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PMID: 3264832 Published · ppublish English Journal Article

Antibiotic resistance in anaerobic bacteria.

The Journal of antimicrobial chemotherapy ·Vol. 22 Suppl A ·1988-07-00 ·Pages 63-71

Tally FP, Cuchural GJ

Abstract

An improved understanding of the mechanisms of resistance and transfer in Bacteroides fragilis has been gained over the past decade. B. fragilis resistance to most penicillins is largely due to production of chromosomal beta-lactamases, although recent findings indicate these micro-organisms can acquire novel beta-lactamases, which can even inactivate imipenem. Several of the beta-lactamases of B. fragilis are transferable. Most of our understanding of transferable antimicrobial resistance in Bacteroides spp. has been gained through studies of the clindamycin-erythromycin resistance determinant found on pBFTM10. This resistance is encoded on a transposon and is widely distributed among the naturally occurring clindamycin-resistant isolates. Recent studies have shown that DNA can be transferred from Escherichia coli to B. fragilis, from one B. fragilis to another, and from B. fragilis back to E. coli. Data from a large survey in the United States indicate that susceptibility patterns of B. fragilis differ in each of the eight participating centres. Overall, piperacillin and cefoxitin have been found to be the most active beta-lactam agents.

MeSH Terms
Anti-Bacterial Agents/pharmacology Bacillus/drug effects,enzymology,genetics Bacteria, Anaerobic/genetics Drug Resistance, Microbial beta-Lactamases/metabolism beta-Lactams
Chemicals
Anti-Bacterial Agents beta-Lactams beta-Lactamases
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Tally F P
Department of Pathology and Medicine, Tufts-New England Medical Center, Boston, Massachusetts 02111.
Cuchural G J
Article Info
Journal
The Journal of antimicrobial chemotherapy
Abbr.
J Antimicrob Chemother
ISSN
0305-7453
Published
1988-07-00
Pages
63-71
Language
English
Region
England
NLM ID
7513617
Subset
IM
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