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[Antimicrobial activities of aspoxicillin of fresh clinical isolates]

K Deguchi1, N Yokota, M Koguchi

  • 1Section of Studies, Tokyo Clinical Research Center.

Insights

Antimicrobial activity of aspoxicillin (ASPC) and other penicillin antibiotics (PCs) was assessed against clinical isolates. While some strains showed increased susceptibility, overall resistance to PCs, particularly in Enterococcus faecium, is rising, indicating complex resistance patterns.

Area of Science:

  • Clinical microbiology
  • Infectious diseases
  • Pharmacology

Background:

  • Penicillin antibiotics (PCs) are crucial for treating bacterial infections.
  • Monitoring antimicrobial susceptibility is vital for effective treatment strategies.
  • Aspoxicillin (ASPC) is a penicillin antibiotic used clinically.

Purpose of the Study:

  • To compare the antimicrobial activity of aspoxicillin (ASPC) with other penicillin antibiotics (PCs).
  • To evaluate antimicrobial susceptibility trends in clinical bacterial isolates in Japan.
  • To identify emerging patterns of antibiotic resistance.

Main Methods:

  • Minimum inhibitory concentrations (MICs) were determined for ASPC and other PCs.
  • Antimicrobial activity was tested against clinical isolates from Japanese medical institutions (1988-1992).
  • Susceptibility testing included Staphylococcus aureus, Enterococcus spp., Escherichia coli, Bacteroides fragilis group, Haemophilus influenzae, and various streptococci.

Main Results:

  • ASPC demonstrated MIC80 values similar to previous studies against key pathogens like S. aureus and E. coli.
  • Increasing susceptibility to PCs was observed in S. aureus and Haemophilus influenzae isolates.
  • A rise in highly resistant strains to PCs, including ASPC, was noted, particularly in Enterococcus faecium.

Conclusions:

  • The susceptibility patterns of recent clinical isolates to beta-lactams are complex and multimodal.
  • While some bacteria show increased susceptibility, overall resistance to penicillin antibiotics is a growing concern.
  • Understanding resistance mechanisms, such as altered penicillin-binding proteins (PBPs), is crucial for Enterococcus faecium infections.

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