Comparison of Pediatric Tracheostomy Stoma Cleaning Solutions
Teresa G Zustiak1, Michael D Finch2, Kristen H Griffin2
1Children's Minnesota, St. Paul, Minnesota.
Insights
For pediatric tracheostomy care, 0.25% acetic acid solution may reduce stoma infection signs compared to sterile water or saline. Further research is needed to establish standard cleaning guidelines for tracheostomy stoma sites.
Area of Science:
- Pediatric critical care medicine
- Infectious disease prevention
- Nursing best practices
Background:
- Limited standardized guidelines exist for cleaning tracheostomy stoma sites in pediatric patients.
- The choice of cleaning solution may impact infection rates at the tracheostomy stoma site.
Purpose of the Study:
- To compare the incidence of stoma site infection signs in hospitalized infants based on the cleaning solution used.
- To evaluate the efficacy of sterile water, sterile saline, and 0.25% acetic acid for tracheostomy stoma care.
Main Methods:
- Retrospective chart review of pediatric patients (<1 year) in the neonatal ICU who received a tracheostomy.
- Categorization of patients into three groups based on prescribed stoma cleaning solution: 0.25% acetic acid, sterile water, or sterile saline.
- Comparison of infection sign rates using chi-square test.
Main Results:
- Fewer signs of infection were observed when 0.25% acetic acid was used for stoma cleaning (P = .03).
- No significant difference in infection signs between sterile saline (39%) and sterile water (31%) groups.
- Overall, 29% fewer infection signs were noted with 0.25% acetic acid compared to sterile water or saline.
Conclusions:
- 0.25% acetic acid solution may be associated with reduced tracheostomy stoma site infections in pediatric patients.
- Findings suggest a potential benefit of acetic acid over sterile water or saline for stoma care.
- Further research is recommended to establish evidence-based guidelines for tracheostomy stoma cleaning solutions.
Background:
In the limited literature on cleaning tracheostomy stoma sites, there is no standard guideline for the cleaning solution. The objective of this study was to determine whether signs of stoma-site infection were different among a hospitalized pediatric population when using sterile water, sterile saline solution, or 0.25% acetic acid solution for tracheostomy stoma cleaning.
Methods:
A retrospective chart review was completed and included nursing and physician notes. The subjects were <1 y of age, in the neonatal ICU, and received a tracheostomy within the previous 30 days. Clinical signs of infection were visually observed by the providers and documented in the medical record. The subjects were divided into 3 groups, those prescribed 0.25% acetic acid, those prescribed sterile water, and those prescribed sterile saline solution for twice daily tracheostomy stoma care. We compared the rate of signs of infection of the tracheostomy stoma site across the 3 treatments by using a chi-square test.
Results:
In the 102 subjects included, there were significantly more signs of infection in the subjects for whom 0.25% acetic acid was not used for daily stoma cleaning (P = .03). There were no differences in signs of infection between those cleaned with saline solution (39%) and those cleaned with sterile water (31%) for daily stoma cleaning. Overall, there were 29% fewer signs of infection when 0.25% acetic acid was used than either sterile water or saline solution.
Conclusions:
Analysis of our findings indicated that a 0.25% acetic acid solution used for stoma cleaning may be associated with fewer signs of infection than sterile water or sterile saline solution. More research is warranted toward establishing a standard practice.
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