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PubMed · 251348

Methicillin-resistant Staphylococcus epidermidis.

Abstract

Staphylococcus epidermidis is frequently associated with infection of prosthetic heart valves, prosthetic orthopedic devices, and neurosurgical shunts. Penicillinase-resistant semisynthetic penicillins, such as methicillin, have been the therapeutic and prophylactic agents of choice for S epidermidis infection. However, more S epidermidis isolates are now resistant to methicillin and other penicillins. In our laboratory 41% of S epidermidis isolates were resistant to methici-lin. All of the methicillin-susceptible isolates and 82% of the methicillin-resistant isoates were susceptible to cephalothin. Cephalothin should replace methicillin as the prophylactic and therapeutic agent of choice in institutions with a high percentage of methicillin-resistant S epidermidis.

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BibTeXRIS

W T Siebert, N Moreland, T W Williams. 1978. Methicillin-resistant Staphylococcus epidermidis.. https://doi.org/10.1097/00007611-197811000-00011

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Pharmacokinetics of cephalothin: accumulation of its deacetylated metabolite in uremic patients.

The pharmacokinetics of cephalothin and its deacetyl metabolite were studied with use of a chemical assay involving high-pressure liquid chromatography. In seven patients with normal renal function, the half-life of cephalothin was about 28 min and concentrations of deacetylcephalothin in serum were low. In five patients with uremia, the half-life of cephalothin averaged 221 min and there was a continuous accumulation of the deacetyl metabolite in serum during treatment. Recovery of the drug in urine was quantitative when renal function was normal, whereas the amount of drug excreted was very low in cases of uremia. The results offer some explanation of the complex pharmacokinetics of cephalothin seen with microbiological tests and illustrate the usefulness of specific chemical assays, especially in the monitoring of serum concentrations of mixtures of antibiotic compounds that differ in antibacterial activity.

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