Abstract
Bacteria survive within abscesses despite antimicrobial therapy, usually necessitating drainage. Our previous work showed that bacterial killing is diminished within the neutrophils of animals with abscesses. To further assess the role of neutrophils in Staphylococcus aureus survival and the poor activities of beta-lactams in abscesses, tissue cage abscess-bearing rats were given polymorphonuclear leukocyte (PMN)-depleting antibody prior to and several times following inoculation of the tissue cages with S. aureus. Cefazolin (300 mg/kg of body weight/day) was administered to all animals in appropriately divided doses. After 7 days of antimicrobial therapy, the 17 animals that received anti-PMN serum had significantly fewer abscess neutrophils than the 18 controls and fewer abscess bacteria (5.55 versus 3.79 log(10) CFU/ml [P = 0.04]) than the 18 controls. The data were consistent with the premise that cefazolin is more effective in abscesses depleted of neutrophils. To investigate further, S. aureus was incubated with rat peritoneal neutrophils; and bacterial cell membrane proteins were isolated, labeled with biotinylated ampicillin, separated by electrophoresis, blotted onto nitrocellulose, and stained for biotin reactivity. PBP 2 expression was consistently and significantly decreased after a brief, nonkilling PMN exposure. These experiments showed that PMN depletion enhanced the activity of cefazolin in the abscess milieu. Furthermore, altered bacterial cell wall cefazolin targets may be the mechanism by which the PMN diminishes antimicrobial activity, suggesting the importance of the staphylococcus-PMN interaction in the outcome of established infections.
MeSH Terms
Abscess/immunology,microbiology
Ampicillin/pharmacology
Animals
Anti-Bacterial Agents/pharmacology
Bacterial Proteins
Biotin
Carrier Proteins/metabolism
Cefazolin/pharmacology
Fluorescent Dyes
Hexosyltransferases
Lymphocyte Count
Male
Muramoylpentapeptide Carboxypeptidase/metabolism
Neutropenia/microbiology
Neutrophils/drug effects,physiology
Penicillin-Binding Proteins
Peptidyl Transferases
Phagocytosis/drug effects
Rats
Staphylococcal Infections/immunology,microbiology
Chemicals
Anti-Bacterial Agents
Bacterial Proteins
Carrier Proteins
Fluorescent Dyes
Penicillin-Binding Proteins
Biotin
Ampicillin
Peptidyl Transferases
Hexosyltransferases
Muramoylpentapeptide Carboxypeptidase
Cefazolin
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Bamberger David M
Section of Infectious Diseases, Department of Medicine, University of Missouri--Kansas City, Kansas City, Missouri 64108, USA.
[email protected]
Herndon Betty L
Fitch Jeffrey
Florkowski Aaron
Parkhurst Vera
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