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Published on: June 7, 2017
Efficacy testing of novel chemical disinfectants on clinically relevant microbial pathogens
1Department of Life Sciences, Institute of Technology Sligo, Sligo, Ireland; Cellular Health and Toxicology Research Group, Institute of Technology Sligo, Sligo, Ireland.
Background:
There has been a dramatic increase in the number of hospital-acquired infections, which is linked to the pandemic of multidrug resistance. Clinical environments provide an ideal reservoir for the growth, proliferation, and transmission of pathogenic organisms, including bacterial and yeast species. Consequently, the need for improved, effective disinfectants is of paramount importance.
Methods:
Studies were conducted to assess the efficacy of chemical disinfectants-peracetic acid and triameen-on microbial strains. Testing included the assessment of antimicrobial and antisporicidal activity of disinfection solutions performed on a range of clinical isolates that pose a high risk for patient morbidity in clinical settings.
Results:
Both chemical disinfectants successfully inactivated all test strains, with peracetic acid showing a greater level of antimicrobial activity. Escherichia coli proved most susceptible when assessed by the Kirby disk diffusion, suspension, and medical suspension assays with the greatest reduction in cell viability achieved. Antibiotic-resistant Enterococcus and Staphylococcus aureus strains showed greatest resistance to both disinfectants.
Discussion And Conclusions:
Test chemicals show potential to act as intermediate-level disinfectants inactivating vegetative microorganisms and bacterial spores on clinically relevant strains where they show potential as a preventative measure in relation to nosocomial infections.
Insights
New disinfectants, peracetic acid and triameen, effectively combat hospital-acquired infections by inactivating various microbial strains. Peracetic acid demonstrated superior antimicrobial activity against common clinical pathogens.
Area of Science:
- Microbiology
- Infectious Diseases
- Environmental Health
Background:
- Rising rates of hospital-acquired infections (HAIs) are linked to multidrug resistance.
- Healthcare settings serve as reservoirs for pathogenic microorganisms, necessitating effective disinfectants.
- Urgent need for enhanced disinfection strategies to prevent pathogen transmission.
Purpose of the Study:
- To evaluate the efficacy of peracetic acid and triameen as chemical disinfectants.
- To assess their antimicrobial and antisporicidal activity against high-risk clinical isolates.
- To determine their potential in preventing nosocomial infections.
Main Methods:
- Testing involved assessing antimicrobial and antisporicidal activity of peracetic acid and triameen.
- Evaluated efficacy on a range of clinical isolates posing high risk for patient morbidity.
- Utilized Kirby disk diffusion, suspension, and medical suspension assays.
Main Results:
- Both disinfectants inactivated all tested microbial strains.
- Peracetic acid exhibited greater antimicrobial activity.
- Escherichia coli was most susceptible; antibiotic-resistant Enterococcus and Staphylococcus aureus showed higher resistance.
Conclusions:
- Peracetic acid and triameen show potential as intermediate-level disinfectants.
- Effective in inactivating vegetative microorganisms and bacterial spores.
- May serve as a preventative measure against nosocomial infections.
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