The antimicrobial efficacy of silver on antibiotic-resistant bacteria isolated from burn wounds
Steven L Percival1, John Thomas, Sara Linton
1Department of Pathology, West Virginia University, Morgantown, WV, USA. biofilms@hotmail.co.uk
Abstract:
The antibiotic-resistant bacteria are a major concern to wound care because of their ability to resist many of the antibiotics used today to treat infections. Consequently, other antimicrobials, in particular ionic silver, are considered ideal topical agents for effectively helping to manage and prevent local infections. Little is known about the antimicrobial efficacy of ionic silver on antibiotic-resistant bacteria at different pH values. Consequently, in this study our aim was to evaluate the effect of pH on the antimicrobial efficacy of a silver alginate (SA) and a silver carboxymethyl cellulose (SCMC) dressing on antibiotic-resistant bacteria isolated from burn patients. Forty-nine antibiotic-resistant bacteria, including Vancomycin-resistant Enterococcus faecium, meticillin-resistant Staphylococcus aureus, multidrug-resistant (MDR) Pseudomonas aeruginosa, MDR Vibrio sp, MDR Stenotrophomonas maltophilia, extended-spectrum ß-lactamase (ESBL) producing Salmonella sp, ESBL producing Klebsiella pneumoniae, ESBL producing Proteus mirabilis, ESBL producing Escherichia coli and MDR Acinetobacter baumannii, routinely isolated from burn wounds were used in the study and evaluated for their susceptibility to two silver containing wound dressings using a standardised antimicrobial efficacy screening assay [corrected zone of inhibition (CZOI)]. The mean overall CZOI for the Gram-positive isolates at a pH of 5·5 were very similar for both dressings. A mean CZOI of 5 mm was recorded for the SCMC dressing, which was slightly higher, at 5·4 mm for the SA dressing. At a pH of 7·0 both dressings, in general, showed a similar activity. However, at a pH of 8·5 the mean CZOI of the SCMC dressing was found to be significantly (P < 0·05) higher than the SA dressing for a select number of isolates. The mean overall CZOI for the Gram-negative bacteria followed a similar pattern as observed with the Gram-positive bacteria. Susceptibility to silver ions did vary significantly between genera and species of bacteria. Interestingly, when pH was changed from 8·5 to 5·5 antimicrobial activity for both dressings in general increased significantly (P < 0·05). Overall, all forty-nine antibiotic-resistant bacteria isolated from burn wounds showed susceptibility to the antimicrobial activity of both silver containing wound dressings over all pH ranges. In addition, the study showed that the performance of both dressings apparently increased when pH became more acidic. The findings in this study may help to further enhance our knowledge of the role pH plays in affecting both bacterial susceptibility and antimicrobial activity of silver containing wound dressings.
Insights
Ionic silver wound dressings effectively combat antibiotic-resistant bacteria. Antimicrobial activity increased significantly as pH became more acidic, enhancing treatment efficacy for burn wound infections.
Area of Science:
- Wound Care
- Antimicrobial Agents
- Bacteriology
Background:
- Antibiotic-resistant bacteria pose a significant challenge in wound care.
- Ionic silver is a promising topical antimicrobial agent for managing wound infections.
- The influence of pH on silver-based wound dressing efficacy against resistant bacteria is not well understood.
Purpose of the Study:
- To evaluate the effect of different pH levels on the antimicrobial efficacy of silver alginate (SA) and silver carboxymethyl cellulose (SCMC) dressings.
- To assess the susceptibility of various antibiotic-resistant bacteria isolated from burn patients to these silver dressings across a pH spectrum.
Main Methods:
- Utilized a standardized antimicrobial efficacy screening assay measuring corrected zone of inhibition (CZOI).
- Tested two silver-containing wound dressings (SA and SCMC) against 49 antibiotic-resistant bacterial isolates from burn wounds.
- Evaluated bacterial susceptibility at three pH values: 5.5, 7.0, and 8.5.
Main Results:
- Both SA and SCMC dressings demonstrated antimicrobial activity against all tested antibiotic-resistant bacteria across all pH ranges.
- Antimicrobial activity generally increased significantly as the pH decreased from 8.5 to 5.5.
- SCMC showed significantly higher efficacy than SA at pH 8.5 for certain isolates, while efficacy was similar at pH 5.5 and 7.0.
Conclusions:
- Silver alginate and silver carboxymethyl cellulose dressings are effective against a broad spectrum of antibiotic-resistant bacteria found in burn wounds.
- The antimicrobial performance of these silver dressings is pH-dependent, with enhanced efficacy observed in more acidic conditions.
- Understanding the role of pH can optimize the use of silver-based wound dressings for improved infection management.
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