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Explore scientific publications on antimicrobial resistance
Key Findings
The study identifies the presence of bla CTX-M-27, erm(B), mph(A), aph(3')-Ib, aph(6)-Id, sul2, and tet(A) in Shigella isolates associated with MSM transmission in the UK, highlighting the role of plasmids in the spread of antimicrobial resistance.
| - |
| aph(3'')-Ib | 1 | aminoglycoside phosphotransferase | Aminoglycoside |
| Reslit | - |
| aph(6)-Id | 1 | aminoglycoside phosphotransferase | Aminoglycoside |
| Reslit | - |
| blaCTX-M | 1 | beta-lactamase | Cephalosporin |
| Reslit | - |
| blaOXA | 1 | beta-lactamase | Ampicillin |
| Reslit | - |
| catA1 | 1 | chloramphenicol acetyltransferase | Chloramphenicol |
| Reslit | - |
| dfrA1 | 1 | dihydrofolate reductase | Trimethoprim |
| Reslit | - |
| erm(B) | 1 | ribosome modification enzyme | MacrolideLincosamideStreptogramin |
| Reslit | - |
| mph(A) | 1 | aminoglycoside phosphotransferase | Macrolide |
| Reslit | - |
| sul2 | 1 | dihydropteroate synthase | Sulfonamide |
| Reslit | - |
| tet(A) | 1 | tetracycline efflux protein | Tetracycline |
| Reslit | - |
| - |
| E84G | - | - | Shigella sonnei | Ciprofloxacin|Levofloxacin | Reslit | - |
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