Fibrinolytic-deficiencies predispose hosts to septicemia from a catheter-associated UTI.
Ana Lidia Flores-MirelesJonathan MolinaKurt KohlerChristopher GagerMarissa AndersenEllsa WongsoElizabeth R LucasAndrew PaikWei XuDeborah DonahueKarla BergeronAleksandra KlimMichael CaparonScott J HultgrenAlana DesaiVictoria PloplisMatthew FlickFrancis J CastellinoPublished in: Research square (2023)
Catheter-associated urinary tract infections (CAUTIs) are amongst the most common nosocomial infections worldwide and are difficult to treat due to multi-drug resistance development among the CAUTI-related pathogens. Importantly, CAUTI often leads to secondary bloodstream infections and death. A major challenge is to predict when patients will develop CAUTIs and which populations are at-risk for bloodstream infections. Catheter-induced inflammation promotes fibrinogen (Fg) and fibrin accumulation in the bladder which are exploited as a biofilm formation platform by CAUTI pathogens. Using our established mouse model of CAUTI, we identified that host populations exhibiting either genetic or acquired fibrinolytic-deficiencies, inducing fibrin deposition in the catheterized bladder, are predisposed to severe CAUTI and septicemia by diverse uropathogens in mono- and poly-microbial infections. Furthermore, we found that E. faecalis, a prevalent CAUTI pathogen, uses the secreted protease, SprE, to induce fibrin accumulation and create a niche ideal for growth, biofilm formation, and persistence during CAUTI.
Keyphrases
- biofilm formation
- urinary tract infection
- candida albicans
- pseudomonas aeruginosa
- staphylococcus aureus
- escherichia coli
- mouse model
- end stage renal disease
- spinal cord injury
- newly diagnosed
- chronic kidney disease
- ejection fraction
- cystic fibrosis
- platelet rich plasma
- drug induced
- gene expression
- antimicrobial resistance
- high throughput
- early onset
- prognostic factors
- diabetic rats
- klebsiella pneumoniae
- multidrug resistant
- patient reported outcomes
- single cell
- patient reported