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Recent developments in reversing glycopeptide-resistant pathogens
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Abstract
- Review with 199 refs. Recent studies addressing vancomycin-resistance phenomena are surveyed. Besides leading semi-synthetic glycopeptides: BI-397 and LY 333328, other new synthetic derivs. are also presented. Rational design based on the known mode of action is seen in recent research from both industrial and academic groups. Thus, Biosearch Italia SpA worked on new synthetic glycopeptides with a modified binding pocket in order to find drugs active against both vancomycin-sensitive and -resistant strains. Eli Lilly & Co. and research groups at Stanford, Cambridge and Harvard synthesized covalently linked dimers in order to copy the dimerization and membrane anchoring effects. Both directions proved to be rewarding and some interesting compds. with potent in vitro activity against vancomycin-resistant enterococci (VRE) were found from these investigations. A new mechanistic proposal that can account for the bioactivity of LY 333328 against VRE was summarized. Research on new agents with modes of action different to that of glycopeptide antibiotics have also been successful and recent investigations related to RP-59500, SCH-27899 and U-100766 are presented. [on SciFinder (R)]
- Subjects :
- Pharmacology
BSU (Biological study
Research groups
Synthetic derivatives
Stereochemistry
Binding pocket
Rational design
Peptide binding
General Medicine
Biology
biochemical phenomena, metabolism, and nutrition
except adverse)
unclassified)
Glycopeptide
BIOL (Biological study) (recent developments in reversing glycopeptide-resistant pathogens)
Membrane anchoring
Biochemistry
Drug Discovery
Antibiotics (glycopeptide
recent developments in reversing glycopeptide-resistant pathogens)
Antibiotic resistance
Pathogenic bacteria (recent developments in reversing glycopeptide-resistant pathogens)
Glycopeptides Role: BAC (Biological activity or effector
Mode of action
review glycopeptide antibiotic resistance pathogenic bacteria
Subjects
Details
- Database :
- OpenAIRE
- Accession number :
- edsair.doi.dedup.....4b88ea9239032e10b61180c529e313e2