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Bioorg Med Chem Lett ; 20(4): 1355-9, 2010 Feb 15.
Article in English | MEDLINE | ID: mdl-20097069

ABSTRACT

As therapeutic agents of choice in the treatment of complicated infections, glycopeptide antibiotics are often preferentially used in cases of osteomyelitis, an infection located in bone and notoriously difficult to successfully manage. Yet frequent and heavy doses of these systemically administered antibiotics are conventionally prescribed to obtain higher antibiotic levels in the bone and reduce the high recurrence rates. Targeting antibiotics to the bone after systemic administration would present at least three potential advantages: (i) greater efficacy, by concentrating the therapeutic agent in bone; (ii) greater convenience, through a reduction in the frequency of administration; and (iii) greater safety, by reducing the levels of systemic drug exposure. We present here the design, synthesis and in vitro evaluation of eight prodrugs of the glycopeptide antibacterial agents vancomycin and oritavancin taking advantage of the affinity of the bisphosphonate group for bone for delivery to osseous tissues.


Subject(s)
Diphosphonates/chemical synthesis , Glycopeptides/chemical synthesis , Osteomyelitis/drug therapy , Prodrugs/chemical synthesis , Animals , Anti-Bacterial Agents/pharmacology , Bone Density Conservation Agents/chemical synthesis , Bone Density Conservation Agents/chemistry , Bone Density Conservation Agents/therapeutic use , Diphosphonates/chemistry , Diphosphonates/therapeutic use , Glycopeptides/chemistry , Glycopeptides/therapeutic use , Humans , Lipoglycopeptides , Mice , Microbial Sensitivity Tests , Molecular Structure , Prodrugs/chemistry , Prodrugs/therapeutic use , Rats , Staphylococcus aureus/drug effects , Vancomycin/therapeutic use
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