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Increased Prevalence of Minocycline-Resistant Staphylococcus epidermidis with tet(M) by Tetracycline Use for Acne
Keisuke Nakase1, Juri Koizumi1, Sana Fukumoto1
1Department of Clinical Microbiology, School of Pharmacy, Tokyo University of Pharmacy and Life Sciences, Tokyo, Japan.
Abstract:
Staphylococcus epidermidis, a major skin bacterium, can cause opportunistic infections. Use of antimicrobial agents against Cutibacterium acnes for acne treatment becomes a risk factor for emergence of antimicrobial-resistant skin bacteria. In this study, the impact of antimicrobial treatment of acne vulgaris on S. epidermidis antimicrobial resistance was assessed. A total of 344 S. epidermidis strains isolated from patients with acne vulgaris who visited hospital (165 strains) and dermatological clinics (179 strains), respectively, were analyzed. Except for doxycycline, the resistance rates were higher in strains isolated from patients who had used antimicrobials for acne treatment than in those isolated from patients who had not used antimicrobials. The prevalence rates of strains with erm(C) from patients who used macrolides and clindamycin (hospital, 78.0%; clinics, 61.3%) and those of strains with tet(M) from patients who used tetracyclines (hospital, 27.5%; clinics, 42.4%) were significantly higher than those of strains from patients who did not use antimicrobials (p < 0.05). All strains with erm(A) (8/8) and 91.7% strains with erm(C) (156/170) showed high-level resistance to macrolides and clindamycin (MIC ≥256 μg/mL). Furthermore, almost all strains with tet(M) showed resistance to minocycline. Our results showed that the use of antimicrobials for acne treatment may lead to an increased prevalence of antimicrobial-resistant S. epidermidis. In particular, the emergence of minocycline-resistant strains with tet(M) owing to the use of tetracyclines (doxycycline and minocycline) is a critical issue. Appropriate antimicrobial use for acne treatment may be an important strategy to prevent the emergence of antimicrobial-resistant skin bacteria.
Insights
Antimicrobial acne treatments increase resistance in Staphylococcus epidermidis, a common skin bacterium. This study highlights the rise of tetracycline-resistant strains, emphasizing the need for judicious antibiotic use to combat antimicrobial resistance.
Area of Science:
- Microbiology
- Dermatology
- Infectious Diseases
Background:
- Staphylococcus epidermidis is a prevalent skin bacterium.
- Antimicrobial treatments for acne vulgaris, primarily targeting Cutibacterium acnes, can inadvertently promote antimicrobial resistance in S. epidermidis.
- The emergence of antimicrobial-resistant skin bacteria is a growing public health concern.
Purpose of the Study:
- To investigate the impact of antimicrobial therapy for acne vulgaris on the prevalence of antimicrobial resistance in Staphylococcus epidermidis.
- To assess the correlation between specific antimicrobial drug classes used for acne and resistance patterns in S. epidermidis.
Main Methods:
- Analysis of 344 Staphylococcus epidermidis strains isolated from acne vulgaris patients.
- Categorization of patients based on prior antimicrobial treatment history for acne.
- Determination of antimicrobial resistance rates and genotypic analysis for resistance determinants (erm(A), erm(C), tet(M)).
Main Results:
- Higher resistance rates to macrolides, clindamycin, and tetracyclines were observed in S. epidermidis strains from patients with a history of antimicrobial acne treatment, except for doxycycline.
- Prevalence of erm(C) and tet(M) resistance genes was significantly higher in treated patients.
- High-level resistance to macrolides/clindamycin and minocycline was associated with specific resistance genes.
Conclusions:
- Antimicrobial use for acne treatment contributes to the increased prevalence of antimicrobial-resistant S. epidermidis.
- The emergence of minocycline-resistant S. epidermidis strains carrying tet(M) due to tetracycline use is a critical issue.
- Judicious antimicrobial stewardship in acne treatment is essential to mitigate the development of antimicrobial resistance in skin bacteria.
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