Synthesis of Hydrophobic N'-Mono and N', N''-Double Alkylated Eremomycins Inhibiting the Transglycosylation Stage of Bacterial Cell Wall Biosynthesis
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概要
- 論文の詳細を見る
- 2001-05-25
著者
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Pavlov A
Institute Of New Antibiotics Of The Russian Academy Of Medical Sciences
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Pavlov Andrey
Institute Of New Antibiotics Of The Russian Academy Of Medical Sciences
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PAVLOV A.
Institute of New Antibiotics of the Russian Academy of medical Sciences
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MIROSHNIKOVA O.
Institute of New Antibiotics of the Russian Academy of medical Sciences
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PRINTSEVSKAYA S.
Institute of New Antibiotics of the Russian Academy of medical Sciences
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OLSUFYEVA E.
Institute of New Antibiotics of the Russian Academy of medical Sciences
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PREOBRAZHENSKAYA M.
Institute of New Antibiotics of the Russian Academy of medical Sciences
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GOLDMAN R.
Advanced Medicine East, Inc.
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BRANSTROM A.
Advanced Medicine East, Inc.
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BAIZMAN E.
Advanced Medicine East, Inc.
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LONGLEY C.
Advanced Medicine East, Inc.
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Olsufyeva E
Russian Acad. Of Medical Sci. Moscow Rus
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Baizman E.
Advanced Medicine East Inc.
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Longley C.
Advanced Medicine East Inc.
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Branstrom A.
Advanced Medicine East Inc.
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Preobrazhenskaya M
Russian Acad. Of Medical Sci. Moscow Rus
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Miroshnikova O
Russian Acad. Medical Sci. Moscow Rus
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Goldman R.
Advanced Medicine East Inc.
関連論文
- Structure-Activity Relationships in the Series of Eremomycin Carboxamides
- Synthesis and Antibacterial Activity of Derivatives of the Glycopeptide Antibiotic A-40926 N-alkylated at the Aminoglucuronyl Moiety
- Mono and Double Modified Teicoplanin Aglcon Derivatives on the Amino Acid No.7; Structure-activity Relationship
- Substitution of Amino Acids 1 and 3 in Teicoplanin Aglycon: Synthesis and Antibacterial Activity of Three First Non-natural Dalbaheptides
- Synthesis of Hydrophobic N'-Mono and N', N''-Double Alkylated Eremomycins Inhibiting the Transglycosylation Stage of Bacterial Cell Wall Biosynthesis
- A Modification of the N-Terminal Amino Acid in the Eremomycin Aglycone
- Carboxamides and Hydrazide of Glycopeptide Antibiotic Eremomycin Synthesis and Antibacterial activity