propionibacterium acnes is a common and probably underestimated cause of delayed joint prosthesis infection. Bacterial biofilm formation is central in the pathogenesis of infections related to foreign material, and P. acnes has been shown to form biofilm both in vitro and in vivo. Here, biofilm formation by 93 P. acnes isolates, either from invasive infections (n = 45) or from the skin of healthy people (n = 48), was analysed. The majority of isolates from deep infections produced biofilm in a microtitre model of biofilm formation, whereas the skin isolates were poor biofilm producers (p <0.001 for a difference). This indicates a role for biofilm formation in P. acnes virulence. The type distribution, as determined by sequencing of recA, was similar among isolates isolated from skin and from deep infections, demonstrating that P. acnes isolates with different genetic backgrounds have pathogenic potential. The biofilm formed on plastic and on bone cement was analysed by scanning electron microscopy (EM) and by transmission EM. The biofilm was seen as a 10-mum-thick layer covering the bacteria and was composed of filamentous as well as more amorphous structures. Interestingly, the presence of human plasma in solution or at the plastic surface inhibits biofilm formation, which could explain why P. acnes primarily infect plasma-poor environments of, for example, joint prostheses and cerebrospinal shunts. This work underlines the importance of biofilm formation in P. acnes pathogenesis, and shows that biofilm formation should be considered in the diagnosis and treatment of invasive P. acnes infections.
Insights
Propionibacterium acnes causes delayed joint infections by forming biofilms. Most infection-causing strains, unlike skin strains, readily form biofilms, highlighting its role in virulence.
Area of Science:
- Microbiology
- Infectious Diseases
- Biotechnology
Background:
- Propionibacterium acnes (P. acnes) is a significant cause of delayed joint prosthesis infections.
- Bacterial biofilm formation is crucial in the pathogenesis of foreign material-related infections.
- P. acnes has demonstrated biofilm formation capabilities both in vitro and in vivo.
Purpose of the Study:
- To analyze biofilm formation in P. acnes isolates from invasive infections versus healthy skin.
- To investigate the role of biofilm formation in P. acnes virulence.
- To characterize the biofilm structure and identify factors influencing its formation.
Main Methods:
- Analyzed biofilm formation in 93 P. acnes isolates using a microtitre model.
- Determined P. acnes type distribution via recA gene sequencing.
- Examined biofilm structure on plastic and bone cement using scanning and transmission electron microscopy (EM).
Main Results:
- The majority of isolates from deep infections produced robust biofilms, while skin isolates were poor producers (p < 0.001).
- recA sequencing showed similar type distribution across skin and deep infection isolates, indicating diverse pathogenic potential.
- Electron microscopy revealed a 10-mum-thick biofilm composed of filamentous and amorphous structures.
- Human plasma significantly inhibited P. acnes biofilm formation.
Conclusions:
- Biofilm formation is a key virulence factor for P. acnes in invasive infections.
- P. acnes preferentially colonizes plasma-poor environments like joint prostheses.
- Biofilm formation is critical for P. acnes pathogenesis and should be considered in diagnosis and treatment.
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