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Shokei University | 論文
- Structures of Three New Oleanene Glucuronides Isolated from Lathyrus palustris var. pilosus and Hepatoprotective Activity
- A New Oleanene Glucuronide Having a Branched-Chain Sugar from Melilotus officinalis
- Anti-herpes Virus Type 1 Activity of Oleanane-Type Triterpenoids(Pharmacognosy)
- A New Lignan Glycoside and Phenylethanoid Glycosides from Strobilanthes cusia BREMEK
- Fattiviracin A1, a Novel Antiviral Agent Produced by Streptomyces microflavus Strain No. 2445 II. Biological Properties
- Fattiviracin A1, a Novel Antiherpetic Agent Produced by Streptomyces microflavus Strain No. 2445 I. Taxonomy, Fermentation, Isolation, Physico-chemical Properties and Structure Elucidation
- Anti-herpes Virus Activity of Fabaceous Triterpenoidal Saponins
- Anti-herpes Virus Activity of Solanum Steroidal Glycosides
- A New Antiherpetic Agent, AH-1763 IIa, Produced by Streptomyces cyaneus Strain No. 1763
- A New Antiherpetic Agent Produced by Streptomyces sp.Strain No.758
- Structures of Fattiviracin Family, Antiviral Antibiotics
- Partial Hydrolysis of Soyasaponin I and the Hepatoprotective Effects of the Hydrolytic Products. Study of the Structure-Hepatoprotective Relationship of Soyasapogenol B Analogs
- Preventive Effects of Saponins from Puerariae Radix (the root of Pueraria lobata OHWI) on in Vitro Immunological Injury of Rat Primary Hepatocyte Cultures
- Enhanced Production of Fattiviracins by Bacitracin-resistant Strains of Streptomyces microflavus Strain No. 2445
- Inhibitory Activities of(-)-Epigallocatechin-3-O-gallate against Topoisomerases I and II
- Topostatin, a Novel Inhibitor of Topoisomerases I and II Produced by Thermomonospora alba Strain No. 1520 III. Inhibitory Properties
- Topostatin, a Novel Inhibitor of Topoisomerases I and II Produced by Thermomonospora alba Strain No. 1520 II. Physico-chemical Properties and Structure Elucidation
- Topostatin, a Novel Inhibitor of Topoisomerases I and II Produced by Thermomonospora alba Strain No. 1520 I. Taxonomy, Fermentation, Isolation and Biological Activities
- Formation of a Chlorhexidine Degradation Intermediate through Pyruvate Incorporation by Pseudomonas sp.no.A-3
- CELL AGGREGATION FACTORS PRODUCED BY STREPTOMYCETES
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