Organic Letters · 2004 · 46 citations · 14 references
Bridging Chemistry ProcessChemical EngineeringMedicinal ChemistryBioorganic ChemistryBridging ProcessEngineeringPalladium-catalyzed Bis-allylationNatural SciencesHeterocyclicCross-coupling ReactionOrganic ChemistryOrganometallic CatalysisCatalysisChemistryHeterocycle ChemistryPharmacologySynthetic ChemistryEther Bridge
A bridging chemistry process was developed to form an ether bridge between 6-O and 11-O of erythromycin A via a tandem or stepwise palladium-catalyzed bis-pi-allylation. By applying this bridging process, new 6,11-O-bridged bicyclic ketolides (BBKs) were synthesized. These BBKs showed good antibacterial activities against the macrolide-susceptible strains as well as mef-resistant strains and served as a good core for further modifications to study the structure-activity relationship (SAR) and to overcome bacterial resistance. [reaction: see text]
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Gary V. Doern, Kristopher P. Heilmann, Holly K. Huynh et al. · Antimicrobial Agents and Chemotherapy · 2001 · 540 citations · Full text
Constantin Agouridas, Alexis Denis, Jean-Michel Auger et al. · Journal of Medicinal Chemistry · 1998 · 199 citations
Bioorganic Chemistry, Antibacterial Activity, Macrolactone Backbone +21
Acid degradation of erythromycin A and erythromycin B
Paul Kurath, Peter H. Jones, Richard S. Egan et al. · Cellular and Molecular Life Sciences · 1971 · 198 citations
Alexis Denis, Constantin Agouridas, Jean-Michel Auger et al. · Bioorganic & Medicinal Chemistry Letters · 1999 · 195 citations