Pseudomonas aeruginosa uses T3SS to inhibit diabetic wound healing
Josef Goldufsky1, Stephen J Wood1, Vijayakumar Jayaraman1
1Department of Immunology/Microbiology, Rush University Medical Center, Chicago, Illinois.
Abstract:
Diabetic foot ulcers are responsible for more hospitalizations than any other complication of diabetes. Bacterial infection is recognized as an important factor associated with impaired healing in diabetic ulcers. Pseudomonas aeruginosa is the most frequently detected Gram-negative pathogen in diabetic ulcers. P. aeruginosa infection has been shown to impair healing in diabetic wounds in a manner that correlates with its ability to form biofilm. While the majority of infections in diabetic ulcers are biofilm associated, 33% of infections are nonbiofilm in nature. P. aeruginosa is the most prevalent Gram-negative pathogen in all diabetic wound types, which suggests that the deleterious impact of P. aeruginosa on healing in diabetic wounds goes beyond its ability to form biofilm and likely involves other factors. The Type III Secretion System (T3SS) virulence structure is required for the pathogenesis of all P. aeruginosa clinical isolates, suggesting that it may also play a role in the inhibition of wound repair in diabetic skin ulcers. We evaluated the role of T3SS in mediating P. aeruginosa-induced tissue damage in the wounds of diabetic mice. Our data demonstrate that P. aeruginosa establishes a robust and persistent infection in diabetic wounds independent of its ability to form biofilm and causes severe wound damage in a manner that primarily depends on its T3SS.
Insights
Pseudomonas aeruginosa infections in diabetic foot ulcers cause significant damage. The study found that the Type III Secretion System (T3SS) is crucial for this bacterial virulence, independent of biofilm formation.
Area of Science:
- Microbiology
- Diabetology
- Wound Healing
Background:
- Diabetic foot ulcers lead to frequent hospitalizations.
- Bacterial infections, particularly Pseudomonas aeruginosa, impair diabetic ulcer healing.
- P. aeruginosa's role in healing impairment extends beyond biofilm formation.
Purpose of the Study:
- To investigate the role of the Type III Secretion System (T3SS) in P. aeruginosa-induced damage in diabetic wounds.
- To determine if T3SS contributes to impaired wound repair independently of biofilm formation.
Main Methods:
- Evaluation of P. aeruginosa's role in mediating tissue damage in diabetic mouse wound models.
- Assessment of T3SS contribution to infection persistence and wound damage.
Main Results:
- P. aeruginosa establishes persistent infections in diabetic wounds irrespective of biofilm formation.
- The bacterium causes severe wound damage.
- This damage is primarily mediated by the T3SS.
Conclusions:
- P. aeruginosa infection in diabetic wounds is robust and persistent.
- The Type III Secretion System is a key factor in P. aeruginosa-induced diabetic wound damage.
- Targeting T3SS may offer a novel therapeutic strategy for diabetic wound infections.


